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首页> 外文期刊>Procedia IUTAM >A Cost-efficient Shadow Particle Tracking Velocimetry Setup Suitable for Tracking Small Objects in a Large Volume
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A Cost-efficient Shadow Particle Tracking Velocimetry Setup Suitable for Tracking Small Objects in a Large Volume

机译:具有成本效益的阴影粒子跟踪测速装置,适用于跟踪大体积的小物体

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We use a Shadow Particle Tracking Velocimetry technique (S-PTV) with collimated light to investigate the dynamics of a turbulent von Kármán (VK) flow in water. Such a PTV technique permits easy calibration since the apparent particle positions on the images do not depend on the camera-particle distance and tracking of small objects (100 μm particles, fibers, ...) with low power LEDs light sources is made possible in a large volume (approximately (6 cm) 3 ). This technique provides an ensemble of Lagrangian trajectories which are conditioned in space on a grid in order to reconstruct the 3d Eulerian mean flow together with its fluctuations. Typical Lagrangian statistics can also be obtained with this technique, such as velocity and acceleration auto-correlation functions.
机译:我们使用带有平行光的阴影粒子跟踪测速技术(S-PTV)来研究水中湍流vonKármán(VK)流动的动力学。这种PTV技术可以轻松进行校准,因为图像上的表观粒子位置不取决于相机粒子距离,并且可以使用低功率LED光源跟踪小物体(100μm粒子,纤维等)。大体积(大约(6厘米)3)。这项技术提供了一组拉格朗日轨迹,它们在网格中的空间中受到调节,以便重建3d欧拉平均流及其波动。也可以使用这种技术获得典型的拉格朗日统计量,例如速度和加速度自相关函数。

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