磁系统数值模拟中角域椭圆方程边值问题

E. Perepelkin, R. Polyakova, A. Kovalenko, P. Sysoev, M. Sadovnikova, A. Tarelkin, I. Yudin
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引用次数: 1

摘要

现代加速器系统和探测器包含复杂几何结构的磁系统。磁系统的设计与优化需要解决一个非线性静磁边值问题。求解边值问题的区域由两个子域组成:真空域和铁磁域。鉴于磁系统的复杂几何构型,铁磁/真空边界可以是非光滑的,即它包含一个角点,其附近的边界是由两个光滑曲线在一个角点上以一定角度相交而形成的。因此,这类问题的解必须用数值方法求得,这就产生了一个问题,即在铁磁角点附近的边值问题解的行为。这项工作表明,如果磁导率函数满足一定要求,则边值问题的相应解将具有有限的梯度。本文给出了角域磁场最大可能增长的上估计。针对这种估计,提出了一种在角域附近压缩微分网格的方法。本文提出了一种考虑边值问题解的行为特征,在边界角点为铁磁的域上构造自适应网格的算法。给出了一个包含角点域的模型问题的计算实例。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Boundary Value Problem for Elliptic Equation in the Corner Domain in the Numerical Simulation of Magnetic Systems
Modern accelerator systems and detectors contain magnetic systems of complex geometrical configuration. Design and optimization of the magnetic systems demands solving a nonlinear boundary-value problem of magnetostatic. The region in which the boundary-value problem is solved, consists of two sub-domains: a domain of vacuum and a domain of ferromagnetic. In view of the complex geometrical configuration of magnetic systems, the ferromagnetic/vacuum boundary can be nonsmooth, i.e. it contains a corner point near of which the boundary is formed by two smooth curves crossed in a corner point at some angle. Thereby, the solution of such a problem has to be found by numerical methods, a question arises about the behavior of the boundary value problem solution around the angular point of the ferromagnetic. This work shows that if the magnetic permeability function meets certain requirements, the corresponding solution of the boundary value problem will have a limited gradient. In this paper, an upper estimate of maximum possible growth of the magnetic field in the corner domain is given. In terms of this estimate, a method of condensing the differential mesh near the corner domain is proposed. This work represents an algorithm of constructing an adaptive mesh in the domain with a boundary corner point of ferromagnetic taking into account the character of behavior of the solution of the boundary value problem. An example of calculating a model problem in the domain containing a corner point is given.
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