Viessmann vitomax 200-hs Technical Manual

Page 1
VIESMANN
VITOMAX 200-HS
High pressure steam boiler
Three-pass boiler
Combustion output 3.8 to 18.2 MW
Steam output 5 to 26 t/h
VITOMAX 200-HS Type M75A
Compliant with the requirements of the Pressure Equipment Directive 97/23/EC and the TRD regulations, in conjunction with the [German] trade association agreements.
Three-pass boiler
With or without economiser
Permissible operating pressure 6 to 25 bar
5442 026 GB 11/2009
Technical guide
Page 2
Index
1. Specification 1. 1 Specification without integral economiser ................................................................... 3
1. 2 Dimensions without integral economiser .................................................................... 4
1. 3 Specification with integral economiser ........................................................................ 5
1. 4 Dimensions with integral economiser ......................................................................... 7
1. 5 Specification, for burner selection ............................................................................... 8
1. 6 Flame tube temperature limiter (FTÜ) ........................................................................ 9
2. Boiler selection diagrams 2. 1 Boiler size 1, max. combustion output 3.8 MW ........................................................... 10
■ Standard version (without turbulators) .................................................................... 10
■ Version with turbulators (2000 mm) ........................................................................ 13
■ Version without turbulators, with ECO 100 ............................................................. 16
■ Version without turbulators, with ECO 200 ............................................................. 19
2. 2 Boiler size 2, max. combustion output 4.5 MW ........................................................... 22
■ Standard version (without turbulators) .................................................................... 22
■ Version with turbulators (2000 mm) ........................................................................ 25
■ Version without turbulators, with ECO 100 ............................................................. 28
■ Version without turbulators, with ECO 200 ............................................................. 31
2. 3 Boiler size 3, max. combustion output 5.3 MW ........................................................... 34
■ Standard version (without turbulators) .................................................................... 34
■ Version with turbulators (2000 mm) ........................................................................ 37
■ Version without turbulators, with ECO 100 ............................................................. 40
■ Version without turbulators, with ECO 200 ............................................................. 43
2. 4 Boiler size 4, max. combustion output 6.4 MW ........................................................... 46
■ Standard version (without turbulators) .................................................................... 46
■ Version with turbulators (2000 mm) ........................................................................ 49
■ Version without turbulators, with ECO 100 ............................................................. 52
■ Version without turbulators, with ECO 200 ............................................................. 55
2. 5 Boiler size 5, max. combustion output 7.5 MW ........................................................... 58
■ Standard version (without turbulators) .................................................................... 58
■ Version with turbulators (1750 mm) ........................................................................ 61
■ Version without turbulators, with ECO 100 ............................................................. 64
■ Version without turbulators, with ECO 200 ............................................................. 67
2. 6 Boiler size 6, max. combustion output 9.0 MW ........................................................... 70
■ Standard version (without turbulators) .................................................................... 70
■ Version with turbulators (1000 mm) ........................................................................ 73
■ Version without turbulators, with ECO 100 ............................................................. 76
■ Version without turbulators, with ECO 200 ............................................................. 79
2. 7 Boiler size 7, max. combustion output 10.5 MW ......................................................... 82
■ Standard version (without turbulators) .................................................................... 82
■ Version with turbulators (1250 mm) ........................................................................ 85
■ Version without turbulators, with ECO 100 ............................................................. 88
■ Version without turbulators, with ECO 200 ............................................................. 91
2. 8 Boiler size 8, max. combustion output 12.7 MW ......................................................... 94
■ Standard version (without turbulators) .................................................................... 94
■ Version with turbulators (1000 mm) ........................................................................ 97
■ Version without turbulators, with ECO 100 ............................................................. 100
