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首页> 外文期刊>International Journal of Refrigeration >Working fluid charge reduction. Part II: Supercritical CO2 gas cooler designed for light commercial appliances
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Working fluid charge reduction. Part II: Supercritical CO2 gas cooler designed for light commercial appliances

机译:工作流体电荷减少。第二部分:专为轻型商用设备设计的超临界二氧化碳气体冷却器

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摘要

The present study focused on the thermal hydraulic performance improvement of a CO2 gas cooler with the principal goal of reducing its volume, and consequently the necessary charge of the working fluid. To achieve this compactness, the leading methods for supercritical CO2 cooling (including oil effects) were taken from the literature and programmed into a very detailed simulation code, together with the leading air-side flow and heat transfer methods. The effects of tube size, volumetric flow of air, type of air-side fin, miscible oil concentration, etc. were addressed. Compared to an existing design, the volume and refrigerant charge of the CO2 gas cooler were reduced by at least 14%. The simulations with oil showed that there was up to 6% adverse influence on the size of the gas cooler and its CO2 side pressure drop increased up to 2.65 times when oil concentrations of up to 3% were considered. (C) 2016 Elsevier Ltd and IIR. All rights reserved.
机译:本研究的重点是改善CO2气体冷却器的热工水力性能,其主要目标是减小其体积,从而减少工作流体的充注量。为了实现这种紧凑性,从文献中采用了超临界CO2冷却的主要方法(包括油效应),并将其与主要的空气侧流动和传热方法一起编程为非常详细的模拟代码。讨论了管尺寸,空气体积流量,空气侧翅片类型,混溶油浓度等的影响。与现有设计相比,CO2气体冷却器的体积和制冷剂充注量至少减少了14%。用油进行的模拟表明,当考虑到油浓度最高为3%时,对气体冷却器的尺寸有6%的不利影响,并且其CO2侧压降增加了2.65倍。 (C)2016 Elsevier Ltd和IIR。版权所有。

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