Energy-Saving Individual Heating Systems Based on Liquid-Vapor Ejector

IF 0.6
Serhii Sharapov, Jozef Bocko, Sviatoslav Yevtushenko, Vitalii Panchenko, Maksym Skydanenko
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引用次数: 1

Abstract

The problem of increasing the efficiency of individual heating systems is solved by using heat pumps based on a liquid-vapor ejector with the working fluid R718 (water). The research object was the working process of the liquid-vapor ejector, based on the principle of jet thermal compression. It involves the generation of vapor in the nozzle of the motive flow of the liquid-vapor ejector and does not require its supply from an external source. Schemes and descriptions of the traditional system and the proposed scheme were given. Their difference from the traditional ones was indicated according to the schematic solution and working cycle. The article compared the proposed schemes’ thermodynamic calculation with the working flow R718 and traditional heat pump systems with carried-out refrigerants R134a, R410a, and R32. As a result, the values of the thermodynamic parameters of all system components were obtained. The coefficients of performance (COP) for the traditional and proposed cycles were determined. Applying the new scheme made it possible to increase the COP by an average of 40 %. An exergy analysis assessed the expediency of implementing vacuum units based on liquid-vapor ejectors in individual heating systems. This made it possible to compare systems that use several types of energy (e.g., electrical, thermal) and to determine their efficiency with high accuracy. As a result of the exergy analysis, the value of the proposed scheme’s exergy efficiency was obtained.
基于汽液喷射器的节能供热系统
采用以R718(水)为工作流体的汽液喷射器热泵,解决了提高单个供热系统效率的问题。研究对象是基于射流热压缩原理的汽液喷射器的工作过程。它涉及在液体-蒸汽喷射器的动力流喷嘴中产生蒸汽,不需要外部来源提供蒸汽。给出了传统系统和新方案的方案和描述。根据原理解和工作周期,指出了它们与传统方法的区别。本文将所提出方案的热力计算与工作流程R718和传统热泵系统的运行制冷剂R134a、R410a、R32进行了比较。得到了系统各部件的热力学参数值。确定了传统循环和建议循环的性能系数(COP)。采用新方案使COP平均提高40%成为可能。一项火用分析评估了在单个加热系统中采用基于液-汽喷射器的真空装置的便利性。这使得比较使用几种能源(如电、热)的系统成为可能,并以高精度确定它们的效率。通过火用分析,得出了该方案的火用效率值。
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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来源期刊
CiteScore
0.40
自引率
0.00%
发文量
15
审稿时长
12 weeks
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