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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Study of efficiency of a multistage centrifugal pump used in engine waste heat recovery application
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Study of efficiency of a multistage centrifugal pump used in engine waste heat recovery application

机译:多级离心泵在发动机余热回收应用中的效率研究

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A test bench of a multistage centrifugal pump was constructed using R123 as working fluid in simulative organic Rankine cycle (ORC) conditions. Experimental results of the pump under various operating conditions were obtained based on controlled working frequency and mass flow rate. The effect of the key pump parameters on the ORC performance was analyzed in this study. In addition, the control strategy of the pump was presented. Results show that the overall pump efficiency was between.15% and 65.7%. The outlet pressure, pump efficiency, and ORC thermal efficiency increased with the working frequency of the pump. The mass flow rate needed to be regulated as the frequency became increasingly high. The maximum thermal efficiencies of the ORC system corresponding to various working frequencies of the pump were observed. Furthermore, back work ratio (BWR) can reach up to 0.45 with the increase of the evaporating temperature of the ORC system. Pumping power should not be neglected for small-scale ORC applications, and pump efficiency assumptions should be dependent on experiments. Low pump efficiency affected the increase of the thermal efficiency and net power of the ORC system. The superheat degree was also discussed. (C) 2016 Elsevier Ltd. All rights reserved.
机译:在模拟有机朗肯循环(ORC)条件下,使用R123作为工作流体构建了多级离心泵的测试台。基于受控的工作频率和质量流量,获得了泵在各种工况下的实验结果。在这项研究中分析了关键泵参数对ORC性能的影响。此外,提出了泵的控制策略。结果表明,整体泵效率在15%到65.7%之间。出口压力,泵效率和ORC热效率随泵的工作频率而增加。随着频率变得越来越高,需要调节质量流量。观察到ORC系统的最大热效率与泵的各种工作频率相对应。此外,随着ORC系统蒸发温度的升高,返工率(BWR)可以达到0.45。对于小型ORC应用,不应忽略泵浦功率,并且泵浦效率的假设应取决于实验。低泵效率影响ORC系统的热效率和净功率的增加。还讨论了过热度。 (C)2016 Elsevier Ltd.保留所有权利。

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