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Experimental Study of the Gas Engine Driven Heat Pump with Engine Heat Recovery

机译:发动机热回收燃气发动机驱动热泵的实验研究

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摘要

Gas engine driven heat pumps (GEHPs) represent one of practical solutions to effectively utilize fossil fuel energy and reduce environmental pollution. In this paper, the performance characteristics of the GEHP were investigated experimentally with engine heat recovery. A GEHP test facility was set up for this purpose. The effects of several important factors including engine speed, ambient temperature, condenser water flow rate, and condenser water inlet temperature on the system performance were studied over a wide range of operating conditions. The results showed that the engine waste heat accounted for about 40–50% of the total heat capacity over the studied operating conditions. It also showed that engine speed and ambient temperature had significant effects on the GEHP performance. The coefficient of performance (COP) and the primary energy ratio (PER) decreased by 14% and 12%, respectively, as engine speed increased from 1400 rpm to 2000 rpm. On the other hand, the COP and PER of the system increased by 22% and 16%, respectively, with the ambient temperature increasing from 3 to 12°C. Furthermore, it was demonstrated that the condenser water flow rate and condenser water inlet temperature had little influence on the COP of the heat pump and the PER of the GEHP system.
机译:燃气发动机驱动的热泵(GEHPs)表示实际的解决方案中的一个来有效地利用化石燃料的能源,减少对环境的污染。在本文中,GEHP的性能特点进行了发动机热回收实验研究。一个GEHP试验设施设立用于这一目的。的,包括发动机速度,环境温度,冷凝器水流量,以及系统性能的冷凝器水入口温度的几个重要因素的影响进行了研究在宽范围的操作条件。结果表明,该发动机的废热占了所研究的工作条件下的总热容量约40-50%。这也表明,发动机转速和环境温度对GEHP性能显著的影响。的性能(COP)和初级能量比(PER)的系数分别下降了14%和12%,作为发动机转速从1400rpm下增加至2000rpm。在另一方面,该系统的COP和PER分别增加22%和16%,随环境温度的3至12增加℃。此外,证实了冷凝器水流量和冷凝器水入口温度对热泵的COP和GEHP系统的PER的影响不大。

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