At steady state, a reversible heat pump cycle discharges energy at the rate QH to a hot reservoir at temperature TH, while receiving energy at the rate Qc from a cold reservoir at temperature Tc. (a) If TH = 10°C and Tc = 2°C, determine the coefficient of performance. (b) If QH 10.5 kW, Oc = 8.75 kW, and Tc = 0°C, determine TH, in °C. %3D (c) If the coefficient of performance is 12 and TH = 27°C, determine Tc, in °C.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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At steady state, a reversible heat pump cycle discharges energy at the rate Qu to a hot reservoir at temperature TH, while receiving
energy at the rate Qc from a cold reservoir at temperature Tc.
(a) If TH
= 10°C and Tc = 2°C, determine the coefficient of performance.
(b) If ¿µ = 10.5 kW, O :
8.75 kW, and Tc=0°C, determine TH, in °C.
(c) If the coefficient of performance is 12 and TH= 27°C, determine Tc, in °C.
Transcribed Image Text:At steady state, a reversible heat pump cycle discharges energy at the rate Qu to a hot reservoir at temperature TH, while receiving energy at the rate Qc from a cold reservoir at temperature Tc. (a) If TH = 10°C and Tc = 2°C, determine the coefficient of performance. (b) If ¿µ = 10.5 kW, O : 8.75 kW, and Tc=0°C, determine TH, in °C. (c) If the coefficient of performance is 12 and TH= 27°C, determine Tc, in °C.
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