Experimental investigation of gamma stirling engine coupling to convert thermal to cooling energy in different laboratory conditions

Daneshgar Sareh, Zahedi Rahim, Asemi Hamidreza
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引用次数: 5

Abstract

The main aim of this research is to experimentally investigate the two coupled identical ST500 gamma-type Stirling engines and convert thermal energy to cooling energy. Using a new structure and two coupled Stirling engines at different temperatures and pressures and the use of biomass fuel within the 4 -8 bar average pressure range of the first engine heat source, the 1-4 bar average pressure range of the second engine heat sink, and Stirling heat engine temperature range of 480-580 ºC, the effective cooling is obtained in the cooling engine. In doing tests, attempts were made to reach lower than 9 percent error results in different parts of the engine, including insulation, fluid leakage, belt loss, and measurement devices. According to the obtained results, 8 bars increase in the average pressure range of the gas in the first engine heat source, a 1 bar reduction in the average pressure range of the gas in the second engine heat sink, the increased temperature of the heat source up to 580ºC, and the use of the light operating fluid such as helium will affect the generation of cooling up to-16ºC.
不同实验室条件下将热能转化为冷能的伽马斯特林发动机耦合实验研究
本研究的主要目的是通过实验研究两个耦合的相同 ST500 γ 型斯特林发动机,并将热能转化为冷能。采用新型结构和两个耦合斯特林发动机,在不同温度和压力下使用生物质燃料,第一台发动机热源的平均压力范围为 4-8 巴,第二台发动机散热器的平均压力范围为 1-4 巴,斯特林热机的温度范围为 480-580 ºC,从而在冷却发动机中获得有效冷却。在测试过程中,尝试在发动机的不同部位,包括隔热、液体泄漏、皮带损耗和测量装置等,达到误差低于 9% 的结果。根据获得的结果,第一发动机热源中气体的平均压力范围增加 8 巴,第二发动机散热器中气体的平均压力范围减少 1 巴,热源温度升高至 580ºC,以及使用轻质工作流体(如氦气),都会影响冷却效果,最高可达 16ºC。
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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