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Insulation analyses for vacuum interrupter using multigrid and finite element method

机译:真空灭弧室绝缘分析的多重网格和有限元方法

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High precision domain discretization and field solution efficiency is the barrier of electric field numerical simulation for multi-dielectrics and complex structure by finite element method (FEM). In this paper, by applying the adaptive control strategy in the transformation between coarse grid and fine grid, an adaptive multigrid-finite element method (AMG-FEM) based on non-structure grid is presented. For simulating the multi-dielectrics and complex electric filed, domain decomposition method (DDM) is employed. And the feasibility and validity of the proposed AMG-FEM/DDM with higher precision and efficiency is verified by calculating the electric field of a vacuum interrupter (VI). And the electric field distributions of the VI with different opening strokes have been figured out dynamically.
机译:高精度域离散化和现场求解效率是通过有限元方法(FEM)对多介质和复杂结构进行电场数值模拟的障碍。通过将自适应控制策略应用于粗网格和细网格之间的转换,提出了一种基于非结构网格的自适应多网格有限元方法(AMG-FEM)。为了模拟多介质和复杂电场,采用域分解法(DDM)。通过计算真空灭弧室(VI)的电场,验证了所提出的AMG-FEM / DDM具有较高的精度和效率的可行性和有效性。动态地求出了具有不同打开行程的VI的电场分布。

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