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A generalized DCT compression based density method for topology optimization of 2D and 3D continua

机译:用于2D和3D连续体拓扑优化的基于DCT压缩的广义密度方法

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In this paper, a novel topology optimization method based on discrete cosine transform (DCT) and density interpolation is proposed for layout designs of 2D and 3D continua. As one of the most frequently used transforms in digital image compression, the DCT may significantly reduce the number of design variables in density-based topology optimization, and can hereby improve the efficiency of solving the topology optimization problems to a great extent. This way the DCT compression based density method (DCDM) could be quite attractive in the topology optimization of large-scale engineering structures where a huge number of design variables may present. Effectiveness and efficiency of the proposed method is demonstrated with several 2D and 3D examples including both mechanical and heat conduction problems. Through these examples, some interesting features of DCDM are revealed and discussed. Since high frequency components are inherently filtered in DCDM, there is no need to introduce additional density filter or sensitivity filter in the present model. It is shown by numerical examples that there is no sharp corners present in the final optimized layout obtained by DCDM, which is beneficial when considering the stress of structures. (C) 2018 Elsevier B.V. All rights reserved.
机译:本文提出了一种基于离散余弦变换(DCT)和密度插值的拓扑优化方法,用于2D和3D连续体的布局设计。作为数字图像压缩中最常用的变换之一,DCT可以显着减少基于密度的拓扑优化中的设计变量的数量,从而可以在很大程度上提高解决拓扑优化问题的效率。这样,基于DCT压缩的密度方法(DCDM)在可能存在大量设计变量的大规模工程结构的拓扑优化中可能非常有吸引力。通过几个2D和3D实例(包括机械和导热问题)证明了该方法的有效性和效率。通过这些示例,揭示并讨论了DCDM的一些有趣功能。由于在DCDM中固有地对高频分量进行了滤波,因此在本模型中无需引入其他的密度滤波器或灵敏度滤波器。数值示例表明,在DCDM获得的最终优化布局中不存在尖角,这在考虑结构应力时是有益的。 (C)2018 Elsevier B.V.保留所有权利。

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