A heat pump delivers 8 kJ thermal energy to the high temperature reservoir at the temperature...
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A heat pump delivers 8 kJ thermal energy to the high temperature reservoir at the temperature of 22°C (the inside of the house). The outside ambient temperature is -10°C. Determine the coefficient of performance of the Carnot heat pump cycle operating between these two thermal reservoirs. Compare the coefficient of performance of the Carnot heat pump cycle with the coefficient of performance of the cycle for each of the following five cases and determine if the cycle is possible. a) W = 8 kJ b) W = 0 kJ c) W = 1 kJ d) W = 0.5 kJ e) W=0.87 kJ A heat pump delivers 8 kJ thermal energy to the high temperature reservoir at the temperature of 22°C (the inside of the house). The outside ambient temperature is -10°C. Determine the coefficient of performance of the Carnot heat pump cycle operating between these two thermal reservoirs. Compare the coefficient of performance of the Carnot heat pump cycle with the coefficient of performance of the cycle for each of the following five cases and determine if the cycle is possible. a) W = 8 kJ b) W = 0 kJ c) W = 1 kJ d) W = 0.5 kJ e) W=0.87 kJ
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To determine the Carnot coefficient of performance COP for the given heat pump cycle we first need t... View the full answer
Related Book For
Physics
ISBN: 978-0077339685
2nd edition
Authors: Alan Giambattista, Betty Richardson, Robert Richardson
Posted Date:
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