A steam at 1400 KPa and 350°C (state 1) enters an adiabatic turbine through a pipe that is 8 cm in diameter, at a mass flow rate if 0.1 kg/s. the exhaust from the turbine is carried through a 25 cm diameter pipe and it is at 50 KPa and 100 °C (state 2). a. What is the volumetric flow rate at states 1 and 2? b. What is the velocity at states 1 and 2? c. What is the power output of the turbine?

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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A steam at 1400 KPa and 350°C (state 1) enters an adiabatic turbine through a pipe that is
8 cm in diameter, at a mass flow rate if 0.1 kg/s. the exhaust from the turbine is carried
through a 25 cm diameter pipe and it is at 50 KPa and 100 °C (state 2).
a. What is the volumetric flow rate at states 1 and 2?
b. What is the velocity at states 1 and 2?
c. What is the power output of the turbine?
Transcribed Image Text:A steam at 1400 KPa and 350°C (state 1) enters an adiabatic turbine through a pipe that is 8 cm in diameter, at a mass flow rate if 0.1 kg/s. the exhaust from the turbine is carried through a 25 cm diameter pipe and it is at 50 KPa and 100 °C (state 2). a. What is the volumetric flow rate at states 1 and 2? b. What is the velocity at states 1 and 2? c. What is the power output of the turbine?
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