MAN B&W
6.01
Page of
MAN Diesel
ME/MEC engines
198 43 335.2
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Calculation of List of Capacities and Exhaust Gas Data
This chapter describes the necessary auxiliary ma-
chinery capacities to be used for a nominally rated
engine. The capacities given are valid for seawater
cooling system and central cooling water system,
respectively. For derated engine, i.e. with a speci-
fied MCR and/or matching point different from the
nominally rated MCR point, the list of capacities
will be different from the nominal capacities.
Furthermore, among others, the exhaust gas data
depends on the ambient temperature conditions.
Based on examples for a derated engine, the way
of how to calculate the derated capacities, fresh-
water production and exhaust gas amounts and
temperatures will be described in details.
Nomenclature
In the following description and examples of the auxiliary machinery capacities, freshwater generator pro-
Engine ratings
Point / Index
Power
Speed
Nominal MCR point
L
P
L
n
L
Specified MCR point
M
P
M
n
M
Matching point
O
P
O
n
O
Service point
S
P
S
n
S
Parameters
Q = Heat dissipation
V
= Volume flow
M = Mass flow
T
= Temperature
Cooler index
air
scavenge air cooler
lub lube oil cooler
jw
jacket water cooler
cent central cooler
Flow index
sw
seawater flow
cw
cooling/central water flow
exh
exhaust gas
fw
freshwater
Fig. 6.01.02: Nomenclature of coolers and volume flows, etc.
Engine configurations related to SFOC
For S70MEC/MEGI, L70MEC, S65MEC/MEGI, S60MEC/MEGI, L60MEC, S50MEC
The engine type is available in the following two
versions with respect to the efficiency of the tur-
bocharger:
•
A) With high efficiency turbocharger, case A:
which is the basic design and for which the lists
of capacities Section 6.03 are calculated.
•
B) With conventional turbocharger, case B:
Which is an optional design (EoD No. 4 59 07)
if a higher exhaust gas temperature is required
for the exhaust gas boiler. This modification
will lead to a 78% reduction in the exhaust gas
amount and a temperature increase of about
20°C. The SFOC penalty will be 2 g/kWh, see
example in Fig. 6.0.03. The corresponding lists
of capacities are shown in Section 6.03.
198 96 824.5
Fig. 6.01.03: SFOC curves for (A) high efficiency and
(B) conventional turbochargers, respectively
Summary of Contents for B&W S80ME-C7
Page 4: ......
Page 10: ......
Page 15: ...MAN B W MAN Diesel Engine Design 1 ...
Page 16: ......
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Page 31: ...MAN B W MAN Diesel Engine Layout and Load Diagrams SFOC 2 ...
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Page 63: ...MAN B W MAN Diesel Turbocharger Choice Exhaust Gas By pass 3 ...
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Page 71: ...MAN B W MAN Diesel Electricity Production 4 ...
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Page 86: ...MAN B W Page of 1 MAN Diesel This section is not applicable PTO BW GCR 4 04 198 47 58 9 0 ...
Page 109: ...MAN B W MAN Diesel Installation Aspects 5 ...
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Page 143: ...MAN B W MAN Diesel List of Capacities Pumps Coolers Exhaust Gas 6 ...
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Page 163: ...MAN B W MAN Diesel Fuel 7 ...
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Page 179: ...MAN B W MAN Diesel Lubricating Oil 8 ...
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Page 199: ...MAN B W MAN Diesel Cylinder Lubrication 9 ...
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Page 209: ...MAN B W MAN Diesel Piston Rod Stuffing Box Drain Oil 10 ...
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Page 213: ...MAN B W MAN Diesel Central Cooling Water System 11 ...
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Page 219: ...MAN B W MAN Diesel Seawater Cooling System 12 ...
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Page 231: ...MAN B W MAN Diesel Starting and Control Air 13 ...
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Page 239: ...MAN B W MAN Diesel Scavenge Air 14 ...
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Page 249: ...MAN B W MAN Diesel Exhaust Gas 15 ...
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Page 265: ...MAN B W MAN Diesel Engine Control System 16 ...
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Page 275: ...MAN B W MAN Diesel Vibration Aspects 17 ...
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Page 289: ...MAN B W MAN Diesel Monitoring Systems and Instrumentation 18 ...
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Page 313: ...MAN B W MAN Diesel Dispatch Pattern Testing Spares and Tools 19 ...
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Page 339: ...MAN B W MAN Diesel Project Suppport and Documentation 20 ...
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Page 349: ...MAN B W MAN Diesel Appendix A ...
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