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Element refinement methods and systems in arbitrary lagrangian-eulerian (ALE) based finite element analysis
Element refinement methods and systems in arbitrary lagrangian-eulerian (ALE) based finite element analysis
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机译:基于任意拉格朗日-欧拉(ALE)的有限元分析方法和系统
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摘要
Systems and methods for refining ALE elements in a time-marching simulation are disclosed. A FEA model representing a physical domain is defined and used in a time-marching simulation that simulates physical phenomena of the physical domain. Certain ones of the ALE elements are refined upon detecting a user-defined triggering condition. Each of said certain ones of the ALE elements is refined into a number of child elements. When an ALE element contains more than one material, volume fractions representing respective materials are calculated in each of the child elements right after each refinement. At each advection phase, each donor maps its flux to one or more receptors. When a donor maps its flux to multiple receptors, each receptor calculates its own share of the flux from the donor. When the donor contains more than one material, each receptor must account for such situation.
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