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Entropy and Exergy Analysis of a Heat Recovery Vapor Generator for Ammonia-Water Mixtures

机译:氨水混合物热回收蒸气发生器的熵和能值分析

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Recently power generation systems using ammonia-water binary mixtures as a working fluid have been attracting much attention for their efficient conversion of low-grade heat sources into useful energy forms. This paper presents the First and Second Law thermodynamic analysis for a heat recovery vapor generator (HRVG) of ammonia-water mixtures when the heat source is low-temperature energy in the form of sensible heat. In the analysis, key parameters such as ammonia mass concentration and pressure of the binary mixture are studied to investigate their effects on the system performance, including the effectiveness of heat transfer, entropy generation, and exergy efficiency. The results show that the ammonia concentration and the pressure of the mixture have significant effects on the system performance of the HRVG.
机译:最近,使用氨-水二元混合物作为工作流体的发电系统因将低等级的热源有效地转换成有用的能量形式而备受关注。本文介绍了当热源是显热形式的低温能量时,氨水混合物的热回收蒸气发生器(HRVG)的第一定律和第二定律热力学分析。在分析中,研究了关键参数(如氨气质量浓度和二元混合物的压力),以研究它们对系统性能的影响,包括传热的有效性,熵的产生和(火用)效率。结果表明,氨的浓度和混合物的压力对HRVG的系统性能有重大影响。

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