Comparison of Potential Theory and Morison Equation for Deformable Horizontal Cylinders

C. Jin
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引用次数: 3

Abstract

This study investigates the hydro-elastic behaviors of fully submerged horizontal cylinders in different regular waves. Two methods were proposed and compared in this study. The first method was based on potential theory in frequency domain and the discrete-module-beam (DMB) method, which discretizes a floating elastic structure into a sufficient number of rigid bodies while simultaneously representing the elastic behavior from beam elements with Euler-Bernoulli beam and Saint-Venant torsion. Moreover, the Morison method in time domain was employed; this method estimates wave forces from the semi-empirical Morison equation, and the elastic behavior is embodied by massless axial, bending, and torsional springs.Various parametric studies on cylinder diameter, submergence depth, and wave direction were conducted. Wave forces, dry/wet mode shapes/natural frequencies, and dynamic motions are presented and analyzed.
可变形水平圆柱的势理论与莫里森方程的比较
研究了完全淹没水平圆柱体在不同规则波作用下的水弹性特性。本研究提出并比较了两种方法。第一种方法基于频域位势理论和离散模梁(DMB)方法,将浮动弹性结构离散为足够数量的刚体,同时用欧拉-伯努利梁和Saint-Venant扭转表示梁单元的弹性行为。此外,还采用了时域的morrison方法;该方法从半经验Morison方程估计波浪力,弹性行为体现在无质量的轴向、弯曲和扭转弹簧上。对圆柱体直径、淹没深度和波浪方向进行了各种参数研究。波浪力,干/湿振型/固有频率,和动态运动提出和分析。
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