In a hydroelectric power plant, 80 m2/s of water flows from an elevation of 140 m to a turbine, where electric power is generated. The overall efficiency of the turbine-generator is 80 percent. Disregarding frictional losses in piping The Energy per unit mass in the system (kJ/kg) The Power which can be generated from the system (KW) The electric power output of this plant (KW)
In a hydroelectric power plant, 80 m2/s of water flows from an elevation of 140 m to a turbine, where electric power is generated. The overall efficiency of the turbine-generator is 80 percent. Disregarding frictional losses in piping The Energy per unit mass in the system (kJ/kg) The Power which can be generated from the system (KW) The electric power output of this plant (KW)
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![100 m/s
120 m
Generator Turbine
turbine-gen 80%
In a hydroelectric power plant, 80 m2/s of water flows from an elevation of 140 m to a turbine, where electric
power is generated. The overall efficiency of the turbine-generator is 80 percent. Disregarding frictional losses in
piping
The Energy per unit mass in the system (kJ/kg)
The Power which can be generated from the system (KW)
The electric power output of this plant (KW)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F742e7b4a-514b-424d-92ee-4c381cb80ab4%2F59b8cfcb-e510-46a8-951d-ac9cab404a07%2Fj09mn_processed.jpeg&w=3840&q=75)
Transcribed Image Text:100 m/s
120 m
Generator Turbine
turbine-gen 80%
In a hydroelectric power plant, 80 m2/s of water flows from an elevation of 140 m to a turbine, where electric
power is generated. The overall efficiency of the turbine-generator is 80 percent. Disregarding frictional losses in
piping
The Energy per unit mass in the system (kJ/kg)
The Power which can be generated from the system (KW)
The electric power output of this plant (KW)
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