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Directional attraction of fluid surface wave caused by vertically oscillating prisms

机译:垂直振荡棱镜引起的流体表面波的定向吸引

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Experiments show that the surface wave, which is caused by a triangular prism performing simple harmonic vibration with low frequency and small amplitude on fluid surface, has directional force on float. A series of experiments and an in-depth study about this phenomenon were carried out, and the characteristics of fluid surface wave from different structures oscillation were analyzed. Experiments were launched with different vertical oscillating structures, such as triangular prism, quadrangular prism, hexagonal prism and the cylinder. The results show that the surface wave, on the direction directly opposite to the prism edge, can attract the floats, while the wave on the direction directly opposite to the prism facet has repelling interection. The relationship between the strength of attraction and sharpness of the angle is non-linear. The sharper the angle, the stronger the attraction force. When the prism becomes a cylinder which means without angle, the attraction will disappear. The experiment found and verified the fluid surface wave caused by specific structure oscillating prisms has directional attraction interection. The results are helpful for cleaning up pollutants and collecting spill oil on the water.
机译:实验表明,由三角棱镜在流体表面进行低频,振幅小,简谐振动引起的表面波对浮子有方向性作用力。对该现象进行了一系列实验和深入研究,分析了不同结构振动引起的流体表面波的特征。使用不同的垂直振荡结构(例如三角棱镜,四角棱镜,六边形棱镜和圆柱体)启动了实验。结果表明,在与棱柱棱边直接相反的方向上的表面波可以吸引浮子,而在与棱柱棱面相反的方向上的表面波具有排斥作用。吸引力的强度和角度的锐度之间的关系是非线性的。角度越大,吸引力越强。当棱镜变成圆柱体,这意味着没有角度时,吸引力将消失。实验发现并验证了由特定结构的振动棱镜引起的流体表面波具有方向吸引作用。结果有助于清除污染物并在水上收集溢油。

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