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Optimization of Finite Element Grids Using Shape Sensitivity Analysis in Terms of Nodal Positions
Kang, Koo Tae and Byung Man Kwak
Finite Elements in Analysis and Design, Wiley, Vol 26, pp.1-19, 1997
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MESHING RESEARCH CORNER
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Korea Advanced Institute of Science and Technology, 3 73-1, Kusong-
Dong, Yusong-Ku, Tae]on 305-701, South Korea
Abstract
An approach of finite element grid optimization is proposed as an
application of the shape design sensitivity analysis. Change of the
mesh is described by design velocity fields that can be simply obtained
by a piecewise linear interpolation from the nodal positions. For a
given topology of finite elements mesh, the strain energy is maximized
for static problems and the eigenvalues are minimized for eigenvalue
problems with respect to the nodal positions. Numerical examples for
the Timoshenko beams and the Mindlin plates are obtained and the
proposed approach is shown to be a feasible method that can be used for
shape or configuration designs where large distortion of meshes is
often involved.
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