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Effects of Plume Impingements of Clustered Nozzles on the Surface Skin Friction

机译:簇状喷嘴的羽流撞击对表面皮肤摩擦的影响

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Skin-friction values on the surfaces of clustered nozzles were measured using a pointwise local skin-friction sensor. This sensor has a floating head that can detect the local shear force using the flow passing over the head surface. Cold-flow wind-tunnel experiments were carried out with clustered nozzle models. The test models had three or four clustered cell nozzles, or a nonclustered two-dimensional nozzle with a designed Mach number of 3.5, followed by a straight planar section. The experimental conditions were chosen according to the cell nozzle jet expansions. Hence, some conditions involved an oblique shock wave impinging on the bottom surface and others did not The measured local skin-friction coefficients were compared to those predicted by using an existing prediction model. The results showed that the local skin-friction value significantly increased when the cell nozzle expansion was under the overexpansion condition, whereas the measured values were identical to those predicted by the existing model under the underexpansion condition. The physics behind this observation showed that the expansion waves hardly affected the skin friction, but the oblique shock wave and crossing neighboring jet boundaries could increase the skin friction.
机译:使用逐点局部皮肤摩擦传感器测量簇状喷嘴表面上的皮肤摩擦值。该传感器具有一个浮头,该浮头可以使用流经头表面的流量检测局部剪切力。使用簇状喷嘴模型进行了冷流风洞实验。测试模型具有三个或四个簇状单元喷嘴,或设计马赫数为3.5的非簇状二维喷嘴,其后是笔直的平面截面。根据细胞喷嘴的喷嘴膨胀来选择实验条件。因此,某些情况涉及倾斜冲击波撞击底表面,而其他情况则没有。将测量的局部皮肤摩擦系数与使用现有预测模型预测的那些进行比较。结果表明,当细胞喷嘴膨胀处于过度膨胀条件下时,局部皮肤摩擦值显着增加,而在膨胀不足条件下,测量值与现有模型预测的值相同。该观察结果背后的物理现象表明,膨胀波几乎不会影响皮肤摩擦,但是倾斜的冲击波和越过相邻的射流边界会增加皮肤摩擦。

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