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首页> 外文期刊>Journal of Computing and Information Science in Engineering >Structural Design Space Exploration Using Principal Component Analysis
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Structural Design Space Exploration Using Principal Component Analysis

机译:使用主成分分析的结构设计空间探索

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摘要

Design space exploration (DSE) is the process whereby a designer seeks to understand some results across a set of design variations. Structural DSE of turbomachinery compressor blades is often challenging because the large number of design variables make it difficult to learn the effect that each variable has upon the stress contours. Principal component analysis (PCA) of the stress contours is used as a way to understand how the stress contours change over the design space. Two methods are introduced to address the challenge of understanding how the stress changes over a large number of variables. First, a two-point correlation is applied to relate the design variables to the scores of each principal component. Second, a coupling of the stress and coordinate location of each node in PCA is developed which also indicates how the stress variations relate to geometric variations. These provide insight to how design variables influence the stress. It is shown how these methods use PCA as DSE tools to better explore the structural design space of compressor blades. Better DSE can improve compressor blades and the computational cost needed for their design.
机译:设计空间探索(DSE)是设计者在一系列设计变化中寻求了解一些结果的过程。涡轮机械压缩机刀片的结构DSE通常是具有挑战性的,因为大量的设计变量使得难以学习每个变量对应力轮廓上的效果。应力轮廓的主要成分分析(PCA)用作理解压力轮廓如何改变设计空间的方法。引入了两种方法来解决理解压力如何在大量变量上变化的挑战。首先,应用两点相关性以将设计变量与每个主组件的分数相关联。其次,开发了PCA中每个节点的应力和坐标位置的耦合,其还指示应力变化如何与几何变化有意义。这些提供了洞察设计变量如何影响压力。显示这些方法如何使用PCA作为DSE工具,以更好地探索压缩机刀片的结构设计空间。更好的DSE可以改善压缩机刀片和其设计所需的计算成本。

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