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Treating Non-conforming Sensitivity Fields by Mortar Mapping and Vertex Morphing for Multi-disciplinary Shape Optimization

机译:用砂浆映射处理非符合敏感性田间进行多学科形状优化

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This study investigates the sensitivity filtering properties of the Mortar Mapping method and correlates it to the Vertex Morphing method in order to demonstrate the advantages of such aprocedure in the context of shape optimization. It points out the importance of a common design control approach in a Multi-Disciplinary Optimization (MDO) environment. In particular, individual components of MDO have nonmatching interfaces when Fluid-Structure Interaction (FSI) problems are of interest. Since the numerical models of dissimilar discretizations deliver nonconforming sensitivity fields with respect to the design variables defined at their interfaces, the shape optimization of the common surfaces necessitates a third field which unifies the optimization variables and acts as a control field. This approach not only covers this necessity by facilitating the Mortar Mapping method but also reveals that such a procedure acts as a sensitivity filter similar to the Vertex Morphing method without altering the optimality of the solution.
机译:该研究研究了砂浆映射方法的灵敏度滤波特性,并将其与顶点变形方法相关联,以便在形状优化的背景下展示这种Abrocedure的优点。它指出了在多学科优化(MDO)环境中共同设计控制方法的重要性。特别地,当流体结构相互作用(FSI)问题感兴趣时,MDO的各个组件具有非匹配界面。由于异种离散化的数值模型相对于在其接口处定义的设计变量提供不合格的灵敏度场,因此公共表面的形状优化需要第三个字段,其统一优化变量并充当控制场。这种方法不仅涉及迫使迫击炮映射方法,还揭示这种过程作为与顶点变形方法类似的灵敏度滤波器,而不改变解决方案的最优性。

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