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Parametric study and performance evaluation of an organic Rankine cycle (ORC) system using low-grade heat at temperatures below 80 degrees C

机译:温度低于80摄氏度时使用低等级热量的有机朗肯循环(ORC)系统的参数研究和性能评估

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A parametric study and performance evaluation of an organic Rankine cycle (ORC) system that uses low-grade heat at a temperature below 80 degrees C and with a cycle power of less than 10 kW was undertaken to analyze the effects of the operating conditions on the performance and efficiency. R245fa was used as the working fluid, and a scroll expander as the power generation device. A model of the system was developed and its predictions were verified by the results of experiments, which were also used to determine the appropriate charge of the working fluid for maximizing the system power output. Owing to the difference between the variations of the power generated by the expander and the power consumed by the pump, the performance of the system was found to initially increase and then decrease with increasing refrigerant charge. The parametric investigation of the ORC system was conducted by varying the pressure ratio and mass flow rate of the working fluid. Increases in both parameters were found to increase the system performance by improving the torque generation and expander speed. The variation of the system performance with the heat sink temperature, which was varied between 20 and 35 degrees C, was also examined. The system power and efficiency were observed to decrease with increasing heat sink temperature owing to the decrease in the pressure ratio resulting from the increased condensation temperature. Based on the study findings, we propose a performance map for a low-temperature low-cycle-power ORC. The power and efficiency are shown to be proportional to the heat source temperature and capacity, which varies in a manner similar to the expander performance. The findings of this study highlight the feasibility of an ORC system that uses low-grade heat at a temperature below the boiling point. (C) 2016 Elsevier Ltd. All rights reserved.
机译:进行了有机朗肯循环(ORC)系统的参数研究和性能评估,该系统使用温度低于80摄氏度且循环功率小于10 kW的低等级热量,以分析操作条件对柴油机的影响。性能和效率。 R245fa被用作工作流体,涡旋膨胀器被用作发电装置。开发了该系统的模型,并通过实验结果验证了其预测,该结果还用于确定适当的工作流体充注量,以最大程度地提高系统功率输出。由于膨胀机产生的功率变化与泵消耗的功率之间存在差异,因此发现系统性能首先随着制冷剂充注量的增加而增加,然后降低。通过改变工作流体的压力比和质量流量来进行ORC系统的参数研究。发现增加两个参数可通过改善扭矩生成和扩展器速度来提高系统性能。还检查了系统性能随散热器温度(在20到35摄氏度之间变化)的变化。观察到系统功率和效率随着散热器温度的升高而降低,这是由于冷凝温度升高导致压力比降低所致。根据研究结果,我们提出了低温低循环功率ORC的性能图。显示的功率和效率与热源温度和容量成正比,其变化方式与膨胀机性能相似。这项研究的结果强调了ORC系统在低于沸点的温度下使用低级热量的可行性。 (C)2016 Elsevier Ltd.保留所有权利。

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