脉冲电力设施中粗导体电路的阻抗及瞬态特性

B. Fridman, R. Enikeev
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引用次数: 3

摘要

在小的集肤深度处,导体中的电磁场可以用边界层法来定义。推导出的渐近解使得确定大质量导体上一系列电压降的扩展成为可能。在这个展开式中,第一项描述了具有无限电导率的极限解,对应于外部磁场的自感电动势(EMF)或大质量导体的外部电感上的电压降。一阶近似的渐近修正对应于在导体表面阻抗边界条件下计算的电压降的分数。二阶修正考虑了导体表面的曲率和外磁场的不均匀性,并与导体中的电流直接随时间变化,即在通常电阻上的电压降的情况下。这种近似建立了大质量导体上电流与电压降的关系,可以将其纳入基尔霍夫方程,用于分析和计算大质量导体电路中的瞬态。本文的目的是考虑电路中瞬态的特性,测量大质量导体参数的方法,以及在时域中利用大质量导体上电压降的渐近表示进行瞬态计算的方法。
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Massive conductor impedance and peculiarities of transients in electrical circuits with massive conductors of pulsed power facilities
At a small skin depth the electromagnetic field in conductors can be defined by the boundary layer method. The derived asymptotic solution makes it possible to determine the expansion in a series of the voltage drop across massive conductors. In this expansion the first term describes the limiting solution with infinite conductivity and corresponds to self-induction electro-motive force (EMF) of the external magnetic field or voltage drop across external inductance of massive conductors. Asymptotic correction of the first-order approximation corresponds to the fraction of the voltage drop calculated under the impedance boundary conditions on the surface of the conductors. The second-order correction takes into account the curvature of the conductor surface and inhomogeneity of the external magnetic field and varies in time directly as does current in the conductors, i.e. as in the case with voltage drop across a usual resistor. Such approximation establishes the relation between current and voltage drop on massive conductors, which can be included into the Kirchhoff’s equations for analysis and calculation of the transients in the circuits with massive conductors. The purpose of the paper is consideration of the peculiarities of the transients in electrical circuits, the methods of measurement of the massive conductor parameters, as well as the methods of the transients calculations in the time domain, which use the asymptotic representation of the voltage drop on massive conductors.
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