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Combined Eulerian-Lagrangian or Pseudo-Lagrangian Descriptions of Waves Caused by an Advancing Free Surface Disturbance

机译:eulerian-lagrangian或伪拉格朗日的波浪造成的波浪造成的波动造成的自由表面干扰引起

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We develop a new methodology for the numerical modeling of nonlinear free surface waves, caused by an advancing free surface disturbance, based on combining Lagrangian and Eulerian, or pseudo-Lagrangian, methods for the time updating of free surface geometry and motion. We solve potential flow equations with a three-dimensional (3D) higher-order Boundary Element Method (BEM; Grilli et al., 2000, 2001; and Sung and Grilli, 2005, for some more recent extensions). Specifically, the Lagrangian and Eulerian methods are combined in order to exploit their respective advantages. The full Lagrangian updating is very accurate for highly nonlinear waves, and the Eulerian or pseudo-Lagrangian methods yield smaller computational times because they allow using a shorter domain, particularly for the forward speed problem of an advancing disturbance on or below the free surface. As a validation application, we compute 3D nonlinear waves caused by a moving pressure patch. Numerical results show that the present methodology works quite well and gives reasonable wave resistance for numerical examples, as compared with theory, and other computations based on full Lagrangian and pseudo-Lagrangian methods.
机译:我们为非线性自由表面波的数值建模开发了一种新的方法,这是基于Lagrangian和Eulerian,或伪拉格朗日,用于时间更新的自由表面几何形状和运动的方法引起的自由表面干扰引起的。我们解决了具有三维(3D)高阶边界元素的潜在流程方程(BEM; GRILLI等,2000,2001;和SUNG和GRILLI,2005,用于一些更新的扩展)。具体而言,拉格朗日和欧拉的方法是组合的,以利用它们各自的优势。完整的拉格朗日更新对于高度非线性波非常准确,欧拉或伪拉格朗日方法产生较小的计算时间,因为它们允许使用较短的域,特别是对于自由表面上或低于自由表面的前进速度问题。作为验证申请,我们计算由移动压力补丁引起的3D非线性波。数值结果表明,目前的方法非常好,与理论相比,对数值示例的合理波浪阻力和基于全拉格朗日和伪拉格朗日方法的其他计算。

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