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首页> 外文期刊>International Journal of Heat and Fluid Flow >Wall shear stress measurement of near-wall flow over inclined and curved boundaries by stereo interfacial particle image velocimetry
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Wall shear stress measurement of near-wall flow over inclined and curved boundaries by stereo interfacial particle image velocimetry

机译:立体界面粒子图像测速仪测量倾斜和弯曲边界上近壁流动的壁面剪应力

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摘要

In investigations of laminar or turbulent flows, wall shear is often important. Nevertheless, conventional particle image velocimetry (PIV) is difficult in near-wall regions. A near-wall measurement technique, named interfacial PIV (IPIV) [Nguyen, C, Nguyen, T., Wells, J., Nakayama, A., 2008. Proposals for PIV of near-wall flow over curved boundaries. In: Proceedings of 14th International Symposium on Applications of Laser Technique to Fluid Mechanics), handles curved boundaries by means of conformal transformation, directly measures the wall gradient, and yields the near-wall tangential velocity profile at one-pixel resolution. In this paper, we show the feasibility of extending IPIV to measure wall gradients by stereo reconstruction. First, we perform a test on synthetic images generated from a direct numerical simulation (DNS) snapshot of turbulent flow over sinusoidal bed. Comparative assessment of wall gradients derived by IPIV, stereo-IPIV and particle image distortion (PID) [Huang, H.T., Fiedler, H.E., Wang, J.J., 1993. Limitation and improvement of PIV. Experiments in Fluids 15(4), 263-273] is evaluated with DNS data. Also, the sensitivity of IPIV and stereo-IPIV results to the uncertainty of identified wall position is examined. As a practical application of IPIV and stereo-IPIV to experimental images, results from turbulent open channel flow over a backward-facing step are discussed in detail.
机译:在研究层流或湍流时,壁剪通常很重要。尽管如此,在近壁区域中常规粒子图像测速仪(PIV)还是很困难的。一种近壁测量技术,称为界面PIV(IPIV)[Nguyen,C,Nguyen,T.,Wells,J.,Nakayama,A.,2008。关于在弯曲边界上进行近壁流动的PIV的建议。在:第14届国际激光技术在流体力学中的应用研讨会论文集,通过保形变换处理弯曲边界,直接测量壁梯度,并以一像素分辨率产生近壁切向速度轮廓。在本文中,我们展示了扩展IPIV以通过立体重建来测量墙坡度的可行性。首先,我们对从正弦床上湍流的直接数值模拟(DNS)快照生成的合成图像进行测试。通过IPIV,立体IPIV和粒子图像失真(PID)得出的墙体梯度的比较评估[Huang,H.T.,Fiedler,H.E.,Wang,J.J.,1993. PIV的局限和改进。使用DNS数据评估“流体15(4),263-273]中的实验”。此外,还检查了IPIV和立体声IPIV结果对确定的壁位置不确定性的敏感性。作为IPIV和立体声IPIV在实验图像上的实际应用,将详细讨论在反向步骤中湍流明渠流动的结果。

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