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OIL CIRCULATION RATE IN EJECTOR COOLING CYCLES

机译:喷射器冷却循环中的油循环速率

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摘要

The use of two-phase ejectors to recover expansion work to improve COP of transcritical R744 systems has been the subject of numerous investigations during the past decade. However, there is little understanding as to how oil in circulation in different parts of the system is affected when a two-phase ejector is used to replace the expansion valve. This paper presents detailed measurement results conducted on a transcritical R744 ejector system using polyalkylene glycol (PAG) oil, demonstrating that at the same test condition, the oil circulation rates (OCRs) in different parts of the system can easily vary by an order of magnitude. The highest OCRs of approximately 10% by mass were measured close to the evaporator inlet. The influence of compressor speed, ejector motive nozzle needle position and evaporator inlet metering valve opening on the OCRs was investigated and it is explained why these condition changes will result in variation of oil in circulation.
机译:使用两相喷射器来恢复扩展工作,以改善跨临界R744系统的COP一直是过去十年中众多调查的主题。然而,几乎没有了解系统在系统的不同部位中的循环中的油在用于更换膨胀阀时的影响。本文介绍了使用聚亚烷基乙二醇(PAG)油在跨临界R744喷射器系统上进行的详细测量结果,表明在相同的测试条件下,系统的不同部位的油循环速率(OCR)可以容易地变化为幅度。靠近蒸发器入口测量约10质量%的最高OCR。研究了压缩机速度,喷射器动力喷嘴针位置和蒸发器入口计量阀对OCR上的影响,并解释了原因,为什么这些条件变化会导致循环中的油的变化。

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