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A boundary element and level set based bi-directional evolutionary structural optimisation with a volume constraint

机译:基于边界元和水平集的双向演化结构优化,具有体积约束

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摘要

A new topology optimisation algorithm is implemented and presented for compliance minimisation of continuum structures using a volume preserving mechanism which effectively handles a volume constraint. The volume preserving mechanism is based on a unique combination of the level set method and a boundary element based bi-directional evolutionary structural optimisation approach using a bisectioning algorithm. The evolving structural geometry is implicitly represented with the level sets, efficiently handling complex topological shape changes, including holes merging with each other and with the boundary. Numerical results for two-dimensional linear elasticity problems suggest that the proposed adaptation provides smooth convergence of the objective function and a more robust, smoother geometrical description of the optimal design. Moreover, this new implementation allows for efficient material re-distribution within the design domain such that the objective function is minimised at constant volume. The proposed volume preserving mechanism can be easily extended to three-dimensional space.
机译:实现并提出了一种新的拓扑优化算法,用于使用有效处理体积约束的体积保留机制来最小化连续体结构的合规性。体积保留机制是基于水平集方法和使用对分算法的基于边界元素的双向进化结构优化方法的独特组合。不断演变的结构几何形状通过级别集隐式表示,可以有效地处理复杂的拓扑形状变化,包括彼此合并并与边界合并的孔。二维线性弹性问题的数值结果表明,所提出的自适应方法可以使目标函数平滑收敛,并为最佳设计提供更鲁棒,更平滑的几何描述。此外,这种新的实现方式允许在设计域内进行有效的材料重新分配,从而使目标函数在恒定体积下最小化。所提出的体积保持机构可以容易地扩展到三维空间。

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