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Imaging surface water waves for the determination of surface tension and spatial attenuation

机译:成像表面水波以确定表面张力和空间衰减

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We propose the use of the image analysis technique to determine the surface tension of water and the attenuation coefficients of surface water waves in terms of frequency. Tap water from two different locations is used in our experiments. Water waves are continuously generated at various frequencies in a ripple tank by a plastic blade driven by a function generator. Images of the water waves are then captured by a digital camera and analyzed by using Tracker. As a result, we obtain the surface tension of water at 25 °C from both locations that are in good agreement with those resulting from the capillary rise technique. In addition, a linear relationship between the attenuation coefficient of the water waves and driven frequencies, ranging from 40 to 90 Hz, can be observed. Our results indicate that the greater the surface tension the longer distance the water wave takes before its amplitude decreases to 1/e of its original value. This work brings forward a relatively simple technique that can be applied to determine the surface tension and attenuation coefficients of surface water waves in a ripple tank with notable results.
机译:我们建议使用图像分析技术来确定水的表面张力和表面水波在频率方面的衰减系数。我们的实验中使用了来自两个不同位置的自来水。由函数发生器驱动的塑料叶片在波纹箱中以各种频率连续产生水波。然后用数码相机捕获水波的图像,并使用Tracker进行分析。结果,我们从两个位置获得的水在25°C的表面张力与毛细管上升技术产生的水张力非常吻合。此外,可以观察到水波的衰减系数与驱动频率之间的线性关系,范围为40到90 Hz。我们的结果表明,表面张力越大,水波在其振幅降低到其原始值的1 / e之前要经过的距离越长。这项工作提出了一种相对简单的技术,该技术可用于确定波纹罐中表面水波的表面张力和衰减系数,效果显着。

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