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Calculation of AC Resistance for Stranded Single-Core Power Cable Conductors

机译:单芯绞线电力电缆导体的交流电阻计算

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The ac resistance of power cable conductors is an important parameter for accurately estimating the ampacity of power cable and optimally designing power cable. Although international standard IEC-60287 has recommended a simplified formula for calculating the ac resistance, it is not capable of taking into account the effect of stranded conductor parameters, such as the direction and the length of lay, on the ac resistance because the stranded conductor is simplified as a solid conductor. In this paper, the method which has been used for analyzing the ac resistance of aluminum-conductor steel-reinforced overhead power lines is applied to single-core power cable conductors. Basically, the magnetic fluxes around each layer of the stranded wires are divided into circular magnetic fluxes and longitudinal magnetic fluxes, and thus each layer is equivalent to a circuit with resistor and inductor in series. Then, the ac resistance of single-core power cable conductors is calculated from the paralleled equivalent circuits representing all layers. A case study of 800 mm single-core power cable is given to investigate the effect of the parameters of the stranded wires on the ac resistance. Results show that the ac resistance for bidirectional stranding of copper wires is a few percentage points higher than that for unidirectional stranding. Such difference will be significant in the optimization of cable design as even a slight decrease in ac resistance can save considerable copper in large-scale industrial application.
机译:电力电缆导体的交流电阻是准确估算电力电缆载流量和优化设计电力电缆的重要参数。尽管国际标准IEC-60287建议使用简化的公式来计算交流电阻,但是由于绞合导体的存在,它无法考虑绞合导体参数(例如方向和长度)对交流电阻的影响简化为实心导体。在本文中,将用于分析铝导线钢增强架空电力线交流电阻的方法应用于单芯电力电缆导体。基本上,围绕多股绞合线的每一层的磁通量被分为圆形磁通量和纵向磁通量,因此每一层等效于电阻器和电感器串联的电路。然后,从代表所有层的并联等效电路中计算出单芯电力电缆导体的交流电阻。以800mm单芯电力电缆为例,研究了绞线参数对交流电阻的影响。结果表明,铜线双向绞合的交流电阻比单向绞合的交流电阻高几个百分点。这种差异对于优化电缆设计非常重要,因为即使交流电阻稍有下降,在大规模工业应用中也可以节省大量的铜。

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