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A high-order finite-difference linear seakeeping solver tool for calculation of added resistance in waves

机译:一种高阶有限差分线性耐波求解器工具,用于计算波浪中的附加阻力

摘要

During recent years a computational strategy has been developed at the Technical University of Denmark for numerical simulation of water wave problems based on the high-order nite-dierence method, [2],[4]. These methods exhibit a linear scaling of the computational eort as the number of grid points increases. This understanding is being applied to develop a tool for predicting the added resistance (drift force) of ships in ocean waves. We expect that the optimal scaling properties of this solver will allow us to make a convincing demonstration of convergence of the added resistance calculations based on both near-eld and far-eld methods. The solver has been written inside a C++ library known as Overture [3], which can be used to solve partial dierential equations on overlapping grids based on the high-order nite-dierence method. The resulting code is able to solve, in the time domain, the linearised potential ow forward-speed hydrodynamic problems; namely the steady, radiation and diraction problems. The near-eld formulation of the wave drift force has also been implemented, and development is under way to include far-eld methods. This paper presents validation results based on analytical solutions for exact geometries.
机译:近年来,丹麦技术大学开发了一种基于高阶有限差分法[2],[4]的水波数值模拟计算策略。这些方法显示出随着网格点数量的增加,计算过程的线性变化。这种理解正被用于开发一种工具,以预测海浪中船舶的附加阻力(漂移力)。我们期望该求解器的最佳缩放比例性能将使我们能够令人信服地证明基于近场和远场方法的附加电阻计算的收敛性。该求解器已编写在一个名为Overture [3]的C ++库中,该库可用于基于高阶nite-Dierence方法求解重叠网格上的偏微分方程。生成的代码能够在时域内解决线性化的潜在正向水力问题。即稳定,辐射和牵制问题。波漂移力的近场公式也已经实施,并且正在开发包括远场方法的方法。本文介绍了基于精确几何形状的解析解决方案的验证结果。

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