p0 MW power plant operates on a simple Rankine cycle. Steam at 5.2 MPa, 400°C expands ankine turbine to 0.036 MPa. Assume actual turbine with isentropic efficiency of 75 % for he compressor and expander. Determine: 3.1 Heat added in steam Generator, KW 3.2 Power loss at Turbine, KW 3.3 Actual thermal efficiency of the cycle 3.4 Mass of water in kilogram needed for an hour in the condenser if the change of temperature for the water is 27°F

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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3. A 200 MW power plant operates on a simple Rankine cycle. Steam at 5.2 MPa, 400°C expands
in a Rankine turbine to 0.036 MPa. Assume actual turbine with isentropic efficiency of 75 % for
both the compressor and expander.
Determine:
3.1 Heat added in steam Generator, KW
3.2 Power loss at Turbine, KW
3.3 Actual thermal efficiency of the cycle
3.4 Mass of water in kilogram needed for an hour in the condenser if the change
of temperature for the water is 27°F
Transcribed Image Text:3. A 200 MW power plant operates on a simple Rankine cycle. Steam at 5.2 MPa, 400°C expands in a Rankine turbine to 0.036 MPa. Assume actual turbine with isentropic efficiency of 75 % for both the compressor and expander. Determine: 3.1 Heat added in steam Generator, KW 3.2 Power loss at Turbine, KW 3.3 Actual thermal efficiency of the cycle 3.4 Mass of water in kilogram needed for an hour in the condenser if the change of temperature for the water is 27°F
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