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Goal-oriented adaptivity in complementary geometric formulations for electrostatics

机译:静电互补几何配方中的面向目标的适应性

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An innovative approach has been recently proposed for the voltage breakdown prediction in high voltage systems, insulated by large vacuum gaps. This approach is based on complementary geometric formulations for electrostatics coupled to the analytical solution of the equations of motion for charged particles. In this paper a goal-oriented local mesh refinement technique is introduced, which allows to increase the rate of convergence of the solution, enabling an effective voltage breakdown prediction also in large scale systems with complex geometries.
机译:最近已经提出了一种创新的方法,用于高压系统中的电压击穿预测,通过大型真空间隙绝缘。该方法基于互补的几何配方,用于耦合到带电粒子的运动方程的分析溶液的静电。在本文中,引入了一种面向目标的本地网格细化技术,其允许提高解决方案的收敛速率,该速率也能够在具有复杂几何形状的大型系统中实现有效的电压击穿预测。

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