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STRUCTURES AND PHASE TRANSITION PROCESSES OF SUPERCRITICAL METHANE/ ETHYLENE MIXTURES INJECTED INTO A SUBCRITICAL ENVIRONMENT

机译:注入亚临界环境的超临界甲烷/乙烯混合物的结构和相变过程

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The structure and phase transition of supercritical methane/ethylene mixtures injected into quiescent subcritical nitrogen were investigated in this study. Visualization of the near-field jets and flow structure inside the injector, as well as measurement of shock/jet structures, were performed using shadowgraph images. It was found that supercritical methane/ethylene jets injected away from the critical point undergo ideal-gas-like expansion and exhibit visible internal shock structures. Opaque jets with condensation occurring at the injection plane or even inside the injector were observed when the supercritical mixture was injected near the critical point. The pressure profile along the injector axis for the condensed jet indicates that a pressure rise inside the injector conies from the release of latent heat during homogeneous nucleation processes and is the primary factor in the production of a large jet expansion angle in the condensed jet. The fluid along streamlines passing through the Mach disk is less likely to condense, due to the short residence time within the nongaseous region and substantial increases in pressure and temperature downstream of the Mach disk.
机译:本研究研究了注入静态亚临界氮气中的超临界甲烷/乙烯混合物的结构和相变。使用阴影图图像对喷油器内部的近场射流和流动结构进行可视化,以及对冲击/射流结构进行测量。已经发现,从临界点喷射的超临界甲烷/乙烯射流会经历类似理想气体的膨胀,并显示出可见的内部冲击结构。当在临界点附近注入超临界混合物时,观察到在喷射平面甚至在喷射器内部出现凝结的不透明喷射流。沿着冷凝器射流的喷射器轴线的压力分布表明,在均匀成核过程中,喷射器内部的压力上升是由潜热的释放引起的,并且是在冷凝射流中产生大的喷射膨胀角的主要因素。由于在非气态区域内的停留时间短,并且马赫盘下游的压力和温度显着增加,因此沿通过马赫盘的流线的流体凝结的可能性较小。

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