A vapor-compression refrigeration cycle using ammonia as working fluid 11 has a refrigerating capacity is 150 kW. Ammonia exits the evaporator as saturated vapor at-22°C. The refrigerant enters the condenser at 16 bar and 160°C, and saturated liquid exits at 16 bar. Determine the mass flow rate of refrigerant, in kg/min

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A vapor-compression refrigeration cycle using ammonia as working fluid 11 has a refrigerating capacity is 150 kW. Ammonia exits the evaporator as saturated vapor at-22°C. The refrigerant enters the condenser at 16 bar and 160°C, and saturated liquid exits at 16 bar. Determine the mass flow rate of refrigerant, in kg/min."
A vapor-compression refrigeration cycle using ammonia as working fluid
has a refrigerating capacity is 150 kW. Ammonia exits the evaporator as
saturated vapor at - 22°C. The refrigerant enters the condenser at 16 bar
and 160°C, and saturated liquid exits at 16 bar. Determine the mass flow
rate of refrigerant, in kg/min. *
Transcribed Image Text:A vapor-compression refrigeration cycle using ammonia as working fluid has a refrigerating capacity is 150 kW. Ammonia exits the evaporator as saturated vapor at - 22°C. The refrigerant enters the condenser at 16 bar and 160°C, and saturated liquid exits at 16 bar. Determine the mass flow rate of refrigerant, in kg/min. *
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