- Consider a solar-pond power plant that operates on a simple ideal Rankine cycle with refrigerant-134a as the working fluid. The refrigerant enters the turbine as a saturated vapor at 1.4 MPa and leaves at 0.7 MPa. The mass flow rate of the refrigerant is 3 kg/s. Show the cycle on a T-s diagram with respect to saturation lines and determine (a) the thermal efficiency of the cycle and (b) the power output of this plant.

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Chapter1: Units, Trigonometry. And Vectors
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10-Consider a solar-pond power plant that operates on a simple ideal Rankine cycle with
refrigerant-134a as the working fluid. The refrigerant enters the turbine as a saturated
vapor at 1.4 MPa and leaves at 0.7 MPa. The mass flow rate of the refrigerant is 3 kg/s.
Show the cycle on a T-s diagram with respect to saturation lines and determine (a) the
thermal efficiency of the cycle and (b) the power output of this plant.
Transcribed Image Text:10-Consider a solar-pond power plant that operates on a simple ideal Rankine cycle with refrigerant-134a as the working fluid. The refrigerant enters the turbine as a saturated vapor at 1.4 MPa and leaves at 0.7 MPa. The mass flow rate of the refrigerant is 3 kg/s. Show the cycle on a T-s diagram with respect to saturation lines and determine (a) the thermal efficiency of the cycle and (b) the power output of this plant.
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