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Quantification of transient behavior of wind-driven surface droplet/rivulet flows using a digital fringe projection technique

机译:使用数字条纹投影技术量化风驱动表面液滴/小流的瞬态行为

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摘要

A digital fringe projection (DFP) system is developed to achieve non-intrusive thickness measurements of wind-driven water droplet/rivulet flows over a test plate to quantify the unsteady surface water transport process pertinent to various atmospheric icing phenomena. The DFP technique is based on the principle of structured light triangulation in a similar manner as a stereo vision system but replacing one of the cameras for stereo imaging with a digital projector. The digital projector projects line patterns of known characteristics onto the test specimen (i.e., a water droplet/rivulet on a test plate for the present study). The pattern of the lines is modulated from the surface of the test object. By comparing the modulated pattern and a reference image, the 3D profile of the test object with respect to the reference plane (i.e., the thickness distribution of the water droplet/rivulet flow) can be retrieved quantitatively and instantaneously. The feasibility and implementation of the DFP system is first demonstrated by measuring the thickness distribution of a small flat-top pyramid over a test plate to evaluate the measurement accuracy level of the DFP system. After carefully calibrated and validated, the DFP system is applied to achieve time-resolved thickness distribution measurements of a water droplet/rivulet to quantify the transient behavior of a water droplet/rivulet flow driven by a boundary layer air flow over a test plate. The dynamic shape changes and stumbling runback motion of the wind-driven water droplet/rivulet flow were measured in real time in terms of film thickness distribution, contact line moving velocity, wet surface area and droplet evaporation rate.
机译:开发了一种数字条纹投影(DFP)系统,以实现对在测试板上流过的水滴/小溪流进行非侵入式厚度测量,以量化与各种大气结冰现象有关的不稳定地表水输送过程。 DFP技术以类似于立体视觉系统的方式基于结构化光三角测量的原理,但是用数字投影仪代替了一个用于立体成像的相机。数字投影仪将已知特性的线型投影到试样上(即本研究的试验板上的水滴/小溪)。从测试对象的表面调制线条的图案。通过将调制后的图案与参考图像进行比较,可以定量且瞬时地获取测试对象相对于参考平面的3D轮廓(即,水滴/小溪流的厚度分布)。 DFP系统的可行性和实施首先通过在测试板上测量小型平顶金字塔的厚度分布来评估DFP系统的测量精度水平来证明。经过仔细的校准和验证后,DFP系统将用于实现水滴/小溪的时间分辨厚度分布测量,以量化由测试板上的边界层空气流驱动的水滴/小溪的瞬态行为。根据薄膜厚度分布,接触线移动速度,湿表面积和液滴蒸发速率,实时测量了风驱动的水滴/小溪流的动态形状变化和绊脚的后退运动。

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