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Thermodynamic analysis of ejector cooling cycles with heat-driven feed pumping devices

机译:热驱动进料泵装置对喷射器冷却循环的热力学分析

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The paper presents the results of thermodynamic analysis of ejector cooling cycles with heat pumping devices which supply the working fluid to the vapor generator. Two variants of heat pumping devices are considered in which the feed pump is driven by (1) an expander and a turbine and (2) a turbine. A mathematical model for determining the energy and exergy characteristics of the pumping devices and ejector systems as a whole is proposed. Refrigerant R245ca is selected as an environmentally friendly low-boiling working fluid of the ejector cooling cycles. The paper analyzes the effect of condensing and generating temperatures on the characteristics of ejector cooling cycles for the air conditioning systems. It is shown that the use of the work obtained in the expander and turbine taking into account the irreversibility of the working processes in the pumping devices leads to a slight decrease in the energy efficiency of the proposed systems, and, at the same time, it significantly increases their exergic efficiency. (C) 2019 Elsevier Ltd. All rights reserved.
机译:本文介绍了利用热泵装置对喷射器冷却循环进行热力学分析的结果,该装置将工作流体供应到蒸汽发生器。考虑了热泵装置的两种变型,其中进料泵由(1)膨胀机和涡轮以及(2)涡轮驱动。提出了一种用于确定泵装置和喷射系统整体的能量和火用特性的数学模型。 R245ca制冷剂被选作喷射器冷却循环的环保低沸点工作流体。本文分析了冷凝和产生温度对空调系统喷射器冷却循环特性的影响。结果表明,使用在膨胀机和透平中获得的功,考虑到泵送装置中工作过程的不可逆性,导致所提出系统的能源效率略有下降,与此同时,大大提高了他们的运动效率。 (C)2019 Elsevier Ltd.保留所有权利。

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