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Time-domain analysis of frequency dependent inertial wave forces on cylinders

机译:气缸上频率相关的惯性波力的时域分析

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Mono-pile structures are attractive for small well-head platforms and foundation of offshore wind turbines at moderate water depth. Their diameter of several meters makes them prone to simultaneous occurrence of frequency-dependent inertial forces and non-linear drag. The present paper presents a simple time-domain procedure for the inertial force, in which the frequency dependence is represented via a simple explicit time filter on the wave particle acceleration or velocity. The frequency dependence of the inertia coefficient is known analytically as a function of the wave-number, and the relevant range of waves shorter than about six times the diameter typically corresponds to deep water waves. This permits a universal non-dimensional frequency representation, that is converted to rational form to provide the relevant filter equation. Simple time-domain simulations demonstrate the reduction of the resonant part of the response for natural structural frequencies above the dominating wave frequency.
机译:单桩结构对于小型井口平台和中等水深的海上风力发电机基础非常有吸引力。它们几米的直径使它们易于同时发生频率相关的惯性力和非线性阻力。本文提出了一种简单的时域惯性力程序,其中通过简单的显式时间滤波器来表示频率依赖于波动粒子的加速度或速度。从理论上讲,惯性系数的频率依赖性是波数的函数,短于直径约六倍的波的相关范围通常对应于深水波。这允许通用的无量纲频率表示,将其转换为有理形式以提供相关的滤波器方程。简单的时域仿真表明,对于高于主波频率的自然结构频率,响应的谐振部分减小了。

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