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首页> 外文期刊>Experiments in Fluids: Experimental Methods and Their Applications to Fluid Flow >Wall-shear-stress and near-wall turbulence measurements up to single pixel resolution by means of long-distance micro-PIV
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Wall-shear-stress and near-wall turbulence measurements up to single pixel resolution by means of long-distance micro-PIV

机译:借助长距离微型PIV进行壁剪切应力和近壁湍流测量,分辨率高达单个像素

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摘要

A digital large-format long-distance micro-particle image velocimetry system (mu-PIV) was developed to measure the wall-shear-stress and the near-wall flow properties in a laminar, transitional and turbulent boundary layer flow along a flat plate, non-intrusively with high accuracy and spatial resolution. To achieve the desired measurement accuracy and spatial resolution, all experimental limitations associated with the seeding, light-sheet, out-of-focus particles, optical aberrations and distortions were successfully solved and various spatial correlation image analysis approaches based on the two-point or single-pixel ensemble correlation were developed, analyzed and compared with the state-of-the-art spatial correlation techniques. The instrument is well suited to prove fundamental fluid mechanical hypotheses such as the universality of the constants kappa and B of the logarithmic law. However, for the analysis of flows at large Reynolds and Mach numbers, where small spatial dimensions and strong flow gradients prevent accurate measurements, this technique can be applied as well.
机译:开发了一种数字化大幅面长距离微粒图像测速系统(mu-PIV),以测量沿平板的层流,过渡和湍流边界层流中的壁切应力和近壁流动特性。 ,具有高准确性和空间分辨率的非侵入式。为了获得所需的测量精度和空间分辨率,成功解决了与播种,光片,离焦粒子,光学像差和畸变相关的所有实验限制,并且基于两点或四点的各种空间相关图像分析方法开发,分析并与最新的空间相关技术进行了单像素整体相关。该仪器非常适合证明流体力学基本假设,例如对数定律的常数kappa和B的普遍性。但是,对于大雷诺数和马赫数下的流量分析,其中较小的空间尺寸和较大的流量梯度会妨碍精确测量,因此也可以应用此技术。

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