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Interaction of external flow with linear cluster plug nozzle jet

机译:外部流动与线粒簇插入喷嘴的相互作用

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Plug nozzle flow in the presence of external flow is experimentally investigated at free-stream Mach numbers of 0.0, 0.7, 0.9, 1.1, and 1.5. The internal nozzle is operated in overexpanded and underexpanded regimes for these external flow Mach numbers. For the subsonic external flow, slight changes in the plug jet flow are observed as compared to the no-external-flow case. The supersonic external flow introduces substantial changes to plug flow jet structure as well as the wave interactions within it, as compared to the no-external-flow case. For the overexpanded internal nozzle operation, the oblique shock waves are asymmetric within the plug core jet. For underexpanded internal nozzle operation, an oblique shock formation is noticed on the plug surface which induces flow separation downstream. The RMS of the pressure fluctuations indicates a distinct peak corresponding to the foot of the overexpansion shock on the plug surface. These peaks are observed at consistent pressure ratios for all the external flow conditions considered. Regarding the cluster plug nozzle flow field, three-dimensional flow features are noticed because of the intermodule interactions. For both the overexpanded and underexpanded internal jet conditions, the interactions between the modules are predominantly compression waves in the spanwise direction. The RMS of the pressure fluctuations measured along the intermodule centreline suggests that the spanwise wave interactions have considerable influence on the flow unsteadiness.
机译:在外部流动存在下的插头喷嘴流动在自由流Mach数的实验上研究,0.0,0.7,0.9,1.1和1.5。内部喷嘴在整个流动马赫数中以过度Xanded和Underexpanded制度运行。对于子源外流,与无外流情况相比,观察到插头射流的微小变化。与无外流情况相比,超音速外部流量引入了插头流动射流结构以及其中的波相互作用。对于过度开放的内部喷嘴操作,倾斜冲击波在插头芯射流内不对称。对于Underexpand的内部喷嘴操作,在插头表面上注意到倾斜冲击形成,诱导下游流动分离。压力波动的RMS表示与插头表面上的过度垂直冲击的脚对应的不同峰值。在考虑的所有外部流动条件下,在一致的压力比下观察到这些峰。关于簇插入喷嘴流场,由于间组态相互作用,注意到三维流量特征。对于两个过度的和曝光不足的内部喷射条件,模块之间的相互作用主要是沿翼展方向的压缩波。沿着间细胞中心测量的压力波动的RMS表明,翼展波相互作用对流动不稳定具有相当大的影响。

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