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Errors in the estimation of arterial wall shear rates that result from curve fitting of velocity profiles

机译:速度速率曲线曲线折合导致动脉墙剪切速率的误差

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摘要

An analysis was performed to determine the error that results from the estimation of the wall shear rates based on linear and quadratic curve-fittings of the measured velocity profiles. For steady, fully developed flow in a straight vessel, the error for the linear method is linearly related to the distance between the probe and the wall, dr1, and the error for the quadratic method is zero. With pulsatile flow, especially a physiological pulsatile flow in a large artery, the thickness of the velocity boundary layer, [delta] is small, and the error in the estimation of wall shear based on curve fitting is much higher than that with steady flow. In addition, there is a phase lag between the actual shear rate and the measured one. In oscillatory flow, the error increases with the distance ratio dr1/[delta] and, for a quadratic method, also with the distance ratio dr2/dr1, where dr2 is the distance of the second probe from the wall. The quadratic method has a distinct advantage in accuracy over the linear method when dr1/[delta]1, i.e. when the first velocity point is well within the boundary layer. The use of this analysis in arterial flow involves many simplifications, including Newtonian fluid, rigid walls, and the linear summation of the harmonic components, and can provide more qualitative than quantitative guidance.
机译:进行分析以确定基于测量速度分布的线性和二次曲线配件的壁剪切速率估计产生的误差。为了稳定,完全发育的直线流动,线性方法的误差与探头与墙壁DR1之间的距离线性相关,并且二次方法的误差为零。通过脉动流动,特别是在大动脉中的生理脉动流动,速度边界层的厚度Δ小,并且基于曲线拟合的壁剪切估计的误差远高于稳定流动的误差。另外,在实际剪切速率和测量的一个之间存在相位滞后。在振荡流动中,误差随距离比DR1 /ΔHS和二次方法增加,并且对于距离比DR2 / DR1,其中DR2是来自壁的第二探针的距离。当DR1 /Δ 1,即第一速度在边界层内很好时,二次方法在线性方法上具有明显的优势。在动脉流中使用这种分析涉及许多简化,包括牛顿流体,刚性壁和谐波分量的线性求和,并且可以提供比定量引导更具定性。

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