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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Experimental investigation on low-temperature thermal energy driven steam ejector refrigeration system for cooling application
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Experimental investigation on low-temperature thermal energy driven steam ejector refrigeration system for cooling application

机译:低温热能驱动蒸汽喷射器制冷系统的实验研究

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摘要

In recent years, ejector refrigeration has been a hot topic for research because it can utilize low-grade energy such as solar energy or industrial waste heat. Even more importantly, it uses the most environmentally friendly substance, water, as the working fluid. According to the literatures, the utilization of the thermal energy from a low-temperature heat source below 80 degrees C is a considerable challenge for the steam ejector refrigeration system. In this paper, an experimental prototype of the steam ejector refrigeration system was designed and built up. Three ejectors with a same nozzle for the primary nozzle and three different constant-area sections were designed and fabricated. The effects of the operating temperatures, the nozzle exit position (NXP) and the area ratio of the ejector (AR) on the working performance of the steam ejector were investigated. The generating temperature is ranged from 40 degrees C to 70 degrees C. The experimental results show that a steam ejector can operate successfully for a certain configuration size of the steam ejector with a generating temperature ranging from 40 degrees C to 70 degrees C and an evaporating temperature of 15 degrees C. The results of this investigation provided a better understanding for the cooling application of the steam ejector refrigeration system powered by low-temperature heat source. It demonstrates that the steam ejector refrigeration system is a very promising alternative to the absorption refrigeration system, when the heat source temperature is lower than 80 degrees C. (C) 2017 Elsevier Ltd. All rights reserved.
机译:近年来,喷射器制冷是研究的热门话题,因为它可以利用低级能量,如太阳能或工业废物。更重要的是,它使用最环保的物质,水作为工作流体。根据文献,从低温热源的利用低于80度C的热能是蒸汽喷射器制冷系统的相当大的挑战。本文设计并建立了蒸汽喷射器制冷系统的实验原型。设计和制造具有相同喷嘴的三个带有相同喷嘴的喷射器和三个不同的恒定区域部分。研究了操作温度,喷嘴出口位置(NXP)和喷射器(AR)与蒸汽喷射器的工作性能的影响。产生温度从40度C至70℃。实验结果表明,蒸汽喷射器可以成功地操作蒸汽喷射器的某个配置尺寸,产生40℃至70摄氏度的产生温度并蒸发温度为15摄氏度。该研究的结果为蒸汽喷射器制冷系统的冷却应用提供了更好的理解,该蒸汽喷射器制冷系统由低温热源提供动力。它表明,蒸汽喷射器制冷系统是吸收制冷系统的非常有前途的替代方案,当热源温度低于80度C.(c)2017 Elsevier Ltd.保留所有权利时。

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