■ Version without turbulators, with ECO 200 ............................................................. 103
2. 9 Boiler size 9, max. combustion output 15.7 MW ......................................................... 106
■ Standard version (without turbulators) .................................................................... 106
■ Version without turbulators, with ECO 100 ............................................................. 109
■ Version without turbulators, with ECO 200 ............................................................. 112
2.10 Boiler size A, max. combustion output 18.2 MW ........................................................ 115
■ Standard version (without turbulators) .................................................................... 115
■ Version without turbulators, with ECO 100 ............................................................. 118
■ Version without turbulators, with ECO 200 ............................................................. 121
2.11 Saturated steam enthalpy ........................................................................................... 124
2.12 Feedwater enthalpy .................................................................................................... 124
2.13 Sizing the steam connector subject to the working pressure ...................................... 125
3. Boiler selection 3. 1 Schematic diagram to assist in selecting a boiler and determining parameters ......... 147
3. 2 Details for burner selection by the burner manufacturer ............................................. 149
Index
2
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 3
1.1 Specification without integral economiser
Boiler size 1 2 3 4 5 6 7 8 9 A Combustion output
*1
- for natural gas MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.7 15.7 18.2
- for fuel oil EL MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.3 14.0 14.0
- output portion % 100 100 100 100 100 100 100 96.6 89.2 76.9 Max. steam output with gas combustion 5 bar working pressure without turbulator
*2
t/h 5.09 6.06 7.17 8.69 10.19 12.33 14.34 17.42 21.79 25.21
Max. working pressure without turbulator
*2
t/h 4.86 5.78 6.84 8.28 9.71 11.78 13.70 16.70 20.88 24.26
5 bar working pressure with turbulator t/h 5.28 6.25 7.39 8.93 10.45 12.51 14.60 17.66 – – Max. working pressure with turbulator t/h 5.03 5.95 7.03 8.50 9.94 11.94 13.94 16.91 – –
Max. flue gas temperature with gas com­bustion
5 bar working pressure without turbulator °C 296 288 280 275 274 259 265 258 236 239 Max. working pressure without turbulator °C 345 337 330 326 324 307 313 301 282 279 5 bar working pressure with turbulator °C 229 231 226 224 228 233 233 233 – – Max. working pressure with turbulator °C 284 285 280 279 283 283 283 278 – – Max. steam output with oil combustion
5 bar working pressure without turbulator
*2
t/h 5.15 6.13 7.25 8.78 10.30 12.45 14.45 17.03 19.71 19.76
Max. working pressure without turbulator
*2
t/h 4.92 5.85 6.92 8.38 9.83 11.91 13.83 16.34 18.90 19.04
5 bar working pressure with turbulator t/h 5.32 6.30 7.45 9.00 10.52 12.61 14.68 17.22 – – Max. working pressure with turbulator t/h 5.08 6.01 7.10 8.58 10.03 12.06 14.04 16.52 – –
CE designation in accordance with Pressure Equipment Directive 97/23/EC Shipping dimensions
incl. packaging Total length m 5.38 5.61 5.85 6.04 6.28 6.72 7.04 7.46 8.30 8.99 Total width m 2.55 2.73 2.85 3.00 3.05 3.20 3.40 3.60 3.85 3.95 Total height m 2.90 3.08 3.20 3.35 3.40 3.55 3.75 3.95 4.26 4.36
Total weight
*3
Boiler with thermal insulation for permissible operating pres­sure
6 bar t 9.1 10.8 12.8 14.4 16.2 19.0 22.8 28.9 35.0 40.6
8 bar t 9.9 11.8 13.9 15.8 17.9 20.4 24.9 29.2 37.1 41.7 10 bar t 10.7 13.1 15.0 17.2 19.2 22.4 26.1 31.8 41.8 46.6 13 bar t 11.9 14.5 17.2 18.6 20.3 24.1 28.8 33.7 43.0 49.2 16 bar t 13.3 14.5 17.3 20.0 22.0 26.6 32.1 37.5 48.4 54.1 18 bar t 12.7 15.9 18.1 21.4 23.8 28.6 32.3 40.0 51.9 58.3 20 bar t 13.4 16.6 19.9 23.0 24.1 28.6 34.2 41.8 – – 22 bar t 14.1 18.2 21.0 23.1 25.3 30.3 35.9 – – – 25 bar t 15.3 18.5 21.8 24.5 26.9 32.3 – – – – Boiler water content overall
m
3
11.2 13.4 15.0 17.6 18.3 21.9 25.8 30.9 39.0 44.8
average operating range
*4
m
3
9.82 11.46 12.82 15.07 15.66 18.49 21.78 26.15 32.38 36.51
Steam chamber volume
*4
m
3
1.38 1.94 2.18 2.53 2.64 3.41 4.02 4.75 6.62 8.29
Steam level surface area
*4
m
2
6.58 7.78 8.44 9.28 9.72 11.29 12.53 14.19 17.42 19.95
Boiler connections Steam connector
for permissible operating pres­sure
6 bar PN 16 DN 200 200 200 250 250 250 300 300 350 400
8 bar PN 16 DN 150 200 200 200 200 250 250 300 300 350 10 bar PN 16 DN 150 150 150 200 200 200 250 250 300 300 13 bar PN 40 DN 125 150 150 150 – – – – – – 13 bar PN 25 DN – – – – 200 200 200 250 250 250 16 bar PN 40 DN 125 125 150 150 150 – – – – – 16 bar PN 25 DN – – – – – 200 200 200 250 250 18 bar PN 40 DN 125 125 125 150 150 – – – – – 18 bar PN 25 DN – – – – – 200 200 200 200 250 20 bar PN 40 DN 125 125 125 150 150 200 200 200 – – 22 bar PN 40 DN 100 125 125 125 150 150 150 – – – 25 bar PN 40 DN 100 100 125 125 125 150 – – – – Safety valve connector for permissible operating pres­sure
6 bar PN 40 DN 65 65 65 80 80 100 100 100 125 150
*1
The maximum combustion output varies subject to the required emission values and the fuel used. Check with the burner manufacturer.
*2
If using a downstream or on-site economiser.
*3
Because of production methods, the weight of the boiler can vary by up to 10 %.
*4
Average water level between pump ON and pump OFF.
