In electromagnetic analysis, the finite element and boundary element methods jointly known as 'FEM-BEM coupling' is applied for numerically solving levitation problem based on eddy current. The main focus behind this coupled analysis method is to determine the dynamic characteristic of the levitating body in the presence of a magnetic field. An innovative 3D structure is developed that couples Lagrangian description and BEM-FEM coupling method for this purpose. The coupling methodology is based on the boundary conditions on the common boundaries between FEM and BEM sub-domains. Subsequent coding has been developed to simulate the problem in the MATLAB environment. An example similar to TEAM (Testing Electromagnetic Analysis Methods) workshop problem 28 has been used to study the efficiency of code for computationally inexpensive analysis.
翻译:在电磁分析中,根据电磁流,在数字上解决悬浮问题时,使用称为“FEM-BEM组合”的有限元素和边界元素方法。这一结合分析方法的主要重点是确定在磁场面前悬浮体的动态特征。开发了一个创新的3D结构,即两边Lagrangian描述和BEM-FEM组合方法。这种组合方法基于FEM和BEM次界的边界条件。随后开发了编码,以模拟MATLAB环境中的悬浮问题。一个类似于TEAM(测试电磁分析方法)讲习班问题28的例子被用来研究计算成本低分析的编码效率。