Steam at a rate of 200 kg/min enters a turbine at 350'C and 40 bar through a 7.5-em internal diameter pipe. The turbine operation is adiabatic, and the efflynt leaves as saturated water at 5 bar through a S-cm diameter pipe. 1. Calculate the work produced by the turbine in kW. 2 What is the enthalpyand phase of the effluent stream? 21If it leaves the turbine at 75C and 5 bar 22If it leaves the turbine at 30°C and 5 bar

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Steam at a rate of 200 kg/min enters a turbine at 350°C and 40 bar through a 7.5-cm
internal diameter pipe. The turbine operation is adiabatic, and the effluent leaves as
saturated water at 5 bar through a 5-cm diameter pipe.
1. Calculate the work produced by the turbine in kW.
2. What is the enthalpyand phase of the effluent stream?
21 If it leaves the turbine at 75C and 5 bar
22 If it leaves the turbine at 30C and 5 bar
7.5
Transcribed Image Text:Steam at a rate of 200 kg/min enters a turbine at 350°C and 40 bar through a 7.5-cm internal diameter pipe. The turbine operation is adiabatic, and the effluent leaves as saturated water at 5 bar through a 5-cm diameter pipe. 1. Calculate the work produced by the turbine in kW. 2. What is the enthalpyand phase of the effluent stream? 21 If it leaves the turbine at 75C and 5 bar 22 If it leaves the turbine at 30C and 5 bar 7.5
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