Specification
VITOMAX 200-HS
VIESMANN
3
5442 026 GB
Page 4
Boiler size 1 2 3 4 5 6 7 8 9 A
8 bar PN 40 DN 50 65 65 65 80 80 100 100 100 125 10 bar PN 40 DN 50 50 65 65 65 80 80 80 100 100 13 bar PN 40 DN 40 50 50 65 65 65 65 80 80 100 16 bar PN 40 DN 40 40 50 50 50 65 65 65 80 80 18 bar PN 40 DN 40 40 40 50 50 65 65 65 80 80 20 bar PN 40 DN 32 40 40 50 50 50 65 65 – – 22 bar PN 40 DN 32 40 40 40 50 50 65 – – – 25 bar PN 40 DN 32 32 40 40 50 50 – – – –
Connector for feedwater pumps PN 40 DN 40 40 40 50 50 50 65 65 65 80 Flue gas mass flow rate
- for natural gas t/h 1.5225 x combustion output in MW
- for fuel oil EL t/h 1.5 x combustion output in MW Flue gas volume
m
3
4.9 6.1 7.3 8.5 9.6 11.8 14.7 18.4 24.7 28.7
1.2 Dimensions without integral economiser
ARS
BNA
R1
LFE ESL
WSA
500 k l m n o p
R2
SW
ML
D
ELWR/WB
530
NW
120
280
100
c
e
g
s
f
h
Ø q
b
a
u
t
r
d
v
KAB
KTÜ
HL
AGA
R1
KOA SCH
KL
SIV
ASS
Caution - hot surface
A
Type plate AGA Flue outlet ARS Fitting assembly ASS Connector for blow-down valve DN 40 PN 40 BNA Burner connection D Steam connector EL Vent connector DN 15 PN 40 ESL Connector for T.D.S. line with dummy flange, DN 20 PN 40 HL Hand hole KAB Boiler cover KL Head hole KOA Condensate drain R 2"
KTÜ Boiler door LFE Connector for conductivity electrode with dummy flange,
DN 50 PN 40 ML Manhole NW Lowest water level R1 Cleaning port, flue gas collector R2 Cleaning port, combustion chamber SIV Connector for safety valve with 1x dummy flange SCH Inspection port R 2" SW Feedwater connector WR/WB Connector for water level controller/limiter WSA Connector for water level indicator with 1x dummy flange
Dimensions
*8
Boiler size 1 2 3 4 5 6 7 8 9 A
a mm 2880 3055 3180 3330 3380 3530 3730 3930 4240 4340 b mm 2725 2900 3035 3175 3225 3375 3575 3775 4085 4185 c mm 755 813 825 840 830 835 850 865 945 965 d mm 1800 1950 2000 2100 2200 2300 2400 2500 2870 2920 e mm 905 1030 1105 1155 1205 1275 1380 1530 1680 1680 f mm 800 800 800 900 900 900 1000 1000 1100 1100 g mm 1003 1070 1108 1160 1178 1240 1265 1342 1455 1455 h mm 530 530 530 530 530 530 530 530 530 530 k mm 575 575 650 650 675 825 875 975 1300 1400 l mm 475 525 550 565 725 925 875 1075 800 1100 m mm 1530 1660 1685 1860 1825 1860 2025 2040 2500 2600 n mm 300 325 325 325 325 350 350 400 450 500 o mm 300 325 325 325 325 350 350 400 450 500
*8
Nominal dimensions, subject to modification.
Specification
(cont.)
4
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 5
Boiler size 1 2 3 4 5 6 7 8 9 A
p mm 660 660 760 760 810 810 910 960 1110 1160 q
*6
mm 500 550 600 650 700 750 850 900 1000 1100
r mm 2550 2790 2875 2965 3165 3380 3485 3700 4290 4590 s mm 1230 1225 1270 1320 1335 1445 1530 1630 1720 1910 t mm 5105 5335 5560 5750 5990 6425 6720 7185 7975 8665 u mm 2500 2675 2800 2950 3000 3150 3350 3550 3800 3900 v mm 2240 2390 2490 2615 2640 2765 2915 3090 3350 3400
1.3 Specification with integral economiser
Boiler size 1 2 3 4 5 6 7 8 9 A Combustion output
*1
- for natural gas MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.7 15.7 18.2
- for fuel oil EL MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.3 14.0 14.0
- output portion % 100 100 100 100 100 100 100 96.6 89.2 76.9 Max. steam output with gas combustion 5 bar working pressure with ECO 100 t/h 5.41 6.41 7.55 9.11 10.68 12.81 14.95 18.08 22.35 25.90 Max. working pressure with ECO 100 t/h 5.31 6.28 7.40 8.94 10.48 12.57 14.67 17.76 21.95 25.47 5 bar working pressure with ECO 200 t/h 5.56 6.58 7.75 9.36 10.97 13.16 15.35 18.57 22.95 26.61 Max. working pressure with ECO 200 t/h 5.45 6.45 7.60 9.18 10.76 12.92 15.07 18.24 22.54 26.17
Max. flue gas temperature with gas com­bustion
5 bar working pressure with ECO 100 °C 171 173 173 175 172 169 174 169 162 166 Max. working pressure with ECO 100 °C 188 191 192 195 191 189 195 187 182 184 5 bar working pressure with ECO 200 °C 125 127 128 130 128 128 124 125 129 124 Max. working pressure with ECO 200 °C 130 133 135 138 135 136 130 131 138 131 Max. steam output with oil combustion 5 bar working pressure with ECO 100 t/h 5.41 6.41 7.55 9.11 10.68 12.81 14.90 17.46 20.03 20.03 Max. working pressure with ECO 100 t/h 5.31 6.28 7.40 8.94 10.47 12.57 14.63 17.15 19.67 19.70 5 bar working pressure with ECO 200 t/h 5.56 6.58 7.75 9.36 10.97 13.16 15.31 17.94 20.58 20.58 Max. working pressure with ECO 200 t/h 5.45 6.45 7.60 9.18 10.76 12.92 15.02 17.62 20.21 20.24
