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Observations of turbulent reattachment behind an axisymmetric downstream-facing step in supersonic flow

机译:超声速流动中轴对称下游面向步骤后的湍流重新附着现象

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摘要

Supersonic flow over a downstream-facing step on the circumference of a large, ducted, axisymmetric body was used to study flow reattachment. Step heights h were 0.25, 1.00, and 1.68 in., compared to a body radius of 6 in. Freestream Mach numbers were in the range 2 to 4.5. Theturbulent boundary-layer thickness just ahead of the step varied from 0.14 to 0.19 in. (momentum thicknesses of about 0.01 in.). ududSurface pressure distributions throughout the region of separation and reattachment were measured, and points of reattachment were determined. Comparison of the shapes of the pressure distributions for various step heights shows that the initial (steepest) parts of the reattachment pressure rise, up to the point of reattachment, tend to become superimposed when plotted against x/h. Downstream reattachment the curves branch out, exhibiting a dependence on geometry and probably on initial shear layer profile. In the region of the initial pressure rise (near the end of the "dead air" region) dynamic pressures are low; the pressure rise there apparently is balanced by turbulent shear stress.
机译:在一个大的,管道状的,轴对称的主体的圆周上的一个面向下游的台阶上的超音速流被用来研究流的重新附着。步高h为0.25、1.00和1.68英寸,而体半径为6英寸。自由流马赫数在2到4.5的范围内。该步骤之前的湍流边界层厚度在0.14到0.19英寸之间变化(动量厚度约为0.01英寸)。测量整个分离和重新连接区域的表面压力分布,并确定重新连接的点。比较不同阶跃高度的压力分布形状的结果表明,当相对于x / h绘制时,直到重新连接点的重新连接压力的初始(最陡)部分趋于叠加。在下游重新连接时,曲线分支出来,表现出对几何形状的依赖性,并可能取决于初始剪切层的轮廓。在初始压力​​上升区域(接近“死空气”区域的末端),动态压力较低;那里的压力上升显然由湍流剪切应力平衡。

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