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Refrigeration performance research and simulation of two-stage ejector with water cooled condenser

机译:水冷冷凝器两级喷射器的制冷性能研究与仿真

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In order to make the ejector refrigeration system reach subzero refrigeration, the ejector structure is optimized in this paper. A two-stage ejector model in series with two ejectors is proposed. Comparing with traditional single ejector models, the two-stage ejector carries out a two boost of the secondary flow by connecting two ejectors in series. Using a water cooled condenser can also reduce the outlet pressure. Thus the pressure burden of a single ejector is reduced. The effectiveness of the proposed model is validated by simulation data. It is shown that the minimum refrigerating temperature of the two-stage ejector can achieve the refrigeration temperature requirement.
机译:为了使喷射器制冷系统达到零下制冷,本文对喷射器的结构进行了优化。提出了与两个喷射器串联的两级喷射器模型。与传统的单喷射器型号相比,两级喷射器通过串联连接两个喷射器来实现二次流量的二次增压。使用水冷冷凝器还可以降低出口压力。因此,减少了单个喷射器的压力负担。仿真数据验证了所提模型的有效性。结果表明,两级喷射器的最低制冷温度可以达到制冷温度的要求。

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