ankine cycle using superheat and reheat applications. Steam enters the stage 1 turbine at 8 MPa and a temperature of 480°C and expands at a pressure of 0.7 MPa. The steam is then reheated to a temperature of 440°C before entering the stage 2 turbine, where the steam expands in the condenser at a pressure of 0.008 MPa. The net power generated is 100 MW. Calculate : A) the thermal efficiency of the cycle, B) the mass flow rate of the steam, C) the rate of heat transferred from the condenser to the surroundings (Qout)

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A Rankine cycle using superheat and reheat applications. Steam enters the stage 1 turbine at 8 MPa and a temperature of 480°C and expands at a pressure of 0.7 MPa. The steam is then reheated to a temperature of 440°C before entering the stage 2 turbine, where the steam expands in the condenser at a pressure of 0.008 MPa. The net power generated is 100 MW. Calculate : A) the thermal efficiency of the cycle, B) the mass flow rate of the steam, C) the rate of heat transferred from the condenser to the surroundings (Qout)
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