Exergy Analysis for Combined Heat and Power (CHP) Plants

Jairo Rúa, L. Nord
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引用次数: 1

Abstract

Combined heat and power plants are an efficient technology for waste heat recovery applications where both heat and power are demanded. Steam Rankine cycles are normally utilized when high temperature exhaust streams are available. Different heat demands and temperatures might be expected depending on the application. Thus, designing a power system capable of meeting the heat demand and producing the maximum possible power supposes a challenge. This work aims at providing some guidelines to properly select, from a second law perspective, a CHP plant configuration depending on the heat demand and temperature. Two plant configurations are considered and broad ranges of heat demand and temperature are studied. A software developed in MATLAB was utilized for all thermodynamic property calculations. Optimization of the thermodynamic cycle was carried out for each set of conditions and the best possible scenario was always evaluated. An exergy analysis of the components integrating the power plant was then performed, pointing out where irreversibilities were more predominant and where there was more potential for improvements. Results showed that extracting process heat in the condenser was more beneficial than utilizing a supplementary heat exchanger in series with the heat recovery steam generator.
热电联产(CHP)电厂的能量分析
热电联产是一种高效的废热回收技术,用于既需要热又需要电的应用。当高温排气流可用时,通常使用蒸汽朗肯循环。根据不同的应用,可能会有不同的热需求和温度。因此,设计一种能够满足热需求并产生最大可能功率的电力系统是一项挑战。这项工作的目的是提供一些指导方针,从第二定律的角度,正确选择热电联产电厂的配置取决于热需求和温度。考虑了两种工厂配置,并研究了广泛的热需求和温度范围。利用MATLAB开发的软件进行所有热力学性质的计算。对每组条件进行热力学循环优化,并始终评估最佳可能方案。然后对整合发电厂的各组成部分进行了火用分析,指出不可逆性更为突出的地方和改进的潜力更大的地方。结果表明,在冷凝器中提取工艺热量比在余热发生器中串联使用辅助换热器更有利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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