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首页> 外文期刊>Global Journal of Mathematical Analysis >2-D Numerical Wave Tank by Boundary Element Method Using Different Numerical Techniques
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2-D Numerical Wave Tank by Boundary Element Method Using Different Numerical Techniques

机译:使用不同数值技术的边界元法二维数值波箱

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In this article, numerical modeling of a 2-D wave tank has been investigated by applying completely nonlinear condition for water surface elevation. This has been accomplished based on potential theory, the combined Eulerian-Lagrangian scheme for time marching and using boundary element method. Other physical and numerical attributes of the current work are: physical modeling in time domain, time integration by 4 th order Runge-Kutta method, implementation of appropriate condition at the entrance boundary for wave generation, application of artificial dampers at the exit part of the wave tank, and ultimately numerical smoothing of the resulting free surface by using interpolation through spline functions. At the end, effective parameters on the generated wave have been analyzed and the generated wave has also been validated against the result of the linear wave theory.
机译:在本文中,通过为水面高度应用完全非线性条件,研究了二维波箱的数值模型。这是基于势能理论,时间行进的组合欧拉-拉格朗日方案以及使用边界元方法完成的。当前工作的其他物理和数值属性包括:在时域中进行物理建模,通过四阶Runge-Kutta方法进行时间积分,在生成波的入口边界处执行适当的条件,在通道的出口部分应用人工阻尼器。波箱,并最终通过样条函数使用插值对所得自由表面进行数值平滑。最后,分析了产生波的有效参数,并根据线性波理论的结果对产生波进行了验证。

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