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Fixed-mesh curvature-parameterized shape optimization of an acoustic horn

机译:固定号角的固定网格曲率参数化形状优化

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We suggest a boundary shape optimization approach in which the optimization is carried out on the coefficients in a boundary parameterization based on a local, discrete curvature. A fixed mesh is used to numerically solve the governing equations, in which the geometry is represented through inhomogeneous coefficients, similarly as done in the material distribution approach to topology optimization. The method is applied to the optimization of an acoustic horn in two space dimensions. Numerical experiments show that this method can calculate the horn’s transmission properties as accurately as a traditional, body-fitted approach. Moreover, the use of a fixed mesh allows the optimization to create shapes that would be difficult to handle with a traditional approach that uses deformations of a body-fitted mesh. The parameterization inherently promotes smooth designs without unduly restriction of the design flexibility. The optimized, smooth horns consistently show favorable transmission properties.
机译:我们建议一种边界形状优化方法,其中基于局部离散曲率对边界参数化中的系数进行优化。固定网格用于数值求解控制方程,其中,几何图形通过不均匀系数表示,类似于拓扑优化的材料分布方法。该方法被应用于二维空间的声喇叭的优化。数值实验表明,这种方法可以像传统的人体拟合方法一样准确地计算出号角的传递特性。此外,固定网格的使用允许优化来创建形状,而这些形状将难以使用使用贴身网格的变形的传统方法处理。参数化从本质上促进了平滑设计,而又不过度限制设计灵活性。经过优化的光滑号角始终显示出良好的传输性能。

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