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首页> 外文期刊>Measurement Science & Technology >Single-view volumetric PIV via high-resolution scanning, isotropic voxel restructuring and 3D least-squares matching (3D-LSM)
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Single-view volumetric PIV via high-resolution scanning, isotropic voxel restructuring and 3D least-squares matching (3D-LSM)

机译:通过高分辨率扫描,各向同性体素重构和3D最小二乘匹配(3D-LSM)的单视图体积PIV

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摘要

Scanning PIV as introduced by Brucker (1995 Exp. Fluids 19 255-63, 1996a Appl. Sci. Res. 56 157-79) has been successfully applied in the last 20 years to different flow problems where the frame rate was sufficient to ensure a 'frozen' field condition. The limited number of parallel planes however leads typically to an under-sampling in the scan direction in depth; therefore, the spatial resolution in depth is typically considerably lower than the spatial resolution in the plane of the laser sheet (depth resolution = scan shift Δz pixel unit in object space). In addition, a partial volume averaging effect due to the thickness of the light sheet must be taken into account. Herein, the method is further developed using a high-resolution scanning in combination with a Gaussian regression technique to achieve an isotropic representation of the tracer particles in a voxel-based volume reconstruction with cuboidal voxels. This eliminates the partial volume averaging effect due to light sheet thickness and leads to comparable spatial resolution of the particle field reconstructions in x-, y- and z-axes. In addition, advantage of voxel-based processing with estimations of translation, rotation and shear/strain is taken by using a 3D least-squares matching method, well suited for reconstruction of grey-level pattern fields. The method is discussed in this paper and used to investigate the ring vortex instability at Re = 2500 within a measurement volume of roughly 75 × 75 × 50 mm~3 with a spatial resolution of 100 μm/voxel (750 × 750 × 500 voxel elements). The volume has been scanned with a number of 100 light sheets and scan rates of 10 kHz. The results show the growth of the Tsai-Widnall azimuthal instabilities accompanied with a precession of the axis of the vortex ring. Prior to breakdown, secondary instabilities evolve along the core with streamwise oriented striations. The front stagnation point's streamwise distance to the core starts to decrease while the rear stagnation point distance remains constant which indicates that the front part of the ring is at first losing its mass during breakdown.
机译:Brucker(1995 Exp。Fluids 19 255-63,1996a Appl。Sci。Res。56 157-79)引入的扫描PIV在过去20年中已成功应用于帧速率足以确保帧速率的各种流量问题。 “冻结”现场条件。但是,有限数量的平行平面通常会导致在扫描方向上深度上的欠采样。因此,深度的空间分辨率通常大大低于激光片平面中的空间分辨率(深度分辨率=物镜空间中的扫描位移Δz像素单位)。另外,必须考虑由于光片的厚度引起的部分体积平均作用。在此,该方法是通过使用高分辨率扫描与高斯回归技术相结合来进一步开发的,以在基于立方形体素的基于体素的体积重建中实现示踪粒子的各向同性表示。这消除了由于薄板厚度而导致的部分体积平均效应,并导致了在x轴,y轴和z轴上粒子场重构的相当的空间分辨率。此外,通过使用3D最小二乘匹配方法获得了基于体素的处理(具有平移,旋转和剪切/应变估计)的优势,该方法非常适合重建灰度图案场。本文讨论了该方法,并用于研究在大约75×75×50 mm〜3的测量空间中,空间分辨率为100μm/体素(750×750×500体素元素)的情况下,Re = 2500时的环涡不稳定性)。已用100张光纸和10 kHz的扫描速率扫描了该体积。结果表明,随着旋涡环轴线的进动,蔡-维德纳尔方位不稳定性的增长。在分解之前,次要不稳定性会沿着岩心演化,并具有沿流向的条纹。前停滞点到芯的流向距离开始减小,而后停滞点距离保持恒定,这表明环的前部首先在破裂过程中失去了质量。

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