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Filters in topology optimization based on Helmholtz‐type differential equations

International Journal for Numerical Methods in Engineering · 2010 · Vol. 86(6) · pp. 765–781
Boyan S. LazarovOle Sigmund

Abstract

Abstract The aim of this paper is to apply a Helmholtz‐type partial differential equation as an alternative to standard density filtering in topology optimization problems. Previously, this approach has been successfully applied as a sensitivity filter. The usual filtering techniques in topology optimization require information about the neighbor cells, which is difficult to obtain for fine meshes or complex domains and geometries. The complexity of the problem increases further in parallel computing, when the design domain is decomposed into multiple non‐overlapping partitions. Obtaining information from the neighbor subdomains is an expensive operation. The proposed filter technique requires only mesh information necessary for the finite element discretization of the problem. The main idea is to define the filtered variable implicitly as a solution of a Helmholtz‐type differential equation with homogeneous Neumann boundary conditions. The properties of the filter are demonstrated for various 2D and 3D topology optimization problems in linear elasticity, solved on serial and parallel computers. Copyright © 2010 John Wiley & Sons, Ltd.

Topology Optimization in EngineeringComposite Structure Analysis and OptimizationAdvanced Multi-Objective Optimization AlgorithmsTopology optimizationTopology (electrical circuits)Type (biology)Helmholtz free energyMathematicsApplied mathematicsMathematical analysisComputer scienceMathematical optimizationFinite element method
Citations
1,022
FWCI
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References
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Computer Methods in Applied Mechanics and Engineering · 2001 · 1,335 citations
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International Journal for Numerical Methods in Engineering · 2001 · 1,151 citations
Gmsh: A 3‐D finite element mesh generator with built‐in pre‐ and post‐processing facilities
International Journal for Numerical Methods in Engineering · 2009 · 7,404 citations
Achieving minimum length scale in topology optimization using nodal design variables and projection functions
International Journal for Numerical Methods in Engineering · 2004 · 1,247 citations
GRADIENT ENHANCED DAMAGE FOR QUASI-BRITTLE MATERIALS
International Journal for Numerical Methods in Engineering · 1996 · 1,414 citations
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