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Dvimačių struktūrų irimo modeliavimas naudojant prisitaikančiuosius baigtinių elementų tinklus / Simulation of 2D structures facture using adaptive finite element meshesStupak, Eugeniuš 11 November 2004 (has links)
In this work the h-adaptive FE strategy for solving 2D problems of fracture mechanics is developed and applicated. The stress indicator employed in the adaptive analysis is able to capture high gradients of stress in the vicinity of the defect. Performance of this technique is checked against the defects of different geometry. Finally the above-mentioned technique exposes its suitability for solving fracture problems.
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Dvimačių struktūrų irimo modeliavimas naudojant prisitaikančiuosius baigtinių elementų tinklus / Simulation of 2D structures fracture using adaptive finite element meshesStupak, Eugeniuš 12 November 2004 (has links)
This summary of doctoral dissertation deal with modeling of fracture in various 2D structures. The standard experimental specimens with defects, which are used in evaluation of fracture parameters, are investigated numerically in this work. The original FE generation technique based on the adaptive approach is developed for the 2D structures with defects. The stress indicator employed in the adaptive analysis is able to capture high gradients of stress in the vicinity of the defect. Performance of this technique is checked against the defects of different geometry. Finally the above-mentioned technique exposes its suitability for solving fracture problems.
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Behandlung gekrümmter Oberflächen in einem 3D-FEM-Programm für ParallelrechnerPester, M. 30 October 1998 (has links) (PDF)
The paper presents a method for generating curved
surfaces of 3D finite element meshes by mesh
refinement starting with a very coarse grid.
This is useful for parallel implementations where
the finest meshes should be computed and not read from
large files. The paper deals with simple geometries
as sphere, cylinder, cone. But the method may be
extended to more complicated geometries.
(with 45 figures)
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Behandlung gekrümmter Oberflächen in einem 3D-FEM-Programm für ParallelrechnerPester, M. 30 October 1998 (has links)
The paper presents a method for generating curved
surfaces of 3D finite element meshes by mesh
refinement starting with a very coarse grid.
This is useful for parallel implementations where
the finest meshes should be computed and not read from
large files. The paper deals with simple geometries
as sphere, cylinder, cone. But the method may be
extended to more complicated geometries.
(with 45 figures)
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