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Performance characteristics of the ejector refrigeration system based on the constant area ejector flow model

机译:基于恒定面积喷射器流动模型的喷射器制冷系统的性能特征

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A theoretical analysis of the ejector refrigeration system based on the constant area ejector flow model is performed. Optimised results for R-123 are presented. It is determined that the variations in condenser and evaporator temperature have a greater effect on the optimum coefficient of performance (COP) than the variation in generator temperature. At the same operating temperatures of the ejector refrigeration system, the optimum COP and area ratio determined in this study using the constant area flow model are greater than the values given in the literature for the constant pressure flow model. For the same area ratio, the COP for the system with the constant pressure ejector is relatively higher than that with the constant area ejector. In this case, however, the condenser temperature should be lowered. In addition, the refrigeration systems have almost the same COP values at lower evaporator or higher condenser temperatures.
机译:对基于恒定面积喷射器流动模型的喷射器制冷系统进行了理论分析。提出了R-123的优化结果。已确定冷凝器和蒸发器温度的变化比发电机温度的变化对最佳性能系数(COP)的影响更大。在与喷射器制冷系统相同的工作温度下,本研究中使用恒定面积流量模型确定的最佳COP和面积比大于文献中针对恒定压力流量模型给出的值。对于相同的面积比,具有恒定压力喷射器的系统的COP相对高于具有恒定面积喷射器的系统的COP。但是,在这种情况下,冷凝器温度应降低。另外,在较低的蒸发器或较高的冷凝器温度下,制冷系统的COP值几乎相同。

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