CE designation in accordance with Pressure Equipment Directive 97/23/EC Shipping dimensions
*7
incl. packaging Total length with ECO 100, 200 m 5.77 6.00 6.19 6.38 6.72 7.16 7.44 8.00 8.74 9.38 Total width with ECO 100, 200 m 2.59 2.77 2.88 3.01 3.05 3.20 3.40 3.60 3.85 3.95 Total height with ECO 100 m 2.90 3.08 3.20 3.35 3.40 3.55 3.75 3.95 4.26 4.36 Total height with ECO 200 m 3.02 3.14 3.25 3.38 3.43 3.58 3.89 4.03 4.25 4.38
Total weight
*3
Boiler with thermal insulation with ECO 100 for permissible operating pres­sure
6 bar t 9.9 11.7 13.8 15.4 17.4 20.2 24.1 30.5 36.8 42.5
8 bar t 10.7 12.7 14.9 16.8 19.1 21.6 26.2 30.8 38.9 43.6 10 bar t 11.5 14.0 16.0 18.2 20.4 23.6 27.4 33.4 43.6 48.5 13 bar t 12.7 15.4 18.2 19.6 21.5 25.3 30.1 35.3 44.8 51.1 16 bar t 14.1 15.4 18.3 21.0 23.2 27.8 33.4 39.1 50.2 56.0 18 bar t 13.5 16.8 19.1 22.4 25.0 29.8 33.6 41.6 53.7 60.2 20 bar t 14.2 17.5 20.9 24.0 25.3 29.8 35.5 43.4 – – 22 bar t 14.9 19.1 22.0 24.1 26.5 31.5 37.2 – – – 25 bar t 16.1 19.4 22.8 25.5 28.1 33.5 – – – – with ECO 200 for permissible operating pres­sure
6 bar t 10.4 12.2 14.3 16.0 18.0 21.0 25.3 31.7 37.8 44.1
8 bar t 11.2 13.2 15.4 17.4 19.7 22.4 27.4 32.0 39.9 45.2 10 bar t 12.0 14.5 16.5 18.8 21.0 24.4 28.6 34.6 44.6 50.1 13 bar t 13.2 15.9 18.7 20.2 22.1 26.1 31.3 36.5 45.8 52.7 16 bar t 14.6 15.9 18.8 21.6 23.8 28.6 34.6 40.3 51.2 57.6 18 bar t 14.0 17.3 19.6 23.0 25.6 30.6 34.8 42.8 54.7 61.8 20 bar t 14.7 18.0 21.4 24.6 25.9 30.6 36.7 44.6 – – 22 bar t 15.4 19.6 22.5 24.7 27.1 32.3 38.4 – – – 25 bar t 16.6 19.9 23.3 26.1 28.7 34.3 – – – – Boiler water content
*6
Internal diameter; for external diameter +10 mm
*1
The maximum combustion output varies subject to the required emission values and the fuel used. Check with the burner manufacturer.
*7
Flue gas hood and feedwater line are delivered separately.
*3
Because of production methods, the weight of the boiler can vary by up to 10 %.
Specification
(cont.)
VITOMAX 200-HS
VIESMANN
5
5442 026 GB
Page 6
Boiler size 1 2 3 4 5 6 7 8 9 A
total with ECO 100
m
3
11.3 13.5 15.1 17.7 18.4 22.0 25.9 31.0 39.2 45.0
total with ECO 200
m
3
11.3 13.5 15.1 17.7 18.5 22.1 26.0 31.2 39.3 45.2
average operating range*4 with ECO 100
m
3
9.89 11.53 12.89 15.15 15.75 18.59 21.89 23.29 32.53 36.70
average operating range*4 with ECO 200
m
3
9.94 11.59 12.96 15.22 15.84 18.68 22.03 26.44 32.72 36.87
Steam chamber volume
*4
m
3
1.38 1.94 2.18 2.53 2.64 3.41 4.02 4.75 6.62 8.29
Steam level surface area
*4
m
2
6.58 7.78 8.44 9.28 9.72 11.29 12.53 14.19 17.42 19.95
Boiler connections Steam connector
for permissible operating pres­sure
6 bar PN 16 DN 200 200 200 250 250 250 300 300 350 400
8 bar PN 16 DN 150 200 200 200 200 250 250 300 300 350 10 bar PN 16 DN 150 150 150 200 200 200 250 250 300 300 13 bar PN 40 DN 125 150 150 150 – – – – – – 13 bar PN 25 DN – – – – 200 200 200 250 250 250 16 bar PN 40 DN 125 125 150 150 150 – – – – – 16 bar PN 25 DN – – – – – 200 200 200 250 250 18 bar PN 40 DN 125 125 125 150 150 – – – – – 18 bar PN 25 DN – – – – – 200 200 200 200 250 20 bar PN 40 DN 125 125 125 150 150 200 200 200 – – 22 bar PN 40 DN 100 125 125 125 150 150 150 – – – 25 bar PN 40 DN 100 100 125 125 125 150 – – – – Safety valve connector for permissible operating pres­sure
6 bar PN 40 DN 65 65 65 80 80 100 100 100 125 150
8 bar PN 40 DN 50 65 65 65 80 80 100 100 100 125 10 bar PN 40 DN 50 50 65 65 65 80 80 80 100 100 13 bar PN 40 DN 40 50 50 65 65 65 65 80 80 100 16 bar PN 40 DN 40 40 50 50 50 65 65 65 80 80 18 bar PN 40 DN 40 40 40 50 50 65 65 65 80 80 20 bar PN 40 DN 32 40 40 50 50 50 65 65 – – 22 bar PN 40 DN 32 40 40 40 50 50 65 – – – 25 bar PN 40 DN 32 32 40 40 50 50 – – – –
Connector for feedwater pumps PN 40 DN 40 40 40 50 50 50 65 65 65 80 Flue gas mass flow rate
- for natural gas t/h 1.5225 x combustion output in MW
- for fuel oil EL t/h 1.5 x combustion output in MW Flue gas volume
- with ECO 100
m
3
6.4 8.0 9.3 10.7 12.4 15.0 18.4 23.4 30.6 35.1
- with ECO 200
m
3
6.5 8.2 9.5 10.9 12.5 15.0 18.6 23.8 31.0 35.5
*4
Average water level between pump ON and pump OFF.
Specification
(cont.)
