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首页> 外文期刊>International Journal for Numerical Methods in Fluids >A meshless numerical wave tank for simulation of nonlinear irregular waves in shallow water
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A meshless numerical wave tank for simulation of nonlinear irregular waves in shallow water

机译:用于浅水非线性不规则波模拟的无网格数值波箱

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摘要

Time domain simulation of the interaction between offshore structures and irregular waves in shallow water becomes a focus due to significant increase of liquefied natural gas (LNG) terminals. To obtain the time series of irregular waves in shallow water, a numerical wave tank is developed by using the meshless method for simulation of 2D nonlinear irregular waves propagating from deep water to shallow water. Using the fundamental solution of Laplace equation as the radial basis function (RBF) and locating the source points outside the computational domain, the problem of water wave propagation is solved by collocation of boundary points. In order to improve the computation stability, both the incident wave elevation and velocity potential are applied to the wave generation. A sponge damping layer combined with the Sommerfeld radiation condition is used on the radiation boundary. The present model is applied to simulate the propagation of regular and irregular waves. The numerical results are validated by analytical solutions and experimental data and good agreements are observed.
机译:由于液化天然气(LNG)终端的大量增加,近海结构与浅水不规则波之间相互作用的时域模拟成为焦点。为了获得浅水不规则波的时间序列,使用无网格方法开发了一种数值波箱,用于模拟从深水到浅水传播的二维非线性不规则波。使用拉普拉斯方程的基本解作为径向基函数(RBF),并将源点定位在计算域之外,通过边界点的搭配解决了水波传播的问题。为了提高计算稳定性,将入射波高程和速度势均应用于波的产生。在辐射边界上使用海绵阻尼层并结合Sommerfeld辐射条件。本模型用于模拟规则波和不规则波的传播。数值结果通过分析解决方案和实验数据进行了验证,并观察到了良好的一致性。

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