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Thermoeconomic multi-objective optimization of an organic Rankine cycle for exhaust waste heat recovery of a diesel engine

机译:柴油机废气余热回收的有机朗肯循环的热经济多目标优化

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In this paper, the ORC (Organic Rankine cycle) technology is adopted to recover the exhaust waste heat of diesel engine. The thermodynamic, economic and optimization models of the ORC system are established, respectively. Firstly, the effects of four key parameters, including evaporation pressure, superheat degree, condensation temperature and exhaust temperature at the outlet of the evaporator on the thermodynamic performances and economic indicators of the ORC system are investigated. Subsequently, based on the established optimization model, GA (genetic algorithm) is employed to solve the Pareto solution of the thermodynamic performances and economic indicators for maximizing net power output and minimizing total investment cost under diesel engine various operating conditions using R600, R600a, R601a, R245fa, R1234yf and R1234ze as working fluids. The most suitable working fluid used in the ORC system for diesel engine waste heat recovery is screened out, and then the corresponding optimal parameter regions are analyzed. The results show that thermodynamic performance of the ORC system is improved at the expense of economic performance. Among these working fluids, R245fa is considered as the most suitable working fluid for the ORC waste heat application of the diesel engine with comprehensive consideration of thermoeconomic performances, environmental impacts and safety levels. Under the various operating conditions of the diesel engine, the optimal evaporation pressure is in the range of 1.1 MPa-2.1 MPa. In addition, the optimal superheat degree and the exhaust temperature at the outlet of the evaporator are mainly influenced by the operating conditions of the diesel engine. The optimal condensation temperature keeps a nearly constant value of 298.15 K. (C) 2015 Elsevier Ltd. All rights reserved.
机译:本文采用ORC(有机朗肯循环)技术来回收柴油机的废热。建立了ORC系统的热力学,经济和优化模型。首先,研究了蒸发器出口处的蒸发压力,过热度,冷凝温度和排气温度这四个关键参数对ORC系统热力学性能和经济指标的影响。随后,在建立的优化模型的基础上,采用遗传算法(GA)求解热力学性能和经济指标的帕累托解法,以在使用R600,R600a,R601a的柴油机各种工况下最大化净功率输出并最小化总投资成本,R245fa,R1234yf和R1234ze作为工作液。筛选出ORC系统中用于柴油机余热回收的最合适的工作液,然后分析相应的最佳参数区域。结果表明,ORC系统的热力学性能得到改善,但以经济性能为代价。在这些工作流体中,R245fa被认为是最适合柴油机ORC余热应用的工作流体,同时综合考虑了热经济性能,环境影响和安全级别。在柴油发动机的各种运行条件下,最佳蒸发压力在1.1 MPa-2.1 MPa的范围内。另外,蒸发器出口处的最佳过热度和排气温度主要受柴油机的工况影响。最佳冷凝温度几乎保持恒定值298.15K。(C)2015 Elsevier Ltd.保留所有权利。

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