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首页> 外文期刊>International journal of low carbon technologies >Readdressing working fluid selection with a view to designing a variable geometry ejector
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Readdressing working fluid selection with a view to designing a variable geometry ejector

机译:为了设计可变几何形状的喷射器而对工作液进行重新选择

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A number of factors influence the performance of an ejector, e.g. working fluid, geometry and operating conditions. In the present work, six low-environmental-impact working fluids were evaluated for their use in an ejector cooling system running on low-temperature thermal energy. The numerical analysis was based on a model applying the 1D constant-pressure mixing theory. Ejector performance was assessed for the temperatures of the generator, evaporator and condenser in the range of 80–120°C, 5–15°C and 25–40°C, respectively. The results indicated that owing to its high coefficient of performance and moderate operating pressures throughout the entire ejector cycle, isobutane is a good choice for a refrigerant. The area ratio required for running the ejector in critical mode, under changing operating conditions, varied in a significant range regardless of the selected refrigerant. This clearly indicates the importance of a variable geometry ejector design to strengthen the position of ejector cooling systems among other refrigeration technologies.
机译:许多因素会影响喷射器的性能,例如:工作流体,几何形状和工作条件。在当前的工作中,对六种低环境影响的工作流体在以低温热能运行的喷射器冷却系统中的使用情况进行了评估。数值分析基于基于一维恒压混合理论的模型。针对发生器,蒸发器和冷凝器的温度分别在80–120°C,5–15°C和25–40°C的范围内评估了喷射器的性能。结果表明,由于其在整个喷射器循环中的高性能系数和适中的工作压力,异丁烷是制冷剂的不错选择。无论选择哪种制冷剂,在不断变化的运行条件下以临界模式运行喷射器所需的面积比都在很大的范围内变化。这清楚地表明了可变几何形状喷射器设计对于加强喷射器冷却系统在其他制冷技术中的位置的重要性。

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