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Thermodynamic modeling and sensitivity analysis of ejector in refrigeration system

机译:制冷系统中喷射器的热力学建模和灵敏度分析

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摘要

This paper focuses on the problems of thermodynamic modeling and sensitivity analysis of the ejector in refrigeration. Firstly, a new thermodynamic model is proposed based on the assumptions of constant pressure mixing and constant area mixing. The proposed model contains fewer parameters and simpler structure compared with the traditional ejector models. Later, the sensitivity analysis of the ejector is carried out based on the adjoint sensitivity method. Three different sensitivity coefficients are given to reveal the relation between design parameters and ejector performance. The result shows that geometric parameters have the most influences on the entrainment ratio of the ejector. For the ejector using R600a, the sensitivity coefficients of entrainment ratio to A(t) and A(m) are -2.43% and 2.40% respectively. (C) 2018 Elsevier Ltd. All rights reserved.
机译:本文着重研究制冷机中喷射器的热力学建模和灵敏度分析问题。首先,基于恒压混合和恒定面积混合的假设,提出了一种新的热力学模型。与传统的喷射器模型相比,所提出的模型包含更少的参数和更简单的结构。之后,基于伴随灵敏度法进行喷射器的灵敏度分析。给出了三种不同的灵敏度系数,以揭示设计参数与喷射器性能之间的关系。结果表明,几何参数对喷射器的夹带率影响最大。对于使用R600a的喷射器,夹带率对A(t)和A(m)的敏感系数分别为-2.43%和2.40%。 (C)2018 Elsevier Ltd.保留所有权利。

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