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Isogeometric shape optimization of shells using semi-analytical sensitivity analysis and sensitivity weighting

机译:使用半分析灵敏度分析和灵敏度加权的壳体等几何形状优化

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We present isogeometric shape optimization for shell structures applying sensitivity weighting and semi-analytical analysis. We use a rotation-free shell formulation and all involved geometry models, i.e., initial design, analysis model, optimization model, and final design use the same geometric basis, in particular NURBS. A sensitivity weighting scheme is presented which eliminates certain effects of the chosen discretization on the design update. A multilevel design approach is applied such that the design space can be chosen independently from the analysis space. The use of semi-analytical sensitivities allows having different polynomial degrees for design and analysis model. Different numerical examples are performed which confirm the applicability of the proposed method. Furthermore, a shape optimization example with an exact solution is presented which can serve as general benchmark for shape optimization methods.
机译:我们介绍了应用灵敏度加权和半分析的壳体结构的等几何形状优化。我们使用无旋转的壳体公式,所有涉及的几何模型,即初始设计,分析模型,优化模型和最终设计都使用相同的几何基础,尤其是NURBS。提出了一种灵敏度加权方案,该方案消除了所选离散化对设计更新的某些影响。应用了多级设计方法,以便可以独立于分析空间选择设计空间。半分析灵敏度的使用允许设计和分析模型具有不同的多项式度。执行了不同的数值示例,证实了所提出方法的适用性。此外,给出了具有精确解决方案的形状优化示例,可以用作形状优化方法的通用基准。

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