首页> 外文会议>International Conference on Computational and Experimental Methods in Multiphase and Complex Flow >EXPANSION PROCESSES AND STRUCTURES OF TWO-PHASE FLOWS IN AERATED-LIQUID JETS DISCHARGED INTO A QUIESCENT ENVIRONMENT
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EXPANSION PROCESSES AND STRUCTURES OF TWO-PHASE FLOWS IN AERATED-LIQUID JETS DISCHARGED INTO A QUIESCENT ENVIRONMENT

机译:膨胀液喷射中的两相流量的扩展过程和结构排放到静止环境中

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Expansion processes and near-field structures in the two-phase flow within an aerated-liquid jet injected into a quiescent environment were experimentally explored with the confocal x-ray fluorescence technique available at Argonne National Laboratory. Quantitative time-averaged liquid and gas density distributions within the aerated-liquid jet were spatially resolved simultaneously. For the present injection condition, the observation of a dome-shaped gas plume head and a high gas density gradient within a short distance from the nozzle exit clearly indicates that the initial gas expansion processes across the nozzle exit are highly similar to those within a typical under-expanded gaseous jet. With the assistance of compressible gas expansion near the nozzle exit, the liquid plume exhibits a plume width larger than that of the aerating gas plume, leading to a separation between liquid and gas plumes at the downstream location. Expansion of the gas plume creates a region of low gas density, followed by a region of gas density recovery in the near field. The low gas density region resembles the region with over-expanded gas in front of a Mach disk inside a typical under-expanded gaseous jet. The density variation within the low density region, however, is small, indicating a low level of over expansion and a weak Mach disk. The present analysis of Mach disk location within the discharged aerating gas plume shows that, while the location can be generally identified from gas density measurements, the use of correlations for location identification may be unreasonable, due to the lack of direct measurement data on characteristic pressures.
机译:通过Argonne National实验室的共聚焦X射线荧光技术,通过在Argonne National实验室提供的共聚焦X射线荧光技术进行了两相流程中的两相流中的膨胀过程和近场结构。在空气化 - 液体射流内的定量时间平均液体和气体密度分布在空间上同时解决。对于本发明的注射条件,从喷嘴出口的短距离内观察圆顶形气体流头和高气密密度梯度清楚地表明喷嘴出口上的初始气体膨胀过程与典型内的初始气体膨胀过程高度相似扩展的气态喷射。随着喷嘴出口附近可压缩气体膨胀的辅助,液体羽流呈现出大于曝气气体羽流的羽流宽,导致下游位置处的液体和气体羽毛之间的分离。气体羽流的膨胀产生低气体密度的区域,然后在近场中的气体密度恢复区域。低气体密度区域类似于在典型的下膨胀的气态射流内部的马赫盘前面具有过膨胀气体的区域。然而,低密度区域内的密度变化很小,表明膨胀的低水平和弱马赫盘。在放电的曝气气体羽毛内的马赫盘位置的本分析表明,虽然可以从气体密度测量中识别出位置,但由于缺乏关于特征压力的直接测量数据,所以使用与位置识别的相关性可能是不合理的。

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