首页> 外文会议>International Mechanical Engineering Congress and Exposition 2007 >IN-VITRO WALL SHEAR STRESS MEASUREMENTS FOR MICROFLUID FLOWS BY USING SECOND-ORDER SPE MICRO-PIV
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IN-VITRO WALL SHEAR STRESS MEASUREMENTS FOR MICROFLUID FLOWS BY USING SECOND-ORDER SPE MICRO-PIV

机译:使用二阶SPE MICRO-PIV的微流体流动的体外壁剪切应力测量

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Conventional single pixel evaluation (SPE) significantly improves the spatial resolution of PIV measurements to the physical limit of a CCD camera based on the forward difference interrogation (FDI). This paper further enhances the computational algorithm to second-order accuracy by simply modifying the numerical scheme with the central difference interrogation (CDI). The proposed central difference scheme basically superposes the forward-time and the backward-time correlation domains, thus resulting in reduced bias error as well as rapid background noise elimination. An assessment of the CDI SPE algorithm regarding the measurement errors was achieved via numerous synthetic images subject to a four-roll mill flow. In addition, preliminary wall shear stress (WSS) measurements regarding different algorithms are also evaluated with an analytical turbulent boundary flow. CDI scheme showed a 0.32% error deviated from the analytical solution and improved the same error in FFT-based correlation correlation (FFT-CC) by 32.35%. To demonstrate the performance in practice, in-vitro measurements were implemented in a serpentine microchannel made of polydimethyl siloxane (PDMS) for both CDI SPE and spatial cross-correlation. A series of steady-state flow images at five specified regions of interest were acquired using micro-PIV system. Final comparisons of the WSS regarding the Pearson correlation coefficient, R~2, between the numerical schemes and the simulations showed that an overall result was improved by CDI SPE due to the fine resolution and the enhanced accuracy.
机译:常规的单像素评估(SPE)基于前向差异查询(FDI),将PIV测量的空间分辨率显着提高到CCD相机的物理极限。本文通过简单地用中心差分查询(CDI)修改数值方案,将计算算法进一步提高到二阶精度。所提出的中心差分方案基本上叠加了前向时间域和后向时间域,从而减少了偏置误差并快速消除了背景噪声。 CDI SPE算法关于测量误差的评估是通过使用四辊轧机流量的大量合成图像完成的。此外,还使用解析湍流边界流评估了有关不同算法的初步墙面剪应力(WSS)测量。 CDI方案显示出偏离分析解决方案的0.32%的误差,并将基于FFT的相关性相关性(FFT-CC)中的相同误差提高了32.35%。为了证明在实践中的性能,在由聚二甲基硅氧烷(PDMS)制成的蛇形微通道中对CDI SPE和空间互相关进行了体外测量。使用micro-PIV系统获取了五个指定关注区域的一系列稳态流图像。数值方案与仿真之间关于Pearson相关系数R〜2的WSS的最终比较表明,CDI SPE的高分辨率和更高的精度改善了整体结果。

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