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Fence probe measurement of flow reversal in separating turbulent boundary layers

机译:分离湍流边界层中逆流的栅栏探针测量

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A small fence probe was evaluated for measurements in the time-dependent flow reversal region of the transition from boundary layer to separated flow. For moderate and high Reynolds numbers, the fence probe is demonstrated to be a usable tool for the measurement of the reverse flow associated with separation. Although the present probe pressure transducer system was limited to approximately 200 Hz, pulses of positive and negative shear stress were readily detected. At or near the location of zero surface shear stress, the measurements were limited by the signal-to-noise ratio. For the separated flow investigated, a marked reduction in the pressure gradient occurred when the fence probe indicated approximately 20 % reversal for the higher Reynolds numbers. The reversal increased to 24 % for the lower Reynolds numbers. The measurements indicate that flow reversal alone may not be adequate to identify the degree of separation. Upstream of turbulent boundary layer (intermittent) separation, the duration of the reversed shear stress was found to be very short (0.002–0.007 s), suggesting a local, small-scale, impulse-type separation. At and beyond the location of intermittent separation, the shear stress reversal duration was an order of magnitude longer. Estimates of the maximum and minimum surface shear stress in the separation region were also obtained with the fence probe.
机译:评估了一个小型围栏探针在从边界层到分离流的过渡过程中随时间变化的逆流区域中的测量结果。对于中等和较高的雷诺数,已证明围栏探针是用于测量与分离相关的逆流的有用工具。尽管当前的探头压力传感器系统被限制为大约200 Hz,但正负切应力脉冲很容易检测到。在零表面剪应力的位置或其附近,测量受到信噪比的限制。对于所研究的分离流,当围栏探针显示较高的雷诺数逆转约20%时,压力梯度显着降低。对于较低的雷诺数,反转增加到24%。这些测量表明,单独的逆流可能不足以识别分离程度。在湍流边界层(间歇)分离的上游,反向剪切应力的持续时间非常短(0.002-0.007 s),表明是局部的,小规模的,冲动型分离。在间歇性分离的位置及其以外,剪切应力的反转持续时间要长一个数量级。还使用围栏探针获得了分离区域中最大和最小表面剪切应力的估计值。

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