Consider a steam turbine that takes in water vapor at a pressure of p, = 10 bar and a temperature of T, = 400°C. If the outlet pressure is p2 = 1.5 bar and the isentropic efficiency of the turbine is 7Ts = 0.83: Determine the temperature at the outlet of the turbine, T, in [°C] Draw a T-s diagram of the process from the inlet to outlet of the turbine. Include the a) b) vapor dome, all relevant isobars, all states clearly labelled included the theoretical isentropic state ("2s"), and a process line with direction shown.

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter46: Room Air Conditioners
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Consider a steam turbine that takes in water vapor at a pressure of p, = 10 bar and
a temperature of T = 400°C. If the outlet pressure is p2 = 1.5 bar and the isentropic efficiency of the
turbine is 7Ts = 0.83:
' Determine the temperature at the outlet of the turbine, T, in [°C]
Draw a T-s diagram of the process from the inlet to outlet of the turbine. Include the
a)
b)
vapor dome, all relevant isobars, all states clearly labelled included the theoretical isentropic state
("2s"), and a process line with direction shown.
Transcribed Image Text:Consider a steam turbine that takes in water vapor at a pressure of p, = 10 bar and a temperature of T = 400°C. If the outlet pressure is p2 = 1.5 bar and the isentropic efficiency of the turbine is 7Ts = 0.83: ' Determine the temperature at the outlet of the turbine, T, in [°C] Draw a T-s diagram of the process from the inlet to outlet of the turbine. Include the a) b) vapor dome, all relevant isobars, all states clearly labelled included the theoretical isentropic state ("2s"), and a process line with direction shown.
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