Parameter-Free Shape Optimization: Various Shape Updates for Engineering Applications

被引:6
|
作者
Radtke, Lars [1 ]
Bletsos, Georgios [2 ]
Kuehl, Niklas [2 ]
Suchan, Tim [3 ]
Rung, Thomas [2 ]
Duester, Alexander [1 ]
Welker, Kathrin [4 ]
机构
[1] Hamburg Univ Technol, Inst Ship Struct Design & Anal M 10, Numer Struct Anal Applicat Ship Technol, D-21073 Hamburg, Germany
[2] Hamburg Univ Technol, Inst Fluid Dynam & Ship Theory M 8, D-21073 Hamburg, Germany
[3] Helmut Schmidt Univ, Fac Mech & Civil Engn, D-22008 Hamburg, Germany
[4] Tech Univ Bergakad Freiberg, Inst Numer Math & Optimizat, D-09599 Freiberg, Germany
关键词
shape optimization; shape gradient; steepest descent; continuous adjoint method; computational fluid dynamics; CONTINUOUS ADJOINT; HYDRODYNAMIC OPTIMIZATION; SOBOLEV METRICS; MASS-TRANSFER; SPACES; DEFORMATION; FLOW; IMPLEMENTATION; GEOMETRIES; ALGORITHM;
D O I
10.3390/aerospace10090751
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In the last decade, parameter-free approaches to shape optimization problems have matured to a state where they provide a versatile tool for complex engineering applications. However, sensitivity distributions obtained from shape derivatives in this context cannot be directly used as a shape update in gradient-based optimization strategies. Instead, an auxiliary problem has to be solved to obtain a gradient from the sensitivity. While several choices for these auxiliary problems were investigated mathematically, the complexity of the concepts behind their derivation has often prevented their application in engineering. This work aims to explain several approaches to compute shape updates from an engineering perspective. We introduce the corresponding auxiliary problems in a formal way and compare the choices by means of numerical examples. To this end, a test case and exemplary applications from computational fluid dynamics are considered.
引用
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页数:39
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