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Experimental and Exergy Analysis of Ammonia/Water Absorption System using Ethylene Glycol C2H4(OH)2 in the Evaporator

机译:乙二醇C2H4(OH)2在蒸发器中使用氨/吸水系统的实验和漏洞分析

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The ever increasing demand for electricity has forced us to turn our attention towards using absorption refrigeration systems for cooling applications.The technology of Hermetic compressors used in compression systems to raise the pressure requires a lot of power input to work.Absorption systems can work at the same level but using much lesser energy input without harming the environment.Ethylene Glycol is a Latent heat storage substance which is installed in the Evaporator in the prototype of an Ammonia/Water absorption system to study its transient effects on temperature.During unexpected shutdown of the system, temperature inside the Evaporator begins to rise at a very fast rate due to heat generation and infiltration.In this paper, it is proved experimentally that Ethylene Glycol reduces this rate significantly thereby protecting the quality of the products stored inside.Exergy analysis of each component used in the prototype has been performed to give general Irreversibility equations and to find the Dimensionless Exergy loss of each component.An equation is derived for the Ethylene Glycol enabled Evaporator which reveals that the Exergy destruction of the Evaporator has increased and optimization is required.
机译:由于越来越多的电力需求迫使我们对吸收制冷系统进行冷却应用的影响。压缩系统中使用的密封压缩机技术需要大量的功率输入。吸收系统可以在相同的水平但使用更小的能量输入而不损害环境。乙二醇是潜热储存物质,该物质安装在氨/吸水系统原型中的蒸发器中,以研究其对温度的瞬态效应。造成意外关闭蒸发器内部的温度开始以极快的速率升高,由于发热和渗透。本文证明,乙二醇显着降低了这种速率,从而保护了所储存的产品内部的产品质量。已经执行了原型中使用的组件,以提供一般不可逆转的equat离子和找到每个组分的无量纲漏丧失。衍生用于乙二醇的蒸发器的等式,揭示了蒸发器的漏洞破坏增加和优化。

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