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Use of surface heat transfer measurements as a flow separation diagnostic in a two dimensional reflected oblique shock/turbulent boundary layer interaction

机译:在二维反射斜向冲击/湍流边界层相互作用中使用表面传热测量作为流动分离诊断

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摘要

The feasibility of using streamwise surface heat transfer measurements to detect the presence of flow separation in a two-dimensional reflected oblique shock/turbulent boundary layer interaction is reported. Surface heat transfer and static pressure data are presented for attached and separated flows for a free stream nominal Mach number range of 2.5 to 3.5 and shock generator angles of 2 to 8 degrees. The static pressure data do show the characteristic triple inflection point distribution for the strongly separated flow cases. The corresponding surface heat transfer data show unique trends that correlate well with the static pressure determination of the extent of the separated flow region. For the incipient or weakly separated flow cases, the static pressure data do not exhibit the characteristic triple inflection point distribution. However, the same trends in the heat transfer data that are seen for the strongly separated flow cases are evident for the weakly separated flows. Hence, the heat transfer data can be used to determine the extent of weakly separated flows when the surface static pressure distributions often can not.
机译:报道了在二维反射的斜向冲击/湍流边界层相互作用中使用流向表面传热测量来检测是否存在流动分离的可行性。表中给出了自由流名义马赫数范围为2.5至3.5和冲击发生器角度为2至8度时,附着和分离的流动的表面传热和静压力数据。静压力数据的确显示了强分离流动情况下的特征性三重拐点分布。相应的表面传热数据显示出独特的趋势,这些趋势与确定分离流动区域范围的静压很好地相关。对于初期或弱分离的流动情况,静压数据没有表现出特征性的三重拐点分布。但是,对于弱分离流,在传热数据中看到的趋势与强分离流情况相同。因此,当表面静压力分布通常不能达到要求时,传热数据可用于确定弱分离流的程度。

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