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Tomographic Particle Image Velocimetry using Smartphones and Colored Shadows

机译:使用智能手机和彩色阴影的层析粒子图像测速

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摘要

We demonstrate the viability of using four low-cost smartphone cameras to perform Tomographic PIV. We use colored shadows to imprint two or three different time-steps on the same image. The back-lighting is accomplished with three sets of differently-colored pulsed LEDs. Each set of Red, Green & Blue LEDs is shone on a diffuser screen facing each of the cameras. We thereby record the RGB-colored shadows of opaque suspended particles, rather than the conventionally used scattered light. We subsequently separate the RGB color channels, to represent the separate times, with preprocessing to minimize noise and cross-talk. We use commercially available Tomo-PIV software for the calibration, 3-D particle reconstruction and particle-field correlations, to obtain all three velocity components in a volume. Acceleration estimations can be done thanks to the triple pulse illumination. Our test flow is a vortex ring produced by forcing flow through a circular orifice, using a flexible membrane, which is driven by a pressurized air pulse. Our system is compared to a commercial stereoscopic PIV system for error estimations. We believe this proof of concept experiment will make this technique available for education, industry and scientists for a fraction of the hardware cost needed for traditional Tomo-PIV.
机译:我们展示了使用四个低成本智能手机相机执行Tomography PIV的可行性。我们使用彩色阴影将两个或三个不同的时间步长印在同一张图像上。背光是通过三组不同颜色的脉冲LED来完成的。每组红色,绿色和蓝色LED均在面向每个摄像机的扩散器屏幕上发光。因此,我们记录了不透明悬浮颗粒的RGB阴影,而不是常规使用的散射光。随后,我们将RGB颜色通道分开,以表示单独的时间,并进行了预处理以最大程度地减少噪声和串扰。我们使用市售的Tomo-PIV软件进行校准,3-D粒子重建和粒子场关联,以获取体积中的所有三个速度分量。借助三脉冲照明,可以完成加速度估算。我们的测试流是一个涡流环,该涡流环是通过使用柔性膜迫使流过圆形孔口而产生的,该膜由压缩空气脉冲驱动。我们的系统与商用立体PIV系统进行了误差估计。我们相信,这一概念验证实验将使该技术可用于教育,行业和科学家,而传统Tomo-PIV所需的硬件成本仅为其一小部分。

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