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- W2277806970 abstract "Topology optimization is one of the structural optimizations and is a mathematical approach to find the optimal material layout within the given design domain. The objective function appropriately defined reaches its optimum value after optimization under given constraints by using a certain numerical method to solve this optimization problem. It is the most flexible structural optimization compared with other sizing and shape optimizations since it allows appearances of holes in the optimum material layout. Topology optimization has received wide attention and has been implemented through the use of finite element methods based on plenty of optimization techniques, such as homogenization method (HM), solid isotropic material with penalization (SIMP), evolutionary structural optimization (ESO) and level set method (LSM). Based on these popular techniques, topology optimization has been applied to many physical problems and engineering applications such as mechanics, vibration, acoustic, thermal and electromagnetic problems. However, most of the approaches suffered some drawbacks such as checkerboard patterns, intermediate density material and dependency on initial configurations. Moreover, these approaches take much computational time and result in non-smooth boundaries. This dissertation aims at constructing a level set-based topology optimization method using the boundary element method for heat conduction problems to find the optimal material configuration. The boundary element method is used for the heat conduction analyses by meshing the boundary of the material for each iterative step of optimization to avoid the intermediate density problems. This dissertation is organized as follows: Chapter 1 includes a classification of structural optimizations and the development of the popular optimization techniques, and reviews starting from their appearance to working principles, applied problems, and advantages and disadvantages. Chapter 2 introduces the concept of the level set method to represent the property (material or void) of design domain, combining the boundary element method which is used to solve heat con-" @default.
- W2277806970 created "2016-06-24" @default.
- W2277806970 creator A5055018952 @default.
- W2277806970 creator A5084539270 @default.
- W2277806970 date "2015-10-30" @default.
- W2277806970 modified "2023-09-27" @default.
- W2277806970 title "A Study on Topology Optimization for Two-Dimensional Steady-State Heat Conduction Problems Using Boundary Element Method" @default.
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