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A 3D direct coupling method for steady ship hydroelastic analysis

机译:一种稳压液压加强分析的3D直接耦合方法

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摘要

Asides from the influence of incoming waves, ships can experience steady motions, such as rigid-body sinkage and trim motions, and flexible-body vertical bending motions, due to a constant forward speed even under calm water conditions. In this paper, a novel approach to analyze steady-ship hydroelasticity, particularly for the steady-ship motions and surrounding steady-wave disturbances, is proposed using a three-dimensional (3D) direct coupling method, based on a higher-order boundary element method (HOBEM) and a higher-order shell finite element method (FEM). Within the linearized framework, a solution method is proposed based on a two-step procedure, using two types of Neumann-Kelvin (NK) linear flow models for the fluid part and a virtual work equilibrium equation for the structural part. The first step is to compute a mean position wave-resistance problem using the modified NK equation, the second step is to solve a perturbed position wave-resistance problem, by employing a classical NK model and a virtual work equation based on the first step's solution. Detailed mathematical formulation and numerical procedures are described, and a few numerical results are illustrated. These include both rigid and flexible steady-ship motions, Von-Mises stress distributions, and wave-resistance coefficients for Froude numbers ranging from 0.15 to 0.5. Furthermore, the numerical results obtained using the present direct coupling method and a modal-based one are compared. (C) 2020 Elsevier Ltd. All rights reserved.
机译:从进入波浪的影响,由于即使在平静的水条件下,船舶可能会经历稳定的运动,例如刚体沉降和修剪运动,以及柔性垂直弯曲运动。本文采用三维(3D)直接耦合方法,提出了一种分析稳压水力弹性的新方法,特别是对于稳压动力学和周围的稳态稳态,基于高阶边界元件方法(HOBEM)和高阶壳有限元方法(FEM)。在线化框架内,基于两步过程提出了一种解决方案方法,用于使用两种类型的Numann-Kelvin(NK)线性流量模型以及用于结构部件的虚拟工作平衡方程。第一步是使用修改的NK方程计算平均位置波形问题,第二步是通过采用经典的NK模型和基于第一步的解决方案的虚拟工作方程来解决扰动位置波形电阻问题。描述了详细的数学制剂和数值程序,并且示出了几个数值结果。这些包括刚性和灵活的稳态稳定运动,von-mises应力分布,以及FRoude数字的波浪电阻系数,范围为0.15至0.5。此外,比较了使用本直接耦合方法获得的数值结果和基于模态的效果。 (c)2020 elestvier有限公司保留所有权利。

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