Water is the working fluid in a regenerative Rankine cycle with one open feedwater heater. Steam enters the turbine at 1800 lb/in² and 1200°F and expands to 120 lb/in.2, where some of the steam is extracted and diverted to the open feedwater heater operating at 120 lb/in. The remaining steam expands through the second-stage turbine to the condenser pressure of 2 lb/in.2 Each turbine stage and both pumps have isentropic efficiencies of 85%. Flow through the condenser, open feedwater heater, and steam generator is at constant pressure. Saturated liquid exits the open feedwater heater at 120 lb/in.2 The mass flow rate of steam entering the first stage of the turbine is 2.36x10² lb/h. Step 1 Your Answer Correct Answer (Used) Determine the net power output of the cycle, in Btu/hr. W cycle = Step 2 ein = 1133000000 Determine the rate of heat transfer, in Btu/h, to the working fluid passing through the steam generator. i Btu/h Btu/h

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Water is the working fluid in a regenerative Rankine cycle with one open feedwater heater. Steam enters the turbine at 1800 lb/in²
and 1200°F and expands to 120 lb/in.2, where some of the steam is extracted and diverted to the open feedwater heater operating at
120 lb/in. The remaining steam expands through the second-stage turbine to the condenser pressure of 2 lb/in.2 Each turbine stage
and both pumps have isentropic efficiencies of 85%. Flow through the condenser, open feedwater heater, and steam generator is at
constant pressure. Saturated liquid exits the open feedwater heater at 120 lb/in.2 The mass flow rate of steam entering the first stage
of the turbine is 2.36x10² lb/h.
Step 1
Your Answer Correct Answer (Used)
Determine the net power output of the cycle, in Btu/hr.
W
cycle=
Step 2
ein =
1133000000
Determine the rate of heat transfer, in Btu/h, to the working fluid passing through the steam generator.
1
Btu/h
Btu/h
Transcribed Image Text:Water is the working fluid in a regenerative Rankine cycle with one open feedwater heater. Steam enters the turbine at 1800 lb/in² and 1200°F and expands to 120 lb/in.2, where some of the steam is extracted and diverted to the open feedwater heater operating at 120 lb/in. The remaining steam expands through the second-stage turbine to the condenser pressure of 2 lb/in.2 Each turbine stage and both pumps have isentropic efficiencies of 85%. Flow through the condenser, open feedwater heater, and steam generator is at constant pressure. Saturated liquid exits the open feedwater heater at 120 lb/in.2 The mass flow rate of steam entering the first stage of the turbine is 2.36x10² lb/h. Step 1 Your Answer Correct Answer (Used) Determine the net power output of the cycle, in Btu/hr. W cycle= Step 2 ein = 1133000000 Determine the rate of heat transfer, in Btu/h, to the working fluid passing through the steam generator. 1 Btu/h Btu/h
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