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A Computer Program for Working Fluid Selection of Low Temperature Organic Rankine Cycle

机译:低温有机朗肯循环的工作流体选择计算机程序

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Fossil fuels are continuously depleting while the global energy demand is growing at a fast rate. Additionally, fossil fuels based power plants contribute to environmental pollution. Search for alternate energy resources and use of industrial waste heat for power production are attractive topics of interest these days. One way of enhancing power production and decreasing the environmental impact is by recuperating and utilizing low grade thermal energy. In recent years, research on use of organic Rankine cycle (ORC) has gained popularity as a promising technology for conversion of heat into useful work or electricity. Due to simple structure of ORC system, it can be easily integrated with any energy source like geothermal energy, solar energy and waste heat. A computer program has been developed in engineering equation solver (EES) environment that analyzes and selects appropriate working fluid for organic Rankine cycle design based on available heat sources. For a given heat source, the program compares energy and exergy performance of various working fluids. The program also includes recuperator performance analysis and compares its effectiveness on the overall thermal performance of the Rankine cycle. This program can assist in preliminary design of ORC with respect to best performing refrigerant fluid selection for the given low temperature heat source.
机译:在全球能源需求快速增长的同时,化石燃料正在不断消耗。另外,基于化石燃料的发电厂也造成环境污染。如今,寻找替代能源以及将工业废热用于电力生产是有吸引力的主题。增强电力生产和减少环境影响的一种方法是回收和利用低等级的热能。近年来,有机朗肯循环(ORC)的使用研究作为一种将热能转化为有用功或电能的有前途的技术而受到欢迎。由于ORC系统的结构简单,因此可以轻松地与任何能源(例如地热能,太阳能和废热)整合。已经在工程方程求解器(EES)环境中开发了计算机程序,该计算机程序根据可用的热源来分析和选择用于有机朗肯循环设计的合适工作流体。对于给定的热源,该程序比较各种工作流体的能量和火用性能。该程序还包括换热器性能分析,并比较其对朗肯循环整体热性能的有效性。对于给定的低温热源,此程序可以帮助ORC进行关于最佳性能制冷剂流体选择的初步设计。

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