Tracking water droplets under descent and deformation

Caleb Brose, M. Thuo, J. Sheaffer
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Abstract

We present a system for tracking the movement and deformation of drops of water in free fall and collision. Our data comes from a high-speed camera which records 60,000 frames per second. The data is noisy, and is compromised by an unfortunate camera angle and poor lighting which contribute to caustics, reflections, and shadows in the image. Given an input video, we apply techniques from image processing, computer vision and computational geometry to track the the droplet's position and shape. While our tool could monitor the movement of transparent fluids in a more general environment, our data specifically depicts water colliding with hydrophobic materials. The output of our processing is used by materials scientists to better our understanding of the interactions between water and hydrophobic surfaces. These interactions have direct application in the materials engineering of next generation printing technologies.
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跟踪水滴下降和变形情况
我们提出了一种跟踪水滴在自由落体和碰撞中的运动和变形的系统。我们的数据来自一台每秒记录6万帧的高速摄像机。数据是嘈杂的,并且受到不合适的相机角度和光线不足的影响,从而导致图像中的焦散、反射和阴影。给定一个输入视频,我们应用图像处理、计算机视觉和计算几何技术来跟踪液滴的位置和形状。虽然我们的工具可以在更一般的环境中监测透明流体的运动,但我们的数据特别描述了水与疏水材料的碰撞。我们处理的结果被材料科学家用来更好地理解水和疏水表面之间的相互作用。这些相互作用在下一代印刷技术的材料工程中有直接的应用。
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