The annual load duration curve for a typical heavy load being served by a steam station, a run-of-river station and a reservoir hydro- electric station is as shown below. The ratio of number of units supplied by these stations is : Steam : Run-of-river : Reservoir : :7:3:2 The run-of-river station is capable of generating power continuously and works as a base load station. The reservoir station works as a peak load station. Determine (A) the maximum demand of each station and (B) load factor of each station. D 320 Reservoir Hydro-station Steam station 160 E Run-of-river Station 8760 Hours- Load in MW -

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* ZAIN IQ Il.
e 1:1V
docs.google.com &
1 Add file
The annual load duration curve for a typical
heavy load being served by a steam station,
a run-of-river station and a reservoir hydro-
electric station is as shown below. The ratio
of number of units supplied by these
stations is : Steam : Run-of-river : Reservoir :
:7:3:2 The run-of-river station is capable
of generating power continuously and
works as a base load station. The reservoir
station works as a peak load station.
Determine (A) the maximum demand of
each station and (B) load factor of each
station.
D 320
Reservoir
Hydro-station
Steam station
G
160
IC
B
+ Run-of-river Station
8760 Hours-
1 Add file
- MW UI peo
Transcribed Image Text:* ZAIN IQ Il. e 1:1V docs.google.com & 1 Add file The annual load duration curve for a typical heavy load being served by a steam station, a run-of-river station and a reservoir hydro- electric station is as shown below. The ratio of number of units supplied by these stations is : Steam : Run-of-river : Reservoir : :7:3:2 The run-of-river station is capable of generating power continuously and works as a base load station. The reservoir station works as a peak load station. Determine (A) the maximum demand of each station and (B) load factor of each station. D 320 Reservoir Hydro-station Steam station G 160 IC B + Run-of-river Station 8760 Hours- 1 Add file - MW UI peo
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