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A novel method for three-dimensional three-component analysis of flows close to free water surfaces

机译:靠近自由水面的三维三维三分量分析的新方法

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摘要

Initial effort is made to establish a new technique for the measurement of three-dimensional three-component (3D3C) velocity fields close to free water surfaces. A fluid volume is illuminated by light emitting diodes (LEDs) perpendicularly to the surface. Small spherical particles are added to the fluid, functioning as a tracer. A monochromatic camera pointing to the water surface from above records the image sequences. The distance of the spheres to the surface is coded by means of a supplemented dye, which absorbs the light of the LEDs according to Beer–Lambert’s law. By applying LEDs with two different wavelengths, it is possible to use particles variable in size. The velocity vectors are obtained by using an extension of the method of optical flow. The vertical velocity component is computed from the temporal brightness change. The setup is validated with a laminar falling film, which serves as a reference flow. Moreover, the method is applied to buoyant convective turbulence as an example for a non stationary, inherently 3D flow.
机译:最初的工作是建立一种新技术,用于测量靠近自由水表面的三维三分量(3D3C)速度场。垂直于表面的发光二极管(LED)照射液体。将球形小颗粒添加到流体中,用作示踪剂。从上方指向水面的单色相机记录图像序列。球体到表面的距离通过一种补充染料进行编码,该染料根据比尔-兰伯特定律吸收LED的光。通过应用具有两种不同波长的LED,可以使用尺寸可变的颗粒。通过使用光流方法的扩展获得速度矢量。根据瞬时亮度变化计算垂直速度分量。该设置已通过层状降膜验证,该降膜用作参考流程。而且,该方法被应用于浮力对流湍流,作为非平稳固有3D流的示例。

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  • 来源
    《Experiments in Fluids》 |2008年第3期|469-480|共12页
  • 作者

    M. Jehle; B. J?hne;

  • 作者单位

    Interdisciplinary Center for Scientific Computing Heidelberg University Im Neuenheimer Feld 368 69120 Heidelberg Germany;

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  • 原文格式 PDF
  • 正文语种 eng
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