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Ejector expansion refrigeration system: Ejector design and performance evaluation

机译:喷射器扩展制冷系统:喷射器设计和性能评估

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摘要

Use of a two-phase flow ejector as an expansion device in vapor compression refrigeration systems is one of the efficient ways to enhance its performance. The present work aims to design a constant-area two phase flow ejector and to evaluate performance characteristics of the ejector expansion refrigeration system working with R134a. In order to achieve these objectives, a simulation program is developed and effects of operating conditions and ejector internal efficiencies on the system performance are investigated using EES software. Comparison between present results and published experimental data revealed that the developed model can predict the system COP with a maximum error of 2.3%. The system COP increased by 87.5% as evaporation temperature changed from -10 degrees C to 10 degrees C. Finally, correlations to size ejector main diameters as a function of operating conditions, system cooling capacity and ejector internal efficiencies are reported. (C) 2015 Elsevier Ltd and IIR. All rights reserved.
机译:在蒸气压缩制冷系统中使用两相流喷射器作为膨胀装置是增强其性能的有效方法之一。本工作旨在设计一种恒定面积的两相流喷射器,并评估与R134a配合使用的喷射器膨胀制冷系统的性能特征。为了实现这些目标,开发了一个仿真程序,并使用EES软件研究了运行条件和喷射器内部效率对系统性能的影响。当前结果与已发布的实验数据之间的比较表明,开发的模型可以预测系统COP,最大误差为2.3%。随着蒸发温度从-10摄氏度变化到10摄氏度,系统COP增加了87.5%。最后,报告了与操作条件,系统冷却能力和喷射器内部效率相关的尺寸喷射器主直径的相关性。 (C)2015 Elsevier Ltd和IIR。版权所有。

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