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

机译:用砂浆映射治疗非符合敏感性场和多学科形状优化的顶点形状

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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:本研究探讨的灵敏度,以证明在形状优化的上下文这样aprocedure的优点过滤砂浆映射方法,并将其相关于顶点变形的方法的性质。它指出了一个多学科优化(MDO)环境中常见的设计控制方法的重要性。特别是,MDO的各个组件有不匹配的接口时,流固耦合(FSI)问题的兴趣。由于异种离散化的数字模型提供不合格灵敏度字段相对于在它们的界面所限定的设计变量,公共表面的形状优化必要它统一优化变量,并作为一个控制字段的第三字段。这种方法不仅通过促进砂浆映射方法涵盖这种必要性也揭示了这样的程序充当类似于顶点变形的方法,而不改变该溶液的最优灵敏度滤波器。

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