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ON THE ACCURACY OF WALL SHEAR STRESS USING DPIV

机译:DPIV方法计算墙体剪应力的精度

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摘要

Wall shear stress measurements are important for a variety of fluid mechanics phenomena and engineering applications ranging from estimation of viscous drag to the regulation of endothelial cell function in arterial flows. Although DPIV has emerged over the past years as the method of choice for global non-invasive optical flow diagnostics the issues associated with the indirect estimation of wall shear stresses from DPIV measured velocities have not been sufficiently addressed. The challenge is even more significant in the presence of deformable and dynamically moving boundaries. In particular such measurements require accurate determination of wall position, near-wall velocity measurements using DPIV algorithms, and the indirect estimation of the velocity derivatives in order to evaluate the shear stress. Dynamically moving boundaries, whether rigid or compliant, require special consideration, as the boundary position must be determined accurately as a function of space and time. It is necessary to quantify the accuracy of each measurement that contributes to the error of the wall shear stress estimation. In this work we decompose the problem into the following three aspects: (a) determination of the exact boundary points (b) DPIV velocity measurement uncertainty in the near wall region, (c) velocity derivative error. Methodologies and improvements addressing each aspect individually are proposed and a systematic parametric study of the related error is performed. To our knowledge, this is the first detailed parametric effort to quantify the errors associated with wall shear stress estimation from DPIV velocities.
机译:壁剪应力测量对于各种流体力学现象和工程应用都很重要,从估算粘性阻力到调节动脉血流中的内皮细胞功能,其工程应用范围很广。尽管DPIV在过去几年中已成为全球非侵入性光流诊断的一种选择方法,但与DPIV测量速度间接估算壁切应力相关的问题尚未得到充分解决。在存在可变形且动态移动的边界的情况下,挑战甚至更大。特别是,此类测量需要精确确定壁位置,使用DPIV算法进行近壁速度测量以及对速度导数的间接估算,以便评估切应力。动态移动的边界,无论是刚性的还是柔顺的,都需要特别考虑,因为边界位置必须根据空间和时间精确确定。有必要量化每次测量的准确性,这些准确性会导致壁切应力估算的误差。在这项工作中,我们将问题分解为以下三个方面:(a)确定确切的边界点;(b)在近壁区域中DPIV速度测量的不确定性;(c)速度导数误差。提出了针对每个方面的方法和改进,并对相关错误进行了系统的参数研究。据我们所知,这是第一个详细的参数化工作,用于量化与DPIV速度估算壁切应力有关的误差。

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