通过莫里森方程评估 OC4 半潜式 FOWT 平台的动态行为

Chungkuk Jin, Ikjae Lee, JeongYong Park, MooHyun Kim
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摘要

为了更好地计算波浪力,本文提出了Morison方程中的有效惯性系数(EIC)。以OC4半潜式浮式海上风力机(FOWT)平台为例进行可行性测试。大的Keulegan - Carpenter (KC)数下的大衍射和柱间的相互作用会导致使用Morison方程和理论惯性系数来估计波浪力的误差,这可以通过EIC作为波周期和方向的函数来纠正。利用Morison方程和势理论计算了各柱、波周期和波向的水平和垂直波浪力。得到了各柱的EICs,根据位势理论得到了莫里森惯性力与波浪激发力之间的最小差值。比较了电阻抗、波浪力、相位角和动态运动,证实了电阻抗的可行性
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Dynamic Behavior Assessment of OC4 Semi-submersible FOWT Platform Through Morison Equation
: This paper proposes an effective inertia coefficient (EIC) in the Morison equation for better wave-force calculations. The OC4 semi-submersible floating offshore wind turbine (FOWT) platform was considered to test the feasibility. Large diffraction at large Keulegan – Carpenter (KC) numbers and the interaction between columns can result in errors in estimating the wave force using the Morison equation with a theoretical inertia coefficient, which can be corrected by the EIC as a function of the wave period and direction. The horizontal and vertical wave forces were calculated using the Morison equation and potential theory at each column, wave period, and wave direction. The EICs of each column were then obtained, resulting in a minimal difference between the Morison inertia force and the wave excitation force by the potential theory. The EICs, wave forces, phase angles, and dynamic motions were compared to confirm the feasibility of an EIC
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