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Experimental investigation on a-40 degrees C low-temperature freezer using ejector-expansion refrigeration system

机译:采用喷射器 - 膨胀制冷系统的A-40 C低温冷冻机试验研究

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The ejector-expansion freezer refrigeration system (ERS) has been proposed to recover part of the expansion work in the throttling process and improve cycle efficiency. In this paper, the performance characteristics of a -40 degrees C low-temperature freezer adopted with the standard ERS are experimentally investigated under various operating conditions, and several important parameters are also examined in detail. Additionally, the performance of the freezer prototype is compared between using the ERS and a conventional vapor compression freezer refrigeration system (CRS). The experimental results show that the lower evaporation temperature can be obtained by ERS, the pressure lift ratio of ejector can reach more than 1.25, the compressor compression ratio and power consumption are reduced due to the effective pressure lifting effect of the ejector. Furthermore, when the ambient temperature is 20/25/32 degrees C, the maximum refrigeration capacity and COP of the ERS based prototype can be improved by 17.0% and 15.9%, respectively. Meanwhile, the energy consumption of ERS can be reduced by 6.2%, 21.7% and 38.9% compared to that of the CRS based prototype, respectively. This validate that the ERS offers a significant energy-saving potential to low-temperature freezers. (C) 2020 Elsevier Ltd and IIR. All rights reserved.
机译:已经提出了喷射器 - 膨胀冷冻机制冷系统(ERS)以恢复节流过程中的一部分扩展工作,提高循环效率。本文在各种操作条件下通过实验研究了标准测量器采用的-40摄氏度冰箱的性能特性,并详细研究了几种重要参数。另外,使用ERS和传统的蒸汽压缩冷冻机制冷系统(CRS)之间比较冷冻机原型的性能。实验结果表明,较低的蒸发温度可以通过ERS获得,喷射器的压力升程比可以达到大于1.25,由于喷射器的有效压力提升效果,压缩机压缩比和功耗降低。此外,当环境温度为20/25/32℃时,基于ERS的原型的最大冷藏能力和COP分别可以提高17.0%和15.9%。同时,与基于CRS的原型相比,分别可以减少6.2%,21.7%和38.9%的能量消耗。这验证了ERS为低温冰箱提供了显着的节能潜力。 (c)2020 Elsevier Ltd和IIR。版权所有。

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