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首页> 外文期刊>Physics of fluids >Observations on the non-mixed length and unsteady shock motion in a two dimensional supersonic ejector
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Observations on the non-mixed length and unsteady shock motion in a two dimensional supersonic ejector

机译:二维超音速喷射器的非混合长度和非定常冲击运动的观察

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Key features that drive the operation of a supersonic ejector are the complex gasdynamic interactions of the primary and secondary flows within a variable area duct and the phenomenon of compressible turbulent mixing between them, which have to be understood at a fundamental level. An experimental study has been carried out on the mixing characteristics of a two dimensional supersonic ejector with a supersonic primary flow (air) of Mach number 2.48 and the secondary flow (subsonic) which is induced from the ambient. The non-mixed length, which is the length within the ejector for which the primary and secondary flow remain visually distinct is used to characterize the mixing in the ejector. The operating pressures, flow rates and wall static pressures along the ejector have been measured. Two flow visualization tools have been implemented-time resolved schlieren and laser scattering flow visualization. An important contribution has been the development of in-house image processing algorithms on the MATLAB platform to detect the non-mixed length from the schlieren and laser scattering images. The ratio of mass flowrates of the secondary flow to primary flow (entrainment ratio) has been varied in a range of 0.15-0.69 for two locations of the primary nozzle in the ejector duct. Representative cases have been computed using commercial CFD tool (Fluent) to supplement the experiments. Significant outcomes of the study are-the non-mixed length quantified from the flow visualization images is observed to lie within 4.5 to 5.2 times the height of the mixing duct which is confirmed by the wall static pressure profiles. The flow through the supersonic ejector in the mixed regime is explained using corroborative evidences from different diagnostic tools. A reduction of the non-mixed length by 46.7% is observed at operating conditions when the nozzle is sufficiently overexpanded. The disturbance caused to the mixing layer due to unsteady shock-boundary layer interactions within the nozzle at such conditions enhances mixing. The analysis of time resolved schlieren images have provided interesting observations on repetitive back and forth motion of the shock cells in the primary flow with a co-flowing secondary flow in the confines of the supersonic ejector. The oscillations have significant amplitudes (order of the nozzle height) at the centerline. The details of these experiments followed by the analysis of data and the inferences drawn from the results are discussed in this article.
机译:推动超音速喷射器运行的关键特征是可变面积管道内的主气流和副气流的复杂气体动力学相互作用以及它们之间可压缩的湍流混合现象,这在根本上必须被理解。已经对二维超音速喷射器的混合特性进行了实验研究,该超音速喷射器具有马赫数为2.48的超音速一次流(空气)和由环境引起的二次流(亚音速)。非混合长度,即喷射器内的主要流量和次要流量在视觉上保持不同的长度,用于表征喷射器中的混合。测量了沿喷射器的工作压力,流速和壁静压力。已经实现了两种流动可视化工具-时间分辨的schlieren和激光散射流动可视化。一个重要的贡献是在MATLAB平台上开发了内部图像处理算法,以从schlieren和激光散射图像中检测非混合长度。对于主喷嘴在喷射器导管中的两个位置,次要流量与主要流量的质量流率之比(夹带率)已在0.15-0.69的范围内变化。已经使用商用CFD工具(Fluent)计算了代表性案例以补充实验。该研究的重要结果是-从流动可视化图像中量化的非混合长度被观察到在混合管道高度的4.5至5.2倍之内,这是由壁静压力曲线所证实的。使用来自不同诊断工具的确证来解释在混合状态下通过超音速喷射器的流量。当喷嘴充分扩展时,在工作条件下观察到非混合长度减少了46.7%。在这种条件下,由于喷嘴内不稳定的冲击边界层相互作用而引起的对混合层的扰动增强了混合。时间分辨schlieren图像的分析提供了有趣的观察结果,说明了超声速喷射器范围内的冲击池在一次流动中与往复流动的二次流动之间的来回往复运动。振荡在中心线处具有明显的振幅(喷嘴高度的顺序)。本文讨论了这些实验的详细信息,然后进行了数据分析和从结果中得出的推论。

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