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Experimental and thermodynamic analysis of a bottoming Organic Rankine Cycle (ORC) of gasoline engine using swash-plate expander

机译:使用斜盘膨胀机对汽油发动机的底部有机朗肯循环(ORC)进行实验和热力学分析

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This paper deals with the experimental testing of an Organic Rankine Cycle (ORC) integrate in a 2 liter turbocharged gasoline engine using ethanol as working fluid. The main components of the cycle are a boiler, a condenser, a pump and a swash-plate expander. Five engine operating points have been tested, they correspond to a nominal heat input into the boiler of 5, 12, 20, 25 and 30 kW. With the available bill of material based on prototypes, power balances and cycles efficiencies were estimated, obtaining a maximum improvement in the ICE mechanical power and an expander shaft power of 3.7% and 1.83 kW respectively. A total of 28 steady-state operating points were measured to evaluate performance of the swash-plate expander prototype. Operating parameters of the expander, such as expander speed and expansion ratio, were shifted. The objective of the tests is to master the system and understand physical parameters influence. The importance of each parameter was analyzed by fixing all the parameters, changing each time one specific value. In these sensitivity studies, maximum ideal and real Rankine efficiency value of 19% and 6% were obtained respectively. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文涉及有机朗肯循环(ORC)集成在2升以乙醇为工作液的涡轮增压汽油发动机中的实验测试。循环的主要组成部分是锅炉,冷凝器,泵和斜盘膨胀机。已经测试了五个发动机工作点,它们对应于进入锅炉的5、12、20、25和30 kW的标称热量。使用基于原型的可用物料清单,可以估算出功率平衡和循环效率,从而最大程度地提高了ICE机械功率和膨胀机轴功率的3.7%和1.83 kW。总共测量了28个稳态工作点,以评估斜盘式膨胀机原型的性能。扩展器的运行参数(例如扩展器速度和扩展比)已移动。测试的目的是掌握系统并了解物理参数的影响。通过固定所有参数并每次更改一个特定值来分析每个参数的重要性。在这些敏感性研究中,获得的最大理想和实际兰金效率值分别为19%和6%。 (C)2015 Elsevier Ltd.保留所有权利。

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