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Exergy analysis of double tube heat exchanger for parallel flow arrangement

机译:双管热交换器对平行流动布置的电力分析

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This paper presents the analysis of exergy according to second law of thermodynamics for a double concentric tube heat exchanger experimentally.For this purpose to study the heat exchange process between two fluid mediums separated by a solid partition for parallel flow arrangement,an experimental setup was fabricated as per designed considered to measured data.In this considered double concentric tube heat exchanger,hot water and cold water flowing through inner and outer tube respectively and heat exchange takes place from hot fluid medium to cold fluid medium.Here the wall tube conductive resistance is assumed as negligible.The investigation was performed for mass flow rate of cold water ranging from 0.0326 kg/s to 0.572.kg/s and mass flow rate of hot water ranging from 0.016 kg/s to 0.479 kg/s.The effects of various parameters such as rate of entropy generation,number of entropy generation,effectiveness of heat exchanger,and losses of exergy are observed by exergy analysis.The governing equations have been employed to solve analytically for obtaining the energy and exergy analysis parameters.It is expected that this study might be helpful for further related work.
机译:本文介绍了Deertgy根据实验双同心管热交换器的第二种热力学定律的分析。为了研究由用于平行流动装置的固体隔板分开的两个流体介质之间的热交换过程,制造了实验装置由于设计被认为是测量数据。在这被认为是双重同心管热交换器,分别流过内管的热水和冷水和热交换发生从热流体介质到冷流体介质。壁管导电阻力是假设可以忽略不计。对冷水的质量流量进行调查,从0.0326 kg / s到0.572.kg/s和热水的质量流速范围为0.016kg / s至0.479kg / s。各种效果熵产生的参数,熵产生,熵产生,热交换器的有效性以及Deerteny分析观察到。Gove已经采用RNING方程来分析地解决,以获得能量和漏洞分析参数。预计这项研究可能有助于进一步相关的工作。

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