6
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 7
1.4 Dimensions with integral economiser
KAB
R3
ELV
TH
SW
E
y
ME
AGA
ECO
ARS
w
x
f
z
BNA
R1
R2
c
e
g
b
a
u
d
v1
KTÜ
HL
R1
KOA SCH
LFE ESL
WSA
500 k l m n o
p1
ML
D
ELWR/WB
530
NW
120
280
100
s
h
Ø q
t
r
KL
SIV
ASS
Caution - hot surface
A
Type plate AGA Flue outlet ARS Fitting assembly ASS Connector for blow-down valve DN 40 PN 40 BNA Burner connection D Steam connector E Drain connector DN 15 PN 40 ECO Economiser EL Vent connector DN 15 PN 40 ELV Fem. connection R ½" for air vent valve ESL Connector for T.D.S. line with dummy flange, DN 20 PN 40 HL Hand hole KAB Boiler cover KL Head hole KOA Condensate drain R 2"
KTÜ Boiler door LFE Connector for conductivity electrode with dummy flange,
DN 50 PN 40 ME Test port R ½" ML Manhole NW Lowest water level R1 Cleaning port, flue gas collector R2 Cleaning port, combustion chamber R3 Cleaning port, ECO SIV Connector for safety valve with 1x dummy flange SCH Inspection port R 2" SW Feedwater connector TH Thermometer WR/WB Connector for water level controller/limiter WSA Connector for water level indicator with 1x dummy flange
Dimensions
*8
Boiler size 1 2 3 4 5 6 7 8 9 A
a mm 2880 3055 3180 3330 3380 3530 3730 3930 4240 4340 b mm 2725 2900 3035 3175 3225 3375 3575 3775 4085 4185 c mm 755 813 825 840 830 835 850 865 945 965 d mm 1800 1950 2000 2100 2200 2300 2400 2500 2870 2920 e mm 905 1030 1105 1155 1205 1275 1380 1530 1680 1680 f mm 800 800 800 900 900 900 1000 1000 1100 1100 g mm 1003 1070 1108 1160 1178 1240 1265 1342 1455 1455 h mm 530 530 530 530 530 530 530 530 530 530 k mm 575 575 650 650 675 825 875 975 1300 1400 l mm 475 525 550 565 725 925 875 1075 800 1100 m mm 1530 1660 1685 1860 1825 1860 2025 2040 2500 2600 n mm 300 325 325 325 325 350 350 400 450 500 o mm 300 325 325 325 325 350 350 400 450 500 p1 (ECO 100/200) mm 1120 1120 1170 1170 1320 1330 1380 1530 1630 1630
q
*9
mm 500 550 600 650 700 750 850 900 1000 1100
r mm 2550 2790 2875 2965 3165 3380 3485 3700 4290 4590 s mm 1230 1225 1270 1320 1335 1445 1530 1630 1720 1910 t (ECO 100/200) mm 5565 5795 5970 6160 6500 6945 7190 7755 8495 9435 u (ECO 100/200) mm 2530 2712 2822 2955 3000 3150 3350 3550 3800 3900 v1 (ECO 100) mm 3038 3240 3390 3565 3640 3815 4065 4290 4650 4800 v1 (ECO 200) mm 3293 3440 3570 3733 3795 3978 4337 4500 4725 4955 w (ECO 100) mm 2565 2685 2790 2920 2965 3115 3305 3487 3730 3775 w (ECO 200) mm 2890 3010 3115 3245 3290 3440 3757 3877 4052 4227 x (ECO 100) mm 3458 3683 3858 4058 4158 4358 4658 5118 5318 5518
*8
Nominal dimensions, subject to modification.
*9
Internal diameter; for external diameter +10 mm
Specification
(cont.)
VITOMAX 200-HS
VIESMANN
7
5442 026 GB
Page 8
Boiler size 1 2 3 4 5 6 7 8 9 A
x (ECO 200) mm 3711 3883 4038 4226 4313 4521 4930 5118 5393 5673 y (ECO 100/200) mm 1285 1380 1428 1480 1495 1530 1612 1682 1797 1867 z (ECO 100/200) mm 1430 1527 1575 1633 1648 1683 1837 1907 2022 2039
1.5 Specification, for burner selection
Ø e
a
b
c
c/2
Ø d
Ø d min.
360
Ø d min.
Boiler size 1 2 3 4 5 6 7 8 9 A Max. permissible combustion output Natural gas MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.7 15.7 18.2
Max. flue gas pressure drop without turbula­tors
hPa 8.1 8.8 8.8 9.7 10.9 12.4 11.3 13.7 14.7 13.6
Max. flue gas pressure drop with turbulators hPa 17.2 16.2 15.0 16.6 17.8 16.7 16.6 18.3 – – Max. flue gas pressure drop with ECO 100 hPa 9.1 9.8 10.3 11.2 12.4 14.4 13.3 15.7 16.7 15.8 Max. flue gas pressure drop with ECO 200 hPa 9.6 10.6 10.8 12.0 13.1 15.2 14.8 16.9 18.2 18.1 Fuel oil EL MW 3.8 4.5 5.3 6.4 7.5 9.0 10.5 12.3 14.0 14.0 Output portion % 100 100 100 100 100 100 100 96.6 89.2 76.9 Max. flue gas pressure drop without turbula­tors
hPa 7.4 8.0 8.0 8.8 9.9 11.3 10.2 11.5 10.2 6.8
Max. flue gas pressure drop with turbulators hPa 15.9 14.9 13.8 15.2 16.3 15.2 15.1 15.5 – – Max. flue gas pressure drop with ECO 100 hPa 8.4 9.0 9.5 10.3 11.3 13.2 12.1 13.3 11.6 8.0 Max. flue gas pressure drop with ECO 200 hPa 8.8 9.7 9.9 10.9 12.0 13.9 13.5 14.3 12.8 9.2 Combustion chamber dimensions Length – Approved for flames Dimension a mm 3793 4023 4198 4388 4538 4973 5188 5603 6313 7050 – Flame tube Dimension b mm 3543 3773 3948 4138 4288 4723 4938 5353 6063 6800 – Reversing chamber Dimension c mm 500 Diameter – Corrugated pipe, internal Dimension d
min.
