Q6/ Steam enters a turbine operating at steady state with a mass flow rate of 4600 kg/h. The turbine develops a power output of 1000 kW. At the inlet, the pressure is 60 bar, the temperature is 400°C, and the velocity is 10 m/s. At the exit, the pressure is 0.1 bar, the quality is 0.9, and the velocity is 30 m/s. Calculate the rate of heat transfer between the turbine and surroundings, in kW.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Q6/ Steam enters a turbine operating at steady state with a mass flow rate of 4600 kg/h.
The turbine develops a power output of 1000 kW. At the inlet, the pressure is 60 bar, the
temperature is 400°C, and the velocity is 10 m/s. At the exit, the pressure is 0.1 bar, the
quality is 0.9, and the velocity is 30 m/s. Calculate the rate of heat transfer between the
turbine and surroundings, in kW.
Transcribed Image Text:Q6/ Steam enters a turbine operating at steady state with a mass flow rate of 4600 kg/h. The turbine develops a power output of 1000 kW. At the inlet, the pressure is 60 bar, the temperature is 400°C, and the velocity is 10 m/s. At the exit, the pressure is 0.1 bar, the quality is 0.9, and the velocity is 30 m/s. Calculate the rate of heat transfer between the turbine and surroundings, in kW.
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