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Lagrangian interpolation algorithm for PIV data

机译:LAGRANGIAN插值算法PIV数据

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摘要

A new Lagrangian based interpolation scheme is proposed for recovering velocity field data from within masked regions in particle image velocimetry (PIV) experiments. As a first step, the mean field within the masked region is filled through an iterative convolution operation using an optimized kernel. Next, the Lagrangian interpolation scheme estimates velocity field data within the masked region using a weighted average of past and future snapshot data along a mean field streamline from outside of the masked region. The Lagrangian interpolation scheme is compared directly with a traditional bilinear interpolation approach for two datasets: the flow development over a circular cylinder within the laminar vortex shedding regime (ReD = 150) and turbulent vortex shedding regime (ReD = 3000). The results show that for both Reynolds numbers investigated, the Lagrangian approach provides up to a 5x improvement in average velocity reconstruction error. Application of the proposed interpolation scheme to the estimation of body forces was assessed. For both the momentum and impulse control volume approaches to estimate instantaneous forces, the Lagrangian interpolation scheme provides up to 10x improvement in the estimation of volume integral contributions to instantaneous drag and lift.
机译:提出了一种新的拉格朗日的插值方案,用于从粒子图像Velocimetry(PIV)实验中的遮蔽区域中回收速度场数据。作为第一步,掩蔽区域内的平均场通过使用优化的内核通过迭代卷积操作填充。接下来,拉格朗日插值方案使用沿着屏蔽区域外部的平均字段流线的过去和未来快照数据的加权平均值估计掩蔽区域内的速度场数据。拉格朗日插值方案直接比较了两个数据集的传统双线性插值方法:层内涡旋脱落制度(Red = 150)和湍流涡旋脱落制度(Red = 3000)内的圆柱体上的流动开发。结果表明,对于调查的雷诺数,拉格朗日方法可以在平均速度重建误差中提供5倍的提高。拟议的插值方案在估算体部队估算中的应用。对于瞬时瞬时力量的势头和脉冲控制量来,拉格朗日插值方案可提供高达10倍的提高,以估计速度积分贡献,以瞬时阻力和提升。

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