7mm 825 925 1000 1050 1100 1155 1275 1405 1555 1555 – Corrugated pipe, average Dimension d 7mm 875 1000 1075 1125 1175 1250 1350 1500 1650 1650 – Smooth pipe, internal Dimension d
min.
7mm 835 960 1035 1085 1135 1210 1310 1460 1610 1610 Burner connection dimensions
Minimum burner head length
mm 360
Max. burner head diame­ter
Dimension e 7mm 522 597 718 718 718 768 768 918 1018 1018
Combustion chamber volume Flame tube (corrugated pipe)
m
3
2.13 2.96 3.58 4.11 4.65 5.80 7.07 9.46 12.96 14.25
Flame tube and reversing chamber depth
m
3
2.30 3.20 3.90 4.50 5.00 6.20 7.60 10.10 13.70 15.20
Specification
(cont.)
8
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 9
Note
Details regarding diameter refer to the maximum depth of corrugations and the smallest internal diameter. The type of flame tube depends on the pressure stages employed. Product-dependent tolerances are not taken into consideration.
1.6 Flame tube temperature limiter (FTÜ)
EN 12953 part 3 / point 5.4 refers to national regulations, i.e. that a temperature measuring system (= flame tube temperature limiter) may be required, subject to the internal diameter of the flame tube and the combustion output. For Germany, the use of flame tube temperature limiters is regulated by the agreement of the trade associations 2003/1 as follows.
FTÜ required:
■ for flame tube internal diameter > 1400 mm and/or
■ for combustion output > 12000 kW (oil combustion) > 15600 kW (gas combustion)
Specification
(cont.)
VITOMAX 200-HS
VIESMANN
9
5442 026 GB
Page 10
2.1 Boiler size 1, max. combustion output 3.8 MW
Standard version (without turbulators)
84.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 3.8 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
84.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 3.8 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
10
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 11
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 3.8 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 3.8 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
11
5442 026 GB
Page 12
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
Flue gas pressure drop, natural gas, max. 3.8 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop, fuel oil, max. 3.8 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
12
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 13
Version with turbulators (2000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 3.8 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 3.8 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
13
5442 026 GB
Page 14
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 3.8 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 3.8 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
14
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 15
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
18
Flue gas pressure drop, natural gas, max. 3.8 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
18
Flue gas pressure drop, fuel oil, max. 3.8 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
15
5442 026 GB
Page 16
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 3.8 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 3.8 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
16
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 17
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 3.8 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 3.8 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
17
5442 026 GB
Page 18
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, natural gas, max. 3.8 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, fuel oil, max. 3.8 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
18
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 19
Version without turbulators, with ECO 200
94.4
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, natural gas, max. 3.8 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
94.4
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, fuel oil, max. 3.8 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
19
5442 026 GB
Page 20
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
105
110
115
120
125
130
135
Flue gas temperature, natural gas, max. 3.8 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
105
110
115
120
125
130
135
Flue gas temperature, fuel oil, max. 3.8 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
20
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 21
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, natural gas, max. 3.8 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, fuel oil, max. 3.8 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
21
5442 026 GB
Page 22
2.2 Boiler size 2, max. combustion output 4.5 MW
Standard version (without turbulators)
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 4.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 4.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
22
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 23
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 4.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 4.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
23
5442 026 GB
Page 24
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
Flue gas pressure drop, natural gas, max. 4.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
Flue gas pressure drop, fuel oil, max 4.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
24
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 25
Version with turbulators (2000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 4.5 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 4.5 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
25
5442 026 GB
Page 26
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 4.5 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 4.5 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
26
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 27
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 4.5 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 4.5 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
27
5442 026 GB
Page 28
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 4.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 4.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
28
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 29
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 4.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 4.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
29
5442 026 GB
Page 30
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, natural gas, max. 4.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
Flue gas pressure drop, fuel oil, max. 4.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
30
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 31
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, natural gas, max. 4.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, fuel oil, max. 4.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
31
5442 026 GB
Page 32
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
105
110
115
120
125
130
135
Flue gas temperature, natural gas, max. 4.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
105
110
115
120
125
130
135
Flue gas temperature, fuel oil, max. 4.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
32
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 33
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, natural gas, max. 4.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, fuel oil, max. 4.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
33
5442 026 GB
Page 34
2.3 Boiler size 3, max. combustion output 5.3 MW
Standard version (without turbulators)
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 5.3 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 5.3 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
34
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 35
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 5.3 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 5.3 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
35
5442 026 GB
Page 36
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
Flue gas pressure drop, natural gas, max. 5.3 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
Flue gas pressure drop, fuel oil, max 5.3 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
36
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 37
Version with turbulators (2000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 5.3 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 5.3 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
37
5442 026 GB
Page 38
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 5.3 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 5.3 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
38
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 39
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 5.3 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 5.3 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
39
5442 026 GB
Page 40
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 5.3 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 5.3 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
40
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 41
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 5.3 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 5.3 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
