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APS -70th Annual Meeting of the APS Division of Fluid Dynamics- Event - K62SCAN: Experimental Assessment of the Refined Similarity Hypothesis

机译:APS-流体动力学APS部门第70届年会-事件-K62SCAN:精细相似假设的实验评估

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Experimental and numerical studies of turbulence widely confirm departures from Kolmogorov's famed 1941 Similarity Hypothesis scaling. Kolmogorov anticipated this and later introduced his 1962 Refined Similarity Hypothesis (RSH), which posits that the local, volume averaged dissipation rate determines the scaling of velocity differences at that scale. Previous experimental tests have supported the RSH, but must be regarded as inconclusive, due to systematic errors introduced by the use of surrogates for the local dissipation rate. Recent advances in Scanning PIV now permit us to dispense with this technical limitation. During the K62SCAN EuHIT project, we conducted spatially resolved Stereo PIV and Scanning PIV measurements in the GTF3 von-K{'a}rm{'a}n mixing tank facility at MPIDS. We collected over $2imes10^5$ independent time-series Scanning PIV measurements of the turbulence at $R_lambda=200$ in a cubic measurement volume approximately 42 Kolmogorov lengthscales to a side. The measurement is able to resolve the instantaneous dissipation and velocity fields, eliminating the need for surrogates. This enables us to present the first direct, experimental assessment of the RSH. Our results complement recent numerical investigations into the RSH scaling.
机译:湍流的实验和数值研究广泛证实了与Kolmogorov著名的1941年相似假设定标的偏离。 Kolmogorov预料到了这一点,随后又提出了1962年的“精炼相似性假说”(RSH),该假说认为,局部体积平均耗散率决定了该尺度下速度差的尺度。先前的实验测试已支持RSH,但由于使用局部耗散率替代品引起的系统误差,因此必须视为不确定的。扫描PIV的最新进展现在使我们可以免除此技术限制。在K62SCAN EuHIT项目期间,我们在MPIDS的GTF3 von-K {'a} rm {'a} n混合槽设施中进行了空间分辨的立体声PIV和扫描PIV测量。我们收集了$ 2imes10 ^ 5 $个独立的时间序列湍流的PIV测量值,该值在$ R_lambda = 200 $的立方测量体积中,边长约42 Kolmogorov。该测量能够解决瞬时耗散和速度场,无需代理。这使我们能够提出RSH的首次直接的实验评估。我们的结果补充了对RSH标度的最新数值研究。

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