A refrigerating system using R – 134a has a load of 20 kW. Limits of operating pressures are 750 kPa and 150 kPa. The refrigerant enters the compressor suction as superheated vapor at 0.14 MPa and – 10°C and exits at 0.75 MPa and 60°C. The refrigerant is cooled in the condenser to 24°C and 0.65 MPa. The refrigerant is then throttled to 0.15 MPa before the evaporator. Calculate the COP of the system.

Refrigeration and Air Conditioning Technology (MindTap Course List)
8th Edition
ISBN:9781305578296
Author:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Publisher:John Tomczyk, Eugene Silberstein, Bill Whitman, Bill Johnson
Chapter28: Special Refrigeration Applications
Section: Chapter Questions
Problem 15RQ: Why is two-stage compression popular for extra-low-temperature refrigeration systems?
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A refrigerating system using R – 134a has a load of 20 kW. Limits of operating pressures are 750
kPa and 150 kPa. The refrigerant enters the compressor suction as superheated vapor at 0.14 MPa
and – 10°C and exits at 0.75 MPa and 60°C. The refrigerant is cooled in the condenser to 24°C and
0.65 MPa. The refrigerant is then throttled to 0.15 MPa before the evaporator. Calculate the COP of
the system.
Transcribed Image Text:A refrigerating system using R – 134a has a load of 20 kW. Limits of operating pressures are 750 kPa and 150 kPa. The refrigerant enters the compressor suction as superheated vapor at 0.14 MPa and – 10°C and exits at 0.75 MPa and 60°C. The refrigerant is cooled in the condenser to 24°C and 0.65 MPa. The refrigerant is then throttled to 0.15 MPa before the evaporator. Calculate the COP of the system.
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