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Experimental study on organic Rankine cycle utilizing R245fa, R123 and their mixtures to investigate the maximum power generation from low-grade heat

机译:R245fa,R123及其混合物对有机朗肯循环进行实验研究,以研究低等级热量的最大发电量

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The main purpose of this paper is experimentally comparing of organic Rankine cycle (ORC) system, by using R245fa, R123 and their mixtures to generate maximum net power on simulated low-temperature industrial waste heat. Four mass fractions of R245fa:R123 have been injected into the system with the ratios of 1:0, 2:1, 1:2 and 0:1 to test the system performance separately. To imitate industrial low temperature waste heat, the heat source temperature is fixed at 110 degrees C and 120 degrees C with specified mass flow rate of heat source. Focusing on the change of mass flow rate of working fluid and expander inlet superheating, experiment results show that the system heat input increases when mass flow rate of working fluid increases. All four mass fractions of working fluids generate maximum net power when the system mass flow rate is around 0.15 kg/s. The case of pure R245fa generates a maximum net power 1.56 kW with an electrical efficiency of about 3.9% when heat source temperature is fixed at 110 degrees C. While, the case of mixture R245fa:R123 = 2:1 generates a maximum net power 1.66 kW with an electrical efficiency of about 4.4% when heat source temperature input is fixed at 120 degrees C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:本文的主要目的是通过使用R245fa,R123及其混合物在模拟的低温工业废热上产生最大净功率的方法,对有机朗肯循环(ORC)系统进行实验比较。 R245fa:R123的四个质量分数已按1:0、2:1、1:2和0:1的比例注入系统中,以分别测试系统性能。为了模仿工业低温废热,以指定的热源质量流量将热源温度固定在110摄氏度和120摄氏度。实验结果表明,随着工作流体质量流量的增加,系统热量输入也随之增加。当系统质量流量约为0.15 kg / s时,所有四个质量分数的工作流体都会产生最大净功率。当热源温度固定在110摄氏度时,纯R245fa产生的最大净功率为1.56 kW,电效率约为3.9%。而混合物R245fa:R123 = 2:1的情况产生的最大净功率为1.66。当热源温度输入固定为120摄氏度时,电效率约为4.4%。(C)2017 Elsevier Ltd.保留所有权利。

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