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Thermal considerations in splicing of distribution class cables

机译:配接类电缆的热学考虑

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In the design of splices for distribution class cables, primary consideration has been given to adequately replacing the electrical insulation material removed during the splicing operation and to provide control of the electric field stress distribution. Failure experienced in cables operating near their ampacity limits has indicated that high temperatures in the splice region have been a major contributor to the failure mechanisms. For highest reliability of splices in distribution class buried cabled, the splice design, splice materials and splicing practice must provide a structure having heat dissipating capabilities at least as good as the original cable. A parametric computer calculation has been made which predicts an optimum outer diameter of splice for maximum heat dissipation. This diameter is a strong function of the thermal resistivity of the insulation material. Results of laboratory tests performed on splices insulated with standard 500 thermal ohm-cm rubber tape and with rubber tapes having resistivities of 410 and 300 thermal ohm-cm are presented.
机译:在配电级电缆的接头设计中,主要考虑的是充分替换在接头操作过程中去除的电绝缘材料,并提供对电场应力分布的控制。在接近载流量极限的情况下工作的电缆出现故障,这表明接头区域的高温一直是导致故障机制的主要因素。为了使分配级埋入式电缆中的接头具有最高的可靠性,接头的设计,接头材料和接头操作必须提供具有至少与原始电缆一样好的散热能力的结构。进行了参数化计算机计算,该计算预测了接头的最佳外径,以实现最大的散热效果。该直径是绝缘材料的热阻的强烈函数。给出了用标准500热欧姆-厘米橡胶带和电阻率为410和300热欧姆-厘米的橡胶带绝缘的接头进行的实验室测试的结果。

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