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How to approach optimal practical Organic Rankine cycle (OP-ORC) by configuration modification for diesel engine waste heat recovery

机译:如何通过柴油发动机废热回收的配置改造来接近最佳实际有机朗肯循环(OP-ORC)

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摘要

Conventional diesel engine has multiple waste heat sources, which make ORC configuration selection difficult. This paper proposed an ORC configuration modification and evaluation method. Pinch analysis technique was employed to integrate multiple waste heat sources into one composite curve. We presented an optimal practical ORC (OP-ORC) that matches the composite waste heat source and the cold source. ORC configuration modification was performed by improving the thermal matching between the ORC and the heat (cold) sources. Relative efficiency, which defined as the thermal efficiency ratio of the actual ORC to the OP-ORC, was used as criterion to evaluate various modified ORC configuration. An ORC modification case for multiple waste heat sources derived from a diesel engine was presented. With the thermal efficiency of 18.57% achieved by the OP-ORC, analysis results showed that the basic preheating ORC using Cyclopentane can only achieve a thermal efficiency of 9.28%. After cycle modification, a modified ORC could obtain a thermal efficiency of 14.23%, which is significantly close to the OP-ORC with a relative efficiency of 76.6%. This method would provide researchers with information to assess the benefit and the cost about each configuration modification and determine the direction of further improvement. (C) 2019 Elsevier Ltd. All rights reserved.
机译:传统的柴油发动机具有多个废热源,使逆时针选择难以实现。本文提出了一种兽人配置修改和评估方法。采用夹切分析技术将多个废热源集成到一个复合曲线中。我们提出了一种与复合废热热源和冷源相匹配的最佳实用兽人(OP-ORC)。通过改善兽人和热量(冷)源之间的热匹配来执行ORC配置修改。将其定义为实际ORC的热效率比的相对效率用作评估各种改进的兽人配置的标准。提出了来自柴油发动机的多个废热源的ORC改性壳体。通过OP-ORC实现的热效率为18.57%,分析结果表明,使用环戊烷的基本预热矿石只能达到9.28%的热效率。循环修饰后,改性兽人可以获得14.23%的热效率,其显着接近OP-ORC,相对效率为76.6%。这种方法将提供研究人员,以评估每个配置修改的益处和成本,并确定进一步改进的方向。 (c)2019 Elsevier Ltd.保留所有权利。

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