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Experimental investigation of an Organic Rankine cycle system using an oil-free scroll expander for low grade heat recovery

机译:使用无油涡旋膨胀机进行有机朗肯循环系统的实验研究,用于低等级热回收

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摘要

Organic Rankine cycle (ORC) has become a promising energy harvesting technique to recover thermal energy from low-grade heat sources. In this study, a lab-scale ORC system has been designed, constructed, and tested to investigate the potential of utilizing the heat from hot water, which is used to simulate the jacket water of internal combustion engines. The ORC system employs an oil-free scroll expander with R245fa as working fluid. A wide range of operating conditions has been studied by adjusting the pump frequency, the load and the mass flow rate of cooling water. Effect of the superheat degree at the expander inlet was investigated and the results showed that the ORC system presented better performance with superheat of 0. It is concluded that the system should be controlled to maintain the least possible superheat degree to obtain higher power output and better efficiency. The maximum electric power output and the maximum thermal efficiency are 0.61 kW and 4.09%, respectively, when the heat source is 96.8 degrees C. The power consumed by the pump ranges from 0.07 to 0.18 kW, which accounts for 22 to 39% of the power output of ORC.
机译:有机朗肯循环(ORC)已成为从低级热源回收热能的有希望的能量采集技术。在本研究中,已经设计了一种实验室级兽人系统,并测试和测试,以研究利用来自热水的热量的潜力,用于模拟内燃机的夹套水。 ORC系统采用无油涡旋膨胀器,其具有R245FA作为工作流体。通过调整泵频,负荷和冷却水的质量流量来研究广泛的操作条件。研究了膨胀机入口处的过热程度的影响,结果表明,兽人系统呈现出更好的性能,具有0.它的结论是,应控制系统以保持最小的过热程度,以获得更高的功率输出,更好效率。当热源为96.8℃时,最大电力输出和最大热效率分别为0.61千瓦和4.09%。泵的功率范围为0.07至0.18千瓦,占22〜39% ORC的电源输出。

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