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Geometric Modelling and Deformation for Shape Optimization of Ship Hulls and Appendages

机译:船体及附件形状优化的几何建模和变形

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The precise control of geometric models plays an important role in many domains such as computer-aided geometric design and numerical simulation. For shape optimization in computational fluid dynamics (CFD), the choice of control parameters and the way to deform a shape are critical. In this article, we describe a skeleton-based representation of shapes adapted for CFD simulation and automatic shape optimization. Instead of using the control points of a classic B-spline representation, we control the geometry in terms of architectural parameters. We assure valid shapes with a strong shape consistency control. Deformations of the geometry are performed by solving optimization problems on the skeleton. Finally, a surface reconstruction method is proposed to evaluate the shape's performances with CFD solvers. We illustrate the approach on two problems: the foil of an AC45 racing sail boat and the bulbous bow of a fishing trawler. For each case, we obtained a set of shape deformations and then we evaluated and analyzed the performances of the different shapes with CFD computations.
机译:几何模型的精确控制在许多领域(例如计算机辅助几何设计和数值模拟)中都发挥着重要作用。对于计算流体动力学(CFD)中的形状优化,控制参数的选择和使形状变形的方法至关重要。在本文中,我们描述了适用于CFD模拟和自动形状优化的基于骨架的形状表示。代替使用经典的B样条曲线表示的控制点,我们根据建筑参数来控制几何形状。我们通过有效的形状一致性控制来确保有效的形状。通过解决骨架上的优化问题来执行几何形状的变形。最后,提出了一种表面重构方法,用CFD求解器评估形状的性能。我们说明了在两个问题上的方法:一架AC45竞赛帆船的金属箔和一个拖网渔船的鳞茎。对于每种情况,我们获得了一组形状变形,然后使用CFD计算评估和分析了不同形状的性能。

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