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首页> 外文期刊>The Proceedings of the International Offshore and Polar Engineering Conference >Time-domain Prediction of Nonlinear Motions and Loads of Body in Large Waves Using a High Order Panel Method
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Time-domain Prediction of Nonlinear Motions and Loads of Body in Large Waves Using a High Order Panel Method

机译:高阶面板法预测大波浪中人体的非线性运动和载荷时域

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To predict the motions and wave loads for ships and floating structures under extreme sea-state, a fully nonlinear time-domain computation program base on the Mixed Eulerian-Lagrangian method with high order boundary element approach is developed and the validity of computational system is analyzed. The standard Runge-Kutta method and the fourth order Adams-Bashforth-Moulton method are used for the time step method. The NURBS based high order BEM method is used to calculate the velocity potential at each time step. An artificial damping layer is adopted as the far field radiation condition on the free surface to avoid the wave reflection from the outer boundary, and the present method is found to be numerically stable. The pressure on body can be obtained by solving a boundary integral equation of time derivative of velocity potential. All of the numerical results in this paper agree well with experiment results and other calculated results.
机译:为了预测极端海况下船舶和漂浮物的运动和波浪载荷,开发了基于高阶边界元混合欧拉-拉格朗日方法的全非线性时域计算程序,并对计算系统的有效性进行了分析。 。时间步长方法使用标准的Runge-Kutta方法和四阶Adams-Bashforth-Moulton方法。基于NURBS的高阶BEM方法用于计算每个时间步的速度势。采用人工阻尼层作为自由表面上的远场辐射条件,以避免波从外边界反射,并且本发明方法在数值上是稳定的。可以通过求解速度势的时间导数的边界积分方程来获得身体上的压力。本文所有数值结果均与实验结果及其他计算结果吻合良好。

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