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A one-dimensional model of a jet-ejector in critical double choking operation with R134a as a refrigerant including real gas effects

机译:R134a作为制冷剂的临界双节流操作中的喷射器一维模型,包括真实气体效应

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摘要

The geometrical simplicity of a jet-ejector is in stark contrast to the complexity of the flow phenomena occurring in ejector operation. The available flow models range from empirical models to models based on computational fluid dynamics, differing considerably in complexity and thus explanatory power. The one-dimensional flow models of semi-empirical nature are based on experiments at comparatively low motive pressures and thus on ideal gas equations. In contrast, a one-dimensional, experimentally validated model of a jet-ejector in critical double choking operation which includes real gas effects and relies on a single physically interpretable loss coefficient is introduced in the present paper. Real gas effects impact on the state quantities and the critical mass flow of the expansion in the supersonic nozzle in particular which should be considered in the determination of the entrainment ratio or the absolute motive and suction mass flows of the ejector and in ejector design. (C) 2015 Elsevier Ltd and BR. All rights reserved.
机译:喷射器的几何结构简单性与喷射器操作中发生的流动现象的复杂性形成鲜明对比。可用的流量模型范围从经验模型到基于计算流体动力学的模型,在复杂性和解释力上差异很大。具有半经验性质的一维流动模型是基于相对较低的动压下的实验,因此基于理想的气体方程式。相比之下,本文介绍了在临界双节流操作中一维经喷射验证的一维模型,该模型包括真实的气体效应并依赖于单个可物理解释的损失系数。实际的气体影响会影响超声喷嘴中膨胀的状态量和临界质量流,尤其是在确定喷射器的夹带比或绝对运动质量和吸力质量时,以及在喷射器设计中都应考虑。 (C)2015 Elsevier Ltd和BR。版权所有。

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