Engineering, 25.04.2020 01:02 cwater7
Steam enters a turbine operating at steady state at 500 lbf/in.2, 600°F, and exits as saturated vapor at 2 lbf/in.2. The power developed by the turbine is 2.5×106 Btu/h and the steam flow rate is 15,000 lb/h. Heat transfer occurs at a location on the surface of the turbine where the average temperature is 300°F. Neglecting kinetic and potential energy effects
a. Determine heat transfer rate, in Btu/h.
b. Determine the rate of entropy production, in Btu/h°R.
c. Draw a T-s diagram.
Answers: 2
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Engineering, 04.07.2019 18:20, moneywaydaedae
Air is compressed isentropically from an initial state of 300 k and 101 kpa to a final temperature of 1000 k. determine the final pressure using the following approaches: (a) approximate analysis (using properties at the average temperature) (b) exact analysis
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Engineering, 04.07.2019 19:20, diawia
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Answers: 2
Steam enters a turbine operating at steady state at 500 lbf/in.2, 600°F, and exits as saturated vapo...
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