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Modified Gradient-Free Proportional Topology Optimization for Heat Conduction Problem
In this study, the optimization of heat conduction is addressed by means of the gradient-free proportional topology optimization (PTO) algorithm. A pseudo-density field is introduced, and the thermal conductivity is determined by considering the solid isotropic material with penalization (SIMP) method. The numerical solutions of the heat conduction equation are obtained by employing the conventional finite element method. With the original PTO algorithm, the density of each element is considered constant, and the performance can be degraded by several numerical instabilities, e.g., one-node connected hinges and wriggle boundaries. In this study, a modified PTO algorithm is proposed to allow the interpolation of the density with discrete nodal values and thus remove the drawbacks of the original PTO algorithm mentioned above. The advantageous features of the modified PTO algorithm are highlighted through two numerical examples.
Modified Gradient-Free Proportional Topology Optimization for Heat Conduction Problem
In this study, the optimization of heat conduction is addressed by means of the gradient-free proportional topology optimization (PTO) algorithm. A pseudo-density field is introduced, and the thermal conductivity is determined by considering the solid isotropic material with penalization (SIMP) method. The numerical solutions of the heat conduction equation are obtained by employing the conventional finite element method. With the original PTO algorithm, the density of each element is considered constant, and the performance can be degraded by several numerical instabilities, e.g., one-node connected hinges and wriggle boundaries. In this study, a modified PTO algorithm is proposed to allow the interpolation of the density with discrete nodal values and thus remove the drawbacks of the original PTO algorithm mentioned above. The advantageous features of the modified PTO algorithm are highlighted through two numerical examples.
Modified Gradient-Free Proportional Topology Optimization for Heat Conduction Problem
Lecture Notes in Civil Engineering
Cuong, Le Thanh (editor) / Gandomi, Amir H. (editor) / Abualigah, Laith (editor) / Khatir, Samir (editor) / Ly, Youpheng (author) / Vo, Duy (author) / Rungamornrat, Jaroon (author)
International Conference on Structural Health Monitoring and Engineering Structures ; 2023 ; Da Nang city, Vietnam
Recent Advances in Structural Health Monitoring and Engineering Structures ; Chapter: 4 ; 35-44
2024-06-02
10 pages
Article/Chapter (Book)
Electronic Resource
English
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