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Analysis of the Hydroelastic Performance of Very Large Floating Structures Based on Multimodules Beam Theory

机译:基于多模量梁理论的超大型浮式结构水弹性性能分析

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摘要

The hydroelastic behavior of very large floating structures (VLFSs) is investigated based on the proposed multimodules beam theory (MBT). To carry out the analysis, the VLFS is first divided into multiple submodules that are connected through their gravity center by a spatial beam with specific stiffness. The external force exerted on the submodules includes the wave hydrodynamic force as well as the beam bending force due to the relative displacements of different submodules. The wave hydrodynamic force is computed based on three-dimensional potential theory. The beam bending force is expressed in the form of a stiffness matrix. The motion response defined at the gravity center of the submodules is solved by the multibody hydrodynamic control equations; then both the displacement and the structure bending moment of the VLFS are determined from the stiffness matrix equations. To account for the moving point mass effects, the proposed method is extended to the time domain based on impulse response function (IRF) theory. The method is verified by comparison with existing results. Detailed results through the displacement and bending moment of the VLFS are provided to show the influence of the number of the submodules and the influence of the moving point mass.
机译:基于提出的多模梁理论(MBT),研究了非常大的浮动结构(VLFS)的水弹性行为。为了进行分析,VLFS首先被分成多个子模块,这些子模块通过其重心通过具有特定刚度的空间梁连接。由于不同子模块的相对位移,施加在子模块上的外力包括波浪水动力以及梁的弯曲力。波浪水动力是基于三维势能理论计算的。梁的弯曲力以刚度矩阵的形式表示。通过多体流体动力控制方程求解在子模块重心处定义的运动响应。然后根据刚度矩阵方程确定VLFS的位移和结构弯矩。考虑到运动点质量效应,该方法基于脉冲响应函数(IRF)理论扩展到时域。通过与现有结果进行比较验证了该方法。通过VLFS的位移和弯矩提供了详细的结果,以显示子模块数量的影响和移动点质量的影响。

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  • 来源
    《Mathematical Problems in Engineering》 |2017年第2017期|6482527.1-6482527.14|共14页
  • 作者单位

    PLA Univ Sci & Technol, Nanjing, Jiangsu, Peoples R China|Wuxi First Sci Res Inst, Wuxi, Peoples R China;

    Wuxi First Sci Res Inst, Wuxi, Peoples R China;

    Harbin Engn Univ, Coll Shipbldg Engn, Harbin, Heilongjiang, Peoples R China;

    Univ Western Australia, Sch Civil Environm & Min Engn, Ctr Offshore Fdn Syst, Perth, WA, Australia;

    Shanghai Jiao Tong Univ, State Key Lab Ocean Engn, Shanghai, Peoples R China;

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