Q8/ A turbine that uses steam drives an electric generator. The inlet steam flows through a 10-cm-diameter pipe to the turbine at the rate of 2.5 kg/s at 600°C and 1000 kPa. The exit steam discharges through a 25-cm-diameter pipe at 400°C and 100 kPa. What is the expected power obtained from the turbine if it operates essentially adiabatically? AÙ = 0). (assume 2.5 kg/s T = 600°C P = I000 kla Tumbina T= 400°C P; = J0Okl 2. Skg/s

Elements Of Electromagnetics
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Q8/ A turbine that uses steam drives an electric generator. The inlet steam flows through a
10-cm-diameter pipe to the turbine at the rate of 2.5 kg/s at 600°C and 1000 kPa. The exit
steam discharges through a 25-cm-diameter pipe at 400°C and 100 kPa. What is the expected
power obtained from the turbine if it operates essentially adiabatically?
AÙ = 0).
(assume
25 kg/s
Tunbina
T, = 400°C
P, = JoOkl
2. 5ky/s
T = 600°C
Pi = 1000kla
Transcribed Image Text:Q8/ A turbine that uses steam drives an electric generator. The inlet steam flows through a 10-cm-diameter pipe to the turbine at the rate of 2.5 kg/s at 600°C and 1000 kPa. The exit steam discharges through a 25-cm-diameter pipe at 400°C and 100 kPa. What is the expected power obtained from the turbine if it operates essentially adiabatically? AÙ = 0). (assume 25 kg/s Tunbina T, = 400°C P, = JoOkl 2. 5ky/s T = 600°C Pi = 1000kla
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