Draw a T-s diagram of the gas power cycle, which is essentially a Brayton power cycle;...
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Draw a T-s diagram of the gas power cycle, which is essentially a Brayton power cycle; draw a T-s diagram of the vapor power cycle, which is essentially a Rankine cycle. They should be drawn on two diagrams. T₂ = 690 K P₂ = 1.2 MPa W mair Compressor mwater W Heat source, TH= 1600 K Р Ps Ps 8 T₁ = 330 K P₁ = 100 kPa Receiver Pump Qin = 380 MW Gas cycle វាហ www លលលល Heat exchanger Steam cycle 17p = 80% Saturated liquid Condenser Turbine lout T3 = 1580 K 3 P3 = P2 -5 Ambient, Tc = 300 K W. -4 T₁=900 K P4 = 100 kPa Turbine t.gas Ts = 790 K Ps= 10 MPa W₁ t.vap Th,vap = 85% 6 P6 P7 8 kPa Draw a T-s diagram of the gas power cycle, which is essentially a Brayton power cycle; draw a T-s diagram of the vapor power cycle, which is essentially a Rankine cycle. They should be drawn on two diagrams. T₂ = 690 K P₂ = 1.2 MPa W mair Compressor mwater W Heat source, TH= 1600 K Р Ps Ps 8 T₁ = 330 K P₁ = 100 kPa Receiver Pump Qin = 380 MW Gas cycle វាហ www លលលល Heat exchanger Steam cycle 17p = 80% Saturated liquid Condenser Turbine lout T3 = 1580 K 3 P3 = P2 -5 Ambient, Tc = 300 K W. -4 T₁=900 K P4 = 100 kPa Turbine t.gas Ts = 790 K Ps= 10 MPa W₁ t.vap Th,vap = 85% 6 P6 P7 8 kPa Draw a T-s diagram of the gas power cycle, which is essentially a Brayton power cycle; draw a T-s diagram of the vapor power cycle, which is essentially a Rankine cycle. They should be drawn on two diagrams. T₂ = 690 K P₂ = 1.2 MPa W mair Compressor mwater W Heat source, TH= 1600 K Р Ps Ps 8 T₁ = 330 K P₁ = 100 kPa Receiver Pump Qin = 380 MW Gas cycle វាហ www លលលល Heat exchanger Steam cycle 17p = 80% Saturated liquid Condenser Turbine lout T3 = 1580 K 3 P3 = P2 -5 Ambient, Tc = 300 K W. -4 T₁=900 K P4 = 100 kPa Turbine t.gas Ts = 790 K Ps= 10 MPa W₁ t.vap Th,vap = 85% 6 P6 P7 8 kPa Draw a T-s diagram of the gas power cycle, which is essentially a Brayton power cycle; draw a T-s diagram of the vapor power cycle, which is essentially a Rankine cycle. They should be drawn on two diagrams. T₂ = 690 K P₂ = 1.2 MPa W mair Compressor mwater W Heat source, TH= 1600 K Р Ps Ps 8 T₁ = 330 K P₁ = 100 kPa Receiver Pump Qin = 380 MW Gas cycle វាហ www លលលល Heat exchanger Steam cycle 17p = 80% Saturated liquid Condenser Turbine lout T3 = 1580 K 3 P3 = P2 -5 Ambient, Tc = 300 K W. -4 T₁=900 K P4 = 100 kPa Turbine t.gas Ts = 790 K Ps= 10 MPa W₁ t.vap Th,vap = 85% 6 P6 P7 8 kPa
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Solution a Ts diagram for two cycles b The mass flow rate of steam in kgmin Now put t... View the full answer
Related Book For
Fundamentals of Thermodynamics
ISBN: 978-0471152323
6th edition
Authors: Richard E. Sonntag, Claus Borgnakke, Gordon J. Van Wylen
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