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首页> 外文期刊>International journal of applied electromagnetics and mechanics >Magnetic vector potential and magnetic field intensity due to a finite current carrying cylinder considering a variable current density along its axial dimension
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Magnetic vector potential and magnetic field intensity due to a finite current carrying cylinder considering a variable current density along its axial dimension

机译:考虑到沿其轴向尺寸的可变电流密度,由有限载流圆柱体引起的磁矢量势和磁场强度

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With the aim of introducing a computationally efficient solution for problems such as the fast computation of magnetic field magnitudes and forces in coils and windings, this paper presents analytical expressions for the magnetic vector potential and magnetic field intensity in radial and axial directions due to a finite cylinder with infinitesimal wall thickness carrying a linearly varying current density between the values at the lower and upper ends. All expressions have been derived in terms of complete elliptic integrals of first, second and third kind, whose evaluation is achieved by means of very fast algorithms. The formulas presented make possible the fast computation of magnetic field at any point in space at reduced computational cost. The formulation is not only specially suited for modeling the current distribution in foil windings of power transformers but also for representing the magnetization of transformer core legs. The present method is also useful for efficient modeling of cylinders with constant current density since it is a generalization of this especial case. Finally, an example is presented where the results achieved using the proposed method are compared with those obtained using the finite element method showing a very good agreement between them.
机译:为了介绍一种计算有效的解决方案,例如快速计算线圈和绕组中的磁场强度和力的问题,本文提出了由于有限的径向和轴向方向的磁矢量势和磁场强度的解析表达式具有无限小壁厚的圆柱体,其上下两端的值之间线性变化的电流密度。所有表达式都是根据第一类,第二类和第三类的完整椭圆积分得出的,其求值是通过非常快速的算法实现的。提出的公式使在空间中任何一点的磁场快速计算成为可能,同时降低了计算成本。该公式不仅特别适用于对电力变压器的箔绕组中的电流分布进行建模,而且还适合表示变压器铁心臂的磁化强度。本方法对于恒定电流密度的气缸的有效建模也是有用的,因为它是这种特殊情况的概括。最后,给出一个例子,将使用所提出的方法获得的结果与使用有限元方法获得的结果进行比较,表明它们之间的一致性很好。

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