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Multi-Objective Topology Optimization of Heat Conduction and Linear Elastostatic using Weighted Global Criteria Method

Authors :
Klemens Rother
Kristin Paetzold
Martin Denk
Source :
Proceedings of the 31st Symposium Design for X (DFX2020).
Publication Year :
2020
Publisher :
The Design Society, 2020.

Abstract

Multi-Objective Topology Optimization is a tool for finding low-weight solutions using a discretized geometry of several objective functions. In this contribution, the coupling of heat conduction and elastostatics is covered using the global criteria method. For the comparison of the different objectives and objective distributions typically the single target optimized solutions are selected as normalization criteria [1], [2]. The use of these optimized results requires additional calculation effort, so that this work uses the objective distribution of full material properties instead. For the normalization, the objective distributions will be standardized, and quantile normalized. The normalization strategies are compared to each other by the number of iterations and the resulting objective value.

Details

Database :
OpenAIRE
Journal :
Proceedings of the 31st Symposium Design for X (DFX2020)
Accession number :
edsair.doi...........92b4dcfc79ecd864cbb16cac5dc055f9
Full Text :
https://doi.org/10.35199/dfx2020.10