首页> 外文期刊>Journal of Thermal Engineering >Investigation of The Effect of The Primary Nozzle Throat Diameter on The Evaporator Performance of an Ejector Expansion Refrigeration Cycle
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Investigation of The Effect of The Primary Nozzle Throat Diameter on The Evaporator Performance of an Ejector Expansion Refrigeration Cycle

机译:主喷嘴喉直径对喷射器膨胀制冷循环蒸发器性能的影响研究

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The present work aims to perform the thermodynamic analysis of an ejector expansion refrigeration cycle (EERC) with a constant-pressure two phase flow ejector and to present the effect of primary nozzle throat diameter on cooling capacity of the EERC. The refrigerant is R134a. In order to achieve these objectives, a computational program is developed using EES software to simulate the system. Mathematical modeling of EERC and applied computational procedure are reported in detail. Operation under critical mode is favorable in ejector operation in terms of high entrainment ratio and enhanced ejector performance. As a result, in this present study, ejector of the refrigeration cycle operates under critical conditions and normal shock occurs at the end of the constant area mixing section. Not an iteration process but Henry and Fauske model is applied to determine the physical properties of the fluid under critical conditions.
机译:本工作旨在对带有恒压两相流喷射器的喷射器膨胀制冷循环(EERC)进行热力学分析,并提出主喷嘴喉径对EERC冷却能力的影响。制冷剂为R134a。为了实现这些目标,使用EES软件开发了一个计算程序来模拟系统。详细报道了EERC的数学建模和应用的计算程序。就高夹带率和增强的喷射器性能而言,临界模式下的操作对于喷射器操作是有利的。结果,在本研究中,制冷循环的喷射器在临界条件下运行,在恒定面积混合部分的末端发生正常冲击。不是采用迭代过程,而是应用Henry和Fauske模型来确定临界条件下流体的物理特性。

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