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NON-LINEAR WAVE FORCES ACTING ON A BODY OF ARBITARY SHAPE SLOWLY OSCILLATING IN WAVES

机译:作用在任意形状的身体上的非线性波力在波浪中缓慢振荡

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In the present study, non-linear wave loads such as the wave drift force, wave drift damping and wave drift added mass, acting on a moored body is evaluated based on the potential theory. The body is oscillating at a low frequency under the non-linear excitation of waves. The problem of interaction between the low-frequency oscillation of the body and ambient wave fields is considered. A moving coordinate frame following the low frequency motion is adopted. Two small parameters, which measure the wave slope and the frequency of slow oscillations (compared with the wave frequency) respectively, are used in the perturbation analysis. So obtained boundary value problems for each order of potentials are solved by means of the hybrid method. The fluid domain is divided into two regions by an virtual circular cylinder surrounding the body. Different approaches, i.e. boundary element method and eigen-function expansion, are applied to these two regions. Calculated nonlinear wave loads are compared to the semi-analytical results to validate the present method.
机译:在本研究中,基于潜在理论,评估在停泊体上作用在系泊体的波漂移力,波漂移阻尼和波漂移质量的非线性波载荷。在波的非线性激发下,主体在低频处振荡。考虑了主体和环境波场的低频振荡之间的相互作用的问题。采用低频运动后的移动坐标框架。在扰动分析中使用两个测量波坡和缓慢振荡频率的小参数和缓慢振荡(比较的频率)。因此,通过混合方法解决了每个电位级的边值问题。通过围绕主体的虚拟圆柱体将流体域分成两个区域。不同的方法,即边界元方法和eIGEN功能扩展,应用于这两个区域。将计算的非线性波载荷与半分析结果进行比较以验证本方法。

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