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Efficient non-hydrostatic modelling of surface waves interacting with structures

机译:与结构相互作用的表面波的高效非静水模型

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An efficient three-dimensional non-hydrostatic model is applied to simulate free-surface waves interacting with structures. The model employs an implicit Crank-Nicholson scheme to discretize the Navier-Stokes equations under a Cartesian staggered grid framework. An integration method is introduced to account for the full effects of non-hydrostatic pressure at the free-surface layer. A domain decomposition method is proposed to effectively solve the resulting matrix system. The model is first validated by simulating three-dimensional sloshing waves in a container. The model is then applied to simulate waves propagating over two-dimensional and three-dimensional submerged structures, in which the effects of non-linearity and dispersion are important. The model results show that the model using only two vertical layers are in all favorable agreements with experimental data, demonstrating the efficiency and accuracy of the model on simulating surface waves interacting with structures.
机译:应用有效的三维非静水模型来模拟与结构相互作用的自由表面波。该模型采用隐式Crank-Nicholson方案在笛卡尔交错网格框架下离散Navier-Stokes方程。引入积分方法来考虑自由表面层的非静水压力的全部影响。提出了一种域分解方法,以有效地解决由此产生的矩阵系统。该模型首先通过模拟容器中的三维晃动波来验证。然后将该模型应用于模拟在二维和三维浸没结构中传播的波,其中非线性和色散的影响很重要。模型结果表明,仅使用两个垂直层的模型与实验数据完全吻合,证明了该模型在模拟表面波与结构相互作用时的效率和准确性。

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