In a steam power plant, dry saturated steam enters the turbine at a pressure of 40 bar and exits the turbine at a pressure of 0.1 bar. The turbine has an isentropic efficiency of 90 %, and the...


In a steam power plant, dry saturated steam enters the turbine at a pressure of 40 bar and<br>exits the turbine at a pressure of 0.1 bar. The turbine has an isentropic efficiency of 90 %, and<br>the condensate pump has an isentropic efficiency of 85 %. The water/steam mass flow rate<br>through the plant is 200 kg/s, and all changes in kinetic and potential energy are negligible.<br>Using this information, determine:<br>a) The power output of the turbine, in MW.<br>b) The power required by the pump, in MW.<br>

Extracted text: In a steam power plant, dry saturated steam enters the turbine at a pressure of 40 bar and exits the turbine at a pressure of 0.1 bar. The turbine has an isentropic efficiency of 90 %, and the condensate pump has an isentropic efficiency of 85 %. The water/steam mass flow rate through the plant is 200 kg/s, and all changes in kinetic and potential energy are negligible. Using this information, determine: a) The power output of the turbine, in MW. b) The power required by the pump, in MW.

Jun 11, 2022
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