To the issue of optimising the performance of a scroll compressor as part of a CO2 booster refrigerating machine in order to increase its efficiency

V. Pronin, A. Kovanov, V. Tsvetkov, E. N. Mikhailova, P. A. Belov
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Abstract

Objective. With the decreasing use of refrigerants with a high global warming potential, increasing the efficiency of refrigeration machines using natural working fluids is a very urgent task. The CO2 booster refrigerant cycle may be optimal for the fields of commercial refrigeration, climate engineering and heat pumps, but needs to be adapted to regions with hot climates. The purpose of the study is also to systematize possible ways to improve the spiral technology, as a guarantee of increasing the efficiency of booster refrigeration machines.Method. Such solutions have already been tested by increasing the transcritical cycle efficiency through the use of an ejector and parallel compression. However, the use of a scroll compressor in the transcritical cycle may be a good alternative to these methods. This solution, a little bit improves technical and economic indexes of the refrigerating machine, in the most part reducing capital and operational costs. When considering the prospect of improving the efficiency of a booster system with scroll compressor, it is necessary to address the issue of compressor performance optimisation. An issue of this kind can be referred to improving the efficiency of the booster system, at the expense of the internal characteristics of the refrigeration machine.Result. Thus, in this paper, a conceptual approach is considered to solve this problem based on a system analysis of the interconnection of the compressor as the main energy-intensive element of a refrigeration machine.Conclusion. Development of conceptual model, allows to identify influence of various factors on scroll compressor operation and to build adequate mathematical model, to choose or develop necessary calculation methods.
以优化涡旋压缩机作为CO2增压制冷机的一部分,以提高其效率的问题
目标。随着具有高全球变暖潜能值的制冷剂使用的减少,提高使用天然工质的制冷机的效率是一项非常紧迫的任务。CO2增压制冷剂循环可能是商业制冷、气候工程和热泵领域的最佳选择,但需要适应气候炎热的地区。研究的目的是系统化地改进螺旋技术的可能途径,作为提高增压式制冷机效率的保证。这些解决方案已经通过使用喷射器和平行压缩来提高跨临界循环效率进行了测试。然而,在跨临界循环中使用涡旋压缩机可能是这些方法的一个很好的替代方案。该方案对制冷机的技术经济指标有一定的提高,在很大程度上降低了资金和运行成本。在考虑提高涡旋压缩机增压系统效率的前景时,有必要解决压缩机性能优化问题。这类问题可以参考以牺牲制冷机内部特性为代价来提高增压系统的效率。因此,本文在对作为制冷机主要耗能元件的压缩机的互连进行系统分析的基础上,提出了一种解决这一问题的概念方法。概念模型的开发,可以识别各种因素对涡旋压缩机运行的影响,并建立适当的数学模型,选择或开发必要的计算方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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