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Fully nonlinear and linear ship waves modelling using the potential numerical towing tank and NURBS

机译:使用潜在的数值拖船和NURBS进行完全非线性和线性船浪建模

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摘要

Waves induced by the ship advance in the calm water are simulated in a potential Numerical Towing Tank based on both the fully nonlinear approach and the linear theory. In the linear theory, a modified Green function, which was derived based on linearized free surface boundary conditions and the image method is used as a fundamental solution in the boundary integral equation. High-order boundary integral equation is used to solve the boundary value problem with Non-Uniform Rational B-Spline (NURBS) basis function. On the other hand, the time domain simulation of the fully nonlinear free surface flow due to the steady flow past over a ship model is conducted based on the Mixed Eulerian-Lagrangian approach. NURBS surface is used to describe the ship hull and the fully nonlinear free surface evolution. The numerical solutions are compared with a prior experimental study to verify both numerical models. In addition, the effect of nonlinear terms in fully nonlinear free surface boundary conditions is investigated. The wave making resistance as an essential criterion is compared with the experimental data and some numerical efforts to investigate the accuracy of both models. The capability of the modified Green function is also examined to simulate the ship waves in rectangular channels.
机译:基于完全非线性方法和线性理论,在潜在的数字拖船中模拟了船在平静水中前进引起的波。在线性理论中,基于线性自由表面边界条件和图像方法导出的改进格林函数被用作边界积分方程的基本解。使用高阶边界积分方程求解具有非均匀有理B样条(NURBS)基函数的边值问题。另一方面,基于混合欧拉-拉格朗日方法进行了完全非线性的自由表面流的时域模拟,该自由表面流是由船模型上的稳定流经过的。 NURBS表面用于描述船体和完全非线性的自由表面演变。将数值解与先前的实验研究进行比较,以验证两个数值模型。此外,研究了非线性项在完全非线性自由表面边界条件下的影响。将制波阻力作为基本标准与实验数据进行了比较,并通过一些数值努力来研究这两种模型的准确性。还检查了修改的Green函数的功能,以模拟矩形通道中的船浪。

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