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Experimental investigation of a gas engine-driven heat pump system for cooling and heating operation

机译:燃气发动机驱动热泵系统进行冷却加热操作的实验研究

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摘要

The present work aimed at evaluating the performance of a gas engine driven heat pump (GEHP) for cooling and hot water supply. A test prototype working with R134a was built, and the cooling performance with hot water supply were experimented in a range of evaporator water inlet temperature from 12 degrees C to 22 degrees C, ambient air temperature from 24.2 degrees C to 37 degrees C, and gas engine speeds from 1400 rpm to 20 0 0 rpm. The results show that the effects of evaporator water inlet temperature and gas engine speed on the system performance are more significant than those of ambient air temperature. Average hot water outlet temperatures between 40.7 degrees C and 61.7 degrees C are obtained over the considered range of the external operating parameters and this met the temperature demand of domestic water for shaving, residential dish washing, and laundry. Moreover, the primary energy ratio (PER 2) of GEHP system is between 1.14 and 1.45 with waste heat recovery. (c) 2017 Elsevier Ltd and IIR. All rights reserved.
机译:目前的工作旨在评估燃气发动机驱动热泵(Gehp)的性能进行冷却和热水供应。建造了使用R134A的测试原型,并在一系列蒸发器进水温度范围为12摄氏度至22℃,环境空气温度为24.2℃至37℃,气体发动机速度从1400 rpm到20 0 0 RPM。结果表明,蒸发器进水温度和气体发动机速度对系统性能的影响比环境空气温度更大。在外部操作参数的考虑范围内获得了40.7度C和61.7摄氏度之间的平均热水出口温度,并且这符合剃须,住宅洗碗和洗衣店的国内水的温度需求。此外,具有余热回收率的GeHP系统的初级能量比(每2个)在1.14和1.45之间。 (c)2017年Elsevier Ltd和IIR。版权所有。

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