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The current rating of single-conductor, lead-covered, low-tension cables on single-phase alternating-current circuits

机译:单相交流电路上单芯铅包低压电缆的额定电流

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Single-core cables in single-phase systems are bonded to annul the high voltages that would otherwise exist between the lead sheaths when the latter are open-circuited, but bonding brings into being induced currents which may reach high percentages of the conductor current and reduce the safe current-carrying capacity. In this paper some theoretical considerations of the losses of energy occurring in single-core cables on alternating-current circuits are given, and their effect on the line characteristics are noted. In the first portion of the paper the results of measurements carried out on a single-phase system in air to determine the loadings for a given temperature-rise are tabulated and represented graphically. In a series of experiments the following factors were varied one at a time:- (1) Current flowing in the system. (2) Spacing of conductors in an iron-free neighbourhood. (3) Spacing of conductors with iron interposed. (4) Cable cross-section. It is noted that, taking into account the mutual heating effect of two cables in proximity and the heating due to alternating currents flowing in the system, there is an arrangement of the cables in a horizontal plane which gives the maximum value of permissible current loading.
机译:连接单相系统中的单芯电缆以消除导线护套开路时原本会存在于导线护套之间的高压,但这种结合会产生感应电流,感应电流可能会达到导体电流的高百分比并降低安全的载流量。本文给出了交流电路上单芯电缆中发生的能量损耗的一些理论考虑,并指出了它们对线路特性的影响。在本文的第一部分中,将在空气中的单相系统上进行测量以确定给定温度升高的负载的测量结果制成表格并以图形方式表示。在一系列实验中,以下因素一次变化一个:-(1)系统中流动的电流。 (2)在无铁社区中的导体间距。 (3)导体之间插入铁的间距。 (4)电缆横截面。应当指出的是,考虑到附近的两根电缆的相互加热作用以及由于交流电在系统中流动而产生的热量,因此将电缆布置在水平面内,该水平面会提供允许的最大电流负载值。

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