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Acoustic topology optimization of sound absorbing materials directly from subdivision surfaces with isogeometric boundary element methods

机译:用等几何边界元方法直接从细分表面优化吸声材料的声拓扑

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This paper presents an acoustic topology optimization approach using isogeometric boundary element methods based on subdivision surfaces to optimize the distribution of sound adsorption materials adhering to structural surfaces. The geometries are constructed from triangular control meshes through Loop subdivision scheme, and the associated Box-spline functions that generate limit smooth subdivision surfaces are employed to discretize the acoustic boundary integral equations. The effect of sound-absorbing materials on the acoustic response is characterized by acoustic impedance boundary conditions. The optimization problem is formulated in the framework of Solid Isotropic Material with Penalization methods and the sound absorption coefficients on elements are selected as design variables. The potential of the proposed topology optimization approach for engineering prototyping is illustrated by numerical examples. (C) 2020 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于细分表面的等几何边界元方法的声学拓扑优化方法,以优化粘附在结构表面的吸声材料的分布。通过Loop细分方案从三角形控制网格构造几何形状,并使用生成极限平滑细分表面的关联Box-样条函数离散化声边界积分方程。吸声材料对声响应的影响以声阻抗边界条件为特征。利用罚分法在固体各向同性材料框架内提出了优化问题,并选择了元件的吸声系数作为设计变量。数值示例说明了所提出的用于工程原型的拓扑优化方法的潜力。 (C)2020 Elsevier B.V.保留所有权利。

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