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Ejector Performance of a Pump-less Ejector Refrigeration System Driven by Solar Thermal Energy

机译:太阳热能驱动的无泵喷射器制冷系统的喷射器性能

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Ejector refrigeration is considered as one of the three main ways of refrigeration and air-conditioning to utilize low-grade energy. Use of pump-less technology to eliminate the mechanical circulating pump of the working fluid from condenser to generator in ejector refrigeration systems can meet the minimal maintenance requirement and increase operation lifetime of the system. In this study, a pump-less ejector refrigeration system driven by solar thermal energy, using R134a as refrigerant is proposed. The prototype is constructed and the performance of the ejector which will be used in a pump-less system is investigated experimentally. The design condition of the pump-less ejector refrigeration system is: evaporation temperature of 15 °C, condensation temperature of 45 °C, generation temperature of 80 °C, and refrigeration capacity of 1.5 kW. The influence of the evaporation temperature, condensation temperature and generation temperature on the performance of the ejector is studied. Results show that the performance of the tested ejector is not good, and suggestions for improving the performance of the ejector are made.
机译:喷射器制冷被认为是利用低级能量的制冷和空调的三种主要方式之一。使用无泵技术消除喷射器制冷系统中从冷凝器到发电机的工作流体的机械循环泵可以满足最低维护要求,并增加系统的使用寿命。在这项研究中,提出了一种以R134a为制冷剂,由太阳能驱动的无泵喷射器制冷系统。构建了原型,并通过实验研究了将在无泵系统中使用的喷射器的性能。无泵喷射器制冷系统的设计条件是:蒸发温度为15°C,冷凝温度为45°C,产生温度为80°C,制冷能力为1.5 kW。研究了蒸发温度,冷凝温度和生成温度对喷射器性能的影响。结果表明,被测试的顶出器性能不佳,并提出了改善顶出器性能的建议。

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