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Experimental study on a bifunctional heat utilization system of heat pump and power generation using low-grade heat source

机译:低级热源热泵双功能散热利用系统的实验研究

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This paper presents an experimental study on a heat utilization system functioning as power generation and heat pump. The power generation and heat pump functions are achieved on the discipline of organic Rankin cycle (ORC) and reverse Carnot cycle (RCC), respectively. In the experiment, an inverter scroll compressor has been modified to implement dual functions of expansion with power output in power generation mode and compression with power consumption in heat pump mode. The thermodynamic cycles is fed with HCFC-142b and recovering heat from low-grade heat source at temperatures ranging from 50 to 95 degrees C. The results show good feasibility and stability of the bifunctional system under variable operating conditions. The performance of the bifunctional scroll machine is evaluated in terms of internal filling factor, isentropic efficiency and mechanical efficiency. In ORC power generation mode, the maximum power output is 2.95 kW and thermal efficiency reaches a maximum value of 3.95% at optimal work condition. In heat pump mode, the water temperature at the evaporator inlet is fixed at about 50 degrees C. The coefficient of performance (COP) ranges from 3.6 to 1.1 when the condensing temperature rises from 75 to 96 degrees C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文介绍了发电和热泵的散热系统的实验研究。在有机Rankin循环(ORC)和逆向咔啉周期(RCC)的学科上实现了发电和热泵功能。在实验中,已经修改了逆变器涡旋压缩机,以实现具有发电模式的功率输出的扩展的双重功能和热泵模式中的功耗。热力学循环用HCFC-142B进料,并在50至95摄氏度的温度下从低级热源回收热量。结果在可变操作条件下表现出双功能系统的良好可行性和稳定性。在内部灌装系数,熵效率和机械效率方面评估双功能涡旋机的性能。在兽人发电模式下,最大功率输出为2.95千瓦,最佳工作条件下热效率达到3.95%。在热泵模式下,蒸发器入口处的水温固定在约50℃。当冷凝温度从75至96摄氏度升高时,性能系数(COP)范围为3.6至1.1。(c)2017 Elsevier Ltd 。 版权所有。

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