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Experimental study on the oblique shock waves and expansion waves in the supersonic carbon dioxide two-phase flow

机译:超音速二氧化碳两相流斜向冲击波和膨胀波的实验研究

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Recently, with the appearance of the two-phase flow ejector in refrigeration air conditioning and heat pump systems, the efficiency of the cycle has largely been improved in comparison with that of conventional cooling and heating systems. We have been developing an ejector for the refrigeration cycle and fundamentally researching the behavior of two-dimensional expansion waves and oblique shock waves to clarify the characteristics of waves occurring during high-speed two-phase flow. In previous studies, it was revealed that an oblique shock wave is generated at the nozzle exit of the ejector and affects the flow field of the supersonic two-phase flow inside the mixing section in the ejector. This is because the speed of sound for a two-phase flow is low compared to that for a single-phase flow. In the present study, we elucidate the behavior of oblique shock waves and expansion waves of supersonic two-phase flow by experiments using carbon dioxide refrigerant. The angle of the oblique shock waves and the expansion waves were experimentally measured, and corresponded well with those calculated using a theoretical model.
机译:近来,随着两相流喷射器在制冷空调和热泵系统中的出现,与传统的冷却和加热系统相比,循环效率已大大提高。我们一直在开发用于制冷循环的喷射器,并从根本上研究二维膨胀波和斜向冲击波的行为,以弄清高速两相流中产生的波的特性。在先前的研究中,发现在喷射器的喷嘴出口处产生倾斜冲击波,并且该倾斜冲击波影响喷射器中的混合部分内部的超音速两相流的流场。这是因为与单相流相比,两相流的声速低。在本研究中,我们通过使用二氧化碳制冷剂的实验阐明了超声速两相流的斜激波和膨胀波的行为。实验测量了倾斜冲击波和膨胀波的角度,它们与使用理论模型计算出的角度非常吻合。

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