Water is the working fluid in a reheat-regenerative Ranking cycle with one closed feedwater heater and one open feedwate

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Water is the working fluid in a reheat-regenerative Ranking cycle with one closed feedwater heater and one open feedwate

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Water Is The Working Fluid In A Reheat Regenerative Ranking Cycle With One Closed Feedwater Heater And One Open Feedwate 1
Water Is The Working Fluid In A Reheat Regenerative Ranking Cycle With One Closed Feedwater Heater And One Open Feedwate 1 (96.71 KiB) Viewed 33 times
Water is the working fluid in a reheat-regenerative Ranking cycle with one closed feedwater heater and one open feedwater heater. Steam enters the turbine at 1400 lbf/in.2 and 1100°F and expands to 500 lbf/in.?, where some of the steam is extracted and diverted to the closed feedwater heater. Condensate exiting the closed feedwater heater as saturated liquid at 500 lbf/in.- undergoes a throttling process to 120 lbf/in.- as it passes through a trap into the open feedwater heater. The feedwater leaves the closed feedwater heater at 1400 lbf/in.? and a temperature equal to the saturation temperature at 500 lbf/in.? The remaining steam is reheated to 1000°F before entering the second-stage turbine, where it expands to 120 lbf/in. Some of the steam is extracted and diverted to the open feedwater heater operating at 2 120 lbf/in.- Saturated liquid exits the open feedwater heater at 120 lbf/in.- The remaining steam expands through the third-stage turbine to the condenser pressure of 5 lbf/in.? The turbine stages and the pumps each operate adiabatically with isentropic efficiencies of 85%. Flow through the condenser, closed feedwater heater, open feedwater heater, steam generator, and reheater is at constant pressure. The net power output of the cycle is 1 x 10' Btu/h. Determine for the cycle: (a) the mass flow rate of steam entering the first stage of the turbine, in lb/h. (b) the rate of heat transfer, in Btu/h, to the working fluid passing through the steam generator, including the reheat section. (c) the percent thermal efficiency.
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