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Concurrent aerostructural topology optimization of a wing box

机译:机翼箱的同时航空结构拓扑优化

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摘要

This paper presents a novel multidisciplinary framework for performing shape and topology optimization of a flexible wing structure. The topology optimization is integrated into a multidisciplinary algorithm in which both the aerodynamic shape and the structural topology are optimized concurrently using gradient-based optimization. The optimization results were compared with the results of a sequential procedure in which the aerodynamic shape was optimized separately and then used as a fixed design feature in a subsequent structural optimization. The results show that the concurrent approach offers a significant advantage, as this design achieved 42% less drag than the sequentially optimized wing.
机译:本文提出了一种用于执行柔性机翼结构的形状和拓扑优化的新型多学科框架。拓扑优化被集成到一个多学科算法中,其中使用基于梯度的优化同时优化了空气动力学形状和结构拓扑。将优化结果与顺序过程的结果进行比较,在顺序过程中,分别对空气动力学形状进行了优化,然后在后续的结构优化中将其用作固定的设计特征。结果表明并发方法具有显着优势,因为该设计比起顺序优化的机翼减少了42%的阻力。

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