Rankine cycle, dry saturated steam (x = 100%), enters the turbine at 8 MPa and saturated liquid (x = 0%) leaves the condenser at 0.008 MPa. Net power produced by this cycle is 100 MW. Find the turbine work, the cycle mass flow rate, the rate of heat transfer to the cycle, the rate of heat removal from the cycle, and thermal efficiency. [Ans.: ηth = 37.1% and mass flow rate = 3.77E5 kg
Rankine cycle, dry saturated steam (x = 100%), enters the turbine at 8 MPa and saturated liquid (x = 0%) leaves the condenser at 0.008 MPa. Net power produced by this cycle is 100 MW. Find the turbine work, the cycle mass flow rate, the rate of heat transfer to the cycle, the rate of heat removal from the cycle, and thermal efficiency. [Ans.: ηth = 37.1% and mass flow rate = 3.77E5 kg
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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27. In a Rankine cycle, dry saturated steam (x = 100%), enters the turbine at 8
MPa and saturated liquid (x = 0%) leaves the condenser at 0.008 MPa. Net power
produced by this cycle is 100 MW. Find the turbine work, the cycle mass flow
rate, the rate of heat transfer to the cycle, the rate of heat removal from the cycle,
and thermal efficiency. [Ans.: ηth = 37.1% and mass flow rate = 3.77E5 kg/h].
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