考虑结构部件运动的随时间磁场的数值解

G. Szymahski, A. Turkot
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引用次数: 0

摘要

在许多技术设备中,如磁性系统、开关等,了解随时间变化的场分布对构造者来说是非常重要的。它可以在设备构建之前调查设备在不同操作条件下的行为,并提供有价值的功能见解。通过这种方法,可以确定改进并节省时间和成本。本文概述了用有限差分法计算二维随时间磁场的计算机程序。所有重要的影响,如材料特性的非线性、激励电流密度或电压的任意分布、给定电压下线圈的激励和结构部件的运动都可以考虑在内。运动速度可以是给定的时间函数,也可以通过求解运动方程得到。该程序包含一个预处理器和一个复杂的后处理器,它允许人们计算任何数量作为时间的函数,这可以从矢量势中得到。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical solution of time dependent magnetic fields taking into account the motion of parts of construction
In many technical devices, such as magnetic systems, switches etc., the knowledge of time dependent field distribution is of great importance for the constructor. It makes it possible to investigate the behavior of the device under different operating conditions before it is built and gives valuable insights of the function. By this approach improvements can be determined and the time and cost can be saved. The paper outlines a computer program for the calculation of 2D time dependent magnetic fields using the finite difference method. All significant influences such as the nonlinearity of material characteristics, arbitrary distribution of exciting current densities or voltages, excitation by a coil with given voltage and motion of parts of construction can be taken into account. The velocity of motion may be a given function of time or may be obtained by solving the equation of motion. The program contains both a preprocessor and a sophisticated post-processor, which allows one to calculate any quantity as a function of time, which can be derived from the vector-potential.
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