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首页> 外文期刊>Experiments in Fluids >Visual hull method for tomographic PIV measurement of flow around moving objects
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Visual hull method for tomographic PIV measurement of flow around moving objects

机译:可视船体方法对移动物体周围的流动进行层析PIV测量

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Tomographic particle image velocimetry (PIV) is a recently developed method to measure three components of velocity within a volumetric space. We present a visual hull technique that automates identification and masking of discrete objects within the measurement volume, and we apply existing tomographic PIV reconstruction software to measure the velocity surrounding the objects. The technique is demonstrated by considering flow around falling bodies of different shape with Reynolds number ~1,000. Acquired image sets are processed using separate routines to reconstruct both the volumetric mask around the object and the surrounding tracer particles. After particle reconstruction, the reconstructed object mask is used to remove any ghost particles that otherwise appear within the object volume. Velocity vectors corresponding with fluid motion can then be determined up to the boundary of the visual hull without being contaminated or affected by the neighboring object velocity. Although the visual hull method is not meant for precise tracking of objects, the reconstructed object volumes nevertheless can be used to estimate the object location and orientation at each time step.
机译:层析颗粒图像测速(PIV)是一种最新开发的方法,用于测量体积空间中速度的三个分量。我们提出了一种视觉船体技术,可以自动识别和掩盖测量体积内的离散对象,并应用现有的断层扫描PIV重建软件来测量围绕对象的速度。通过考虑雷诺数约为1000的不同形状的下落物体周围的流动来证明该技术。使用单独的例程处理获取的图像集,以重建对象周围的体积蒙版和周围的示踪剂粒子。在粒子重建之后,重建的对象蒙版将用于删除否则会出现在对象体积内的任何重影粒子。然后,可以确定与流体运动相对应的速度矢量,直到视觉船体的边界为止,而不受相邻物体速度的污染或影响。尽管视觉船体方法并不旨在精确跟踪对象,但是重建的对象体积仍然可以用于估计每个时间步长的对象位置和方向。

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