41
5442 026 GB
Page 42
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, natural gas, max. 5.3 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, fuel oil, max. 5.3 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
42
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 43
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, natural gas, max. 5.3 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
94.8
95.0
95.2
95.4
95.6
Boiler efficiency, fuel oil, max. 5.3 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
43
5442 026 GB
Page 44
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, natural gas, max. 5.3 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 5.3 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
44
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 45
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, natural gas, max. 5.3 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, fuel oil, max. 5.3 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
45
5442 026 GB
Page 46
2.4 Boiler size 4, max. combustion output 6.4 MW
Standard version (without turbulators)
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 6.4 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 6.4 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
46
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 47
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 6.4 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 6.4 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
47
5442 026 GB
Page 48
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, natural gas, max. 6.4 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, fuel oil, max 6.4 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
48
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 49
Version with turbulators (2000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 6.4 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 6.4 MW, with turbulators (2000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
49
5442 026 GB
Page 50
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 6.4 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 6.4 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
50
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 51
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 6.4 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 6.4 MW, with turbulators (2000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
51
5442 026 GB
Page 52
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 6.4 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 6.4 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
52
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 53
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 6.4 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 6.4 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
53
5442 026 GB
Page 54
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, natural gas, max. 6.4 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, fuel oil, max. 6.4 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
54
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 55
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.4
94.8
95.0
95.2
95.4
95.6
94.6
Boiler efficiency, natural gas, max. 6.4 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.4
94.8
95.0
95.2
95.4
95.6
94.6
Boiler efficiency, fuel oil, max. 6.4 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
55
5442 026 GB
Page 56
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, natural gas, max. 6.4 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 6.4 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
56
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 57
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, natural gas, max. 6.4 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
1
2
3
4
5
6
7
8
9
10
11
12
Flue gas pressure drop, fuel oil, max. 6.4 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
57
5442 026 GB
Page 58
2.5 Boiler size 5, max. combustion output 7.5 MW
Standard version (without turbulators)
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 7.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
85.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 7.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
58
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 59
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 7.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 7.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
59
5442 026 GB
Page 60
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, natural gas, max. 7.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, fuel oil, max 7.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
60
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 61
Version with turbulators (1750 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 7.5 MW, with turbulators (1750 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 7.5 MW, with turbulators (1750 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
61
5442 026 GB
Page 62
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 7.5 MW, with turbulators (1750 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 7.5 MW, with turbulators (1750 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
62
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 63
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
18
Flue gas pressure drop, natural gas, max. 7.5 MW, with turbulators (1750 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
18
Flue gas pressure drop, fuel oil, max. 7.5 MW, with turbulators (1750 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
63
5442 026 GB
Page 64
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 7.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 7.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
64
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 65
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 7.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 7.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
65
5442 026 GB
Page 66
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Flue gas pressure drop, natural gas, max. 7.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Flue gas pressure drop, fuel oil, max. 7.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
66
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 67
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
95.0
95.2
95.4
95.6
95.8
94.8
Boiler efficiency, natural gas, max. 7.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
95.0
95.2
95.4
95.6
95.8
94.8
Boiler efficiency, fuel oil, max. 7.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
67
5442 026 GB
Page 68
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, natural gas, max. 7.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 7.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
68
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 69
13
14
1
2
3
4
5
6
7
8
9
10
11
12
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Flue gas pressure drop, natural gas, max. 7.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
13
14
1
2
3
4
5
6
7
8
9
10
11
12
Boiler load in %
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Flue gas pressure drop, fuel oil, max. 7.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
69
5442 026 GB
Page 70
2.6 Boiler size 6, max. combustion output 9.0 MW
Standard version (without turbulators)
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 9.0 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 9.0 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
70
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 71
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 9.0 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 9.0 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
71
5442 026 GB
Page 72
13
14
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
0 100 75 50 25
Boiler load in %
Flue gas pressure drop, natural gas, max. 9.0 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
13
14
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
0 100 75 50 25
Boiler load in %
Flue gas pressure drop, fuel oil, max 9.0 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
72
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 73
Version with turbulators (1000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 9.0 MW, with turbulators (1000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 9.0 MW, with turbulators (1000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
73
5442 026 GB
Page 74
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 9.0 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 9.0 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
74
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 75
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 9.0 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 9.0 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
75
5442 026 GB
Page 76
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 9.0 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 9.0 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
76
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 77
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 9.0 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 9.0 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
