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Hydrodynamic Simulation of the Semi-Submersible Wind Float by Investigating Mooring Systems in Irregular Waves

机译:通过调查不规则波的系泊系统通过调查水流浮动的流体动力学模拟

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摘要

The present study aims to implement the software ANSYS AQWA to discuss the hydrodynamic analysis of the DeepCwind semi-submersible floating platform in waves based on the potential flow theory by considering the second-order wave exciting force. In this study, the linearized potential-flow hydrodynamic radiation and diffraction problems in the frequency domain were firstly solved by adopting the three-dimensional panel method. Subsequently, the hydrodynamic coefficients and wave loading data were transformed to time domain forms by the Cummins time domain equation as a system loading input. Furthermore, the quadratic transfer function (QTF) matrices with different frequencies and directions deduced based on the near field integration over the mean wetted hull surface were adopted for the calculation of slow-drift forces. In order to represent the damping in a real system for modeling potential flow without Morison’s elements, an additional quadratic damping matrix was added to capture the viscous drag. Eventually, both of the dynamic mooring model based on the lump-mass (LM) approach and the quasi-static mooring model based on the multi-segmented, quasi-static (MSQS) approach are introduced to discuss the mooring effect on the platform hydrodynamics. The effect of wave heading angles on the platform motion is considered as an influential parameter as well.
机译:本研究旨在实现软件ANSYS AQWA,以探讨基于潜在流动理论的潜在流动理论,讨论WeepcWind半潜式浮动平台的流体动力学分析。在该研究中,首先采用三维面板方法首先解决了频域中线性化电流流体动力辐射和衍射问题。随后,通过CUMMINS时域方程作为系统加载输入,将流体动力系数和波浪加载数据转换为时域形式。此外,采用基于平均湿壳表面上的近场积分推导的不同频率和方向的二次传递函数(QTF)矩阵用于计算慢漂移力。为了在没有Morison元件的情况下代表用于建模电势流的真实系统中的阻尼,添加了另外的二次阻尼矩阵以捕获粘性阻力。最终,引入了基于块状质量(LM)方法的动态系泊模型以及基于多分段,准静态(MSQS)方法的准静态系泊模型,以讨论平台流体动力学的系泊效果。波纹角在平台运动上的影响也被认为是一种有影响力的参数。

著录项

  • 作者

    Yu-Hsien Lin; Cheng-Hao Yang;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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