Wave Impact Loads on Vertical Circular Cylinder and the effect of Hydrophobic Surface

Abdallah Mohamed Alwy AL-BEITY, Fatih Korkmaz, B. Güzel
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Abstract

Peculiarly cylindrical legs on offshore platforms constantly are exerted vigorously to wave stresses. For their lifetime, a test on structural deformations and pressure measurements is taken. Experimental research on the wave forces affecting cylindrical structures is presented. To determine pressure distributions and deformations in the altered cylinder's surface properties by applying a hydrophobic coating. Hence, the angle at which water drops hit the surface has increased, thus, decreasing water adhesion to the surface. The geometric modification or additional weight coated on the cylinders' surfaces is not notable. Wave loads with various amplitudes and frequencies were applied repeatedly to cylinders with hydrophobic and hydrophilic surface materials. Three pressure sensors and a strain gauge were used to measure pressure distributions and the cylinders' surface deformations respectively. Two cylinders' fluctuation in pressure is carefully examined and analyzed. Cylinder's pressure response for hydrophobic surfaces varied based on the sensor's location by lowering the maximum pressure or the impact time. The structural deformations due to changing surface properties and strain readings were contrasted. The structural deformation changed, with the impacting wave distributed throughout the surface. Image processing demonstrates the variation in the water body's volume to which the surface is exposed, reinforcing this finding.
垂直圆柱波浪冲击载荷及疏水表面的影响
海上平台上特殊的圆柱形支腿不断受到波浪应力的强烈作用。对于它们的使用寿命,进行了结构变形试验和压力测量。对波浪力对圆柱结构的影响进行了实验研究。通过涂疏水涂层来确定压力分布和改变后的钢瓶表面特性的变形。因此,水滴撞击表面的角度增加了,从而减少了水对表面的粘附。在圆柱体表面涂覆的几何修饰或额外重量并不显著。在具有疏水和亲水表面材料的圆柱体上反复施加不同振幅和频率的波荷载。使用三个压力传感器和应变片分别测量压力分布和圆柱体表面变形。仔细检查和分析了两个气缸的压力波动。通过降低最大压力或冲击时间,气缸对疏水表面的压力响应根据传感器的位置而变化。对比了由于表面特性和应变读数变化引起的结构变形。结构变形发生变化,冲击波分布在整个表面。图像处理显示了水面暴露的水体体积的变化,加强了这一发现。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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