77
5442 026 GB
Page 78
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 9.0 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 9.0 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
78
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 79
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
95.0
95.2
95.4
95.6
95.8
94.8
Boiler efficiency, natural gas, max. 9.0 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.6
95.0
95.2
95.4
95.6
95.8
94.8
Boiler efficiency, fuel oil, max. 9.0 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
79
5442 026 GB
Page 80
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, natural gas, max. 9.0 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
140
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 9.0 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
80
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 81
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 9.0 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 9.0 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
81
5442 026 GB
Page 82
2.7 Boiler size 7, max. combustion output 10.5 MW
Standard version (without turbulators)
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 10.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 10.5 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
82
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 83
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 10.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, fuel oil, max. 10.5 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
83
5442 026 GB
Page 84
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, natural gas, max. 10.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0 100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
Flue gas pressure drop in hPa, mbar
10
11
12
Flue gas pressure drop, fuel oil, max 10.5 MW, standard (without turbulators)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
84
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 85
Version with turbulators (1250 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 10.5 MW, with turbulators (1250 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 10.5 MW, with turbulators (1250 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
85
5442 026 GB
Page 86
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 10.5 MW, with turbulators (1250 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, fuel oil, max. 10.5 MW, with turbulators (1250 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 18 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
86
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 87
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 10.5 MW, with turbulators (1250 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 10.5 MW, with turbulators (1250 mm)
A
Working pressure 2 bar
D
Working pressure 11 bar
G
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
87
5442 026 GB
Page 88
Version without turbulators, with ECO 100
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, natural gas, max. 10.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
91.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
91.5
92.5
93.5
94.5
92.0
93.0
94.0
95.0
Boiler efficiency, fuel oil, max. 10.5 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
88
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 89
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, natural gas, max. 10.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
120
130
140
150
160
170
180
190
200
110
Flue gas temperature, fuel oil, max. 10.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 18 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
89
5442 026 GB
Page 90
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
1
2
3
4
5
6
7
8
9
10
11
12
13
14
Flue gas pressure drop, natural gas, max. 10.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 10.5 MW, without turbulators, with ECO 100
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
90
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 91
Version without turbulators, with ECO 200
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.9
95.2
95.3
95.5
95.6
95.8
95.0
95.4
95.7
95.1
Boiler efficiency, natural gas, max. 10.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler efficiency in %
100 75 50 25
Boiler load in %
94.9
95.2
95.3
95.5
95.6
95.8
95.0
95.4
95.7
95.1
Boiler efficiency, fuel oil, max. 10.5 MW, without turbulators, with ECO 200, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
91
5442 026 GB
Page 92
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, natural gas, max. 10.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
105
110
115
120
125
130
135
100
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 10.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
B
Working pressure 8 bar
D
Working pressure 14 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
92
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 93
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, natural gas, max. 10.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
Flue gas pressure drop, fuel oil, max. 10.5 MW, without turbulators, with ECO 200
A
Working pressure 5 bar
F
Working pressure 23 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
93
5442 026 GB
Page 94
2.8 Boiler size 8, max. combustion output 12.7 MW
Standard version (without turbulators)
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max 12.7 MW, standard (without turbulators), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
93.0
94.0
86.0
87.0
88.0
89.0
90.0
91.0
92.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
88.4
87.696.6
Boiler efficiency, fuel oil, max. 12.3 MW, standard (without turbulators), taking into account boiler radiation losses
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
94
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 95
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
Flue gas temperature, natural gas, max. 12.7 MW, standard (without turbulators)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
150
Flue gas temperature in °C
100 75 50 25
Boiler load in %
170
190
210
230
250
270
290
310
330
350
87.6
275
96.6
Flue gas temperature, fuel oil, max. 12.3 MW, standard (without turbulators)
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
95
5442 026 GB
Page 96
0 100 75 50 25
Boiler load in %
2
4
6
8
10
12
Flue gas pressure drop in hPa, mbar
14
16
Flue gas pressure drop, natural gas, max. 12.7 MW, standard (without turbulators)
A
Working pressure 2 bar
C
Working pressure 8 bar
F
Working pressure 19 bar
0
75 50 25
Boiler load in %
2
4
6
8
10
12
Flue gas pressure drop in hPa, mbar
14
16
87.6
9.2
96.6100
Flue gas pressure drop, fuel oil, max 12.3 MW, standard (without turbulators)
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
C
Working pressure 8 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
96
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 97
Version with turbulators (1000 mm)
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, natural gas, max. 12.7 MW, with turbulators (1000 mm), taking into account boiler radiation losses
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
96.6
88.0
89.0
90.0
91.0
92.0
93.0
94.0
87.0
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 12.3 MW, with turbulators (1000 mm), taking into account boiler radiation losses
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
97
5442 026 GB
Page 98
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
160
180
200
220
240
260
280
Flue gas temperature, natural gas, max. 12.7 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
160
180
200
220
240
260
280
96.6
140
Flue gas temperature in °C
100 75 50 25
Boiler load in %
Flue gas temperature, fuel oil, max. 12.3 MW, with turbulators (1000 mm)
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
B
Working pressure 5 bar
C
Working pressure 8 bar
D
Working pressure 11 bar
E
Working pressure 14 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
98
VIESMANN
VITOMAX 200-HS
5442 026 GB
Page 99
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
2
4
6
8
10
12
14
16
18
20
Flue gas pressure drop, natural gas, max. 12.7 MW, with turbulators (1000 mm)
A
Working pressure 2 bar
C
Working pressure 8 bar
F
Working pressure 19 bar
2
4
6
8
10
12
14
16
18
20
96.6
0
Flue gas pressure drop in hPa, mbar
100 75 50 25
Boiler load in %
Flue gas pressure drop, fuel oil, max. 12.3 MW, with turbulators (1000 mm)
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 2 bar
C
Working pressure 8 bar
F
Working pressure 19 bar
Boiler selection diagrams
(cont.)
VITOMAX 200-HS
VIESMANN
99
5442 026 GB
Page 100
Version without turbulators, with ECO 100
Boiler efficiency in %
100 75 50 25
Boiler load in %
92.0
93.0
94.0
95.0
92.5
93.5
94.5
95.5
Boiler efficiency, natural gas, max. 12.7 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 19 bar
92.0
93.0
94.0
95.0
92.5
93.5
94.5
95.5
96.6
Boiler efficiency in %
100 75 50 25
Boiler load in %
Boiler efficiency, fuel oil, max. 12.3 MW, without turbulators, with ECO 100, taking into account boiler radiation losses
1
Boiler load limit to EN 12953 for fuel oil EL
A
Working pressure 5 bar
B
Working pressure 8 bar
C
Working pressure 11 bar
D
Working pressure 14 bar
E
Working pressure 19 bar
Boiler selection diagrams
(cont.)
100
VIESMANN
VITOMAX 200-HS
5442 026 GB
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