首页> 外文会议>Conference of Global Chinese Scholars on Hydrodynamics >AN EFFICIENT COMPUTATIONAL METHOD FOR NONLINEAR THREE-DIMENSIONAL WAVE-WAVE AND WAVE-BODY INTERACTIONS
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AN EFFICIENT COMPUTATIONAL METHOD FOR NONLINEAR THREE-DIMENSIONAL WAVE-WAVE AND WAVE-BODY INTERACTIONS

机译:一种有效的非线性三维波波和波身相互作用的计算方法

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摘要

We develop and apply a highly efficient computational method for the study of three-dimensional nonlinear wave dynamics and interactions with floating bodies and bottom topography. Similarly to the classical boundary element methods, this method is based on the boundary integral equation formulation in the context of potential flow assumptions. In solving the integral equation, however, it employs a highly efficient fast Fourier transform technique for the calculation of far-field influences of boundary source/dipole distributions without an explicit realization of the influence coefficient matrix. As a result, the computational cost associated with the boundary-value solution at each time in the simulation of nonlinear wave-wave and wave-body interactions is reduced to O(NlnN) in comparison to the requisite O(N~2) effort of the classical methods, where N is the total number of boundary unknowns. The focus of this paper is on the development of the method and investigation of the features and dependence of its efficiency and accuracy on physical and computational parameters.
机译:我们开发并应用高效计算方法,用于研究三维非线性波动动力学和与浮体和底部地形的相互作用。类似于经典边界元件方法,该方法基于潜在流假设的上下文中的边界积分方程式制定。然而,在求解整体方程时,它采用了高效的快速傅里叶变换技术,用于计算边界源/偶极分布的远场影响,而无需明确实现影响系数矩阵。结果,与非线性波波和波浪体相互作用的模拟中的每次在每次中的边界值解决方案相关联的计算成本与必要的O(n〜2)努力相比减少到O(NLNN)古典方法,其中n是未知数的总数。本文的重点是开发方法和调查其对物理和计算参数的效率和准确性的特征和依赖性。

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