Thermal behavior of distribution MV underground cables

A. Sturchio, G. Fioriti, Vincenzo Salusest, L. Calcara, M. Pompili
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引用次数: 14

Abstract

The present paper reports an experimental investigation on the thermal behavior of medium voltage underground cables laid in different types of soils and under different conditions of the ambient temperatures. The same paper shows as thermal degradation of the insulating system of the cables and their joints can become more consistent and faster due to the effect of the continuously overheating due to the ambient temperatures and to the thermal resistivity of the soil of higher values. An other source of thermal degradation of the cables and their joints may be indicated in the fault currents affecting the metallic shields in systems operating with a compensated neutral connection to ground. In particular, in these systems the fault current is lasted for a time of some tens of seconds to allow a faster localization of the failure, through the automatic sectioning switches. During this time, currents flow through the metallic shields of the cables, overheating the same shields especially in correspondence of pour connections which may be present inside the joints. In case that the single-fault-to-ground evolves in a double-fault-to-ground the same shield will be interested by much higher current (short-circuit) which will create a deeper degradation of the semiconductive compounds and the insulation located nearby the metallic shields. The paper also presents the results of visual inspections of failed cable joints, due to thermal causes. Based on these considerations, important solutions may be indicated to reduce the failure rate of the MV electrical system allowing improvements in the overall power quality of the entire electrical systems.
配电中压地下电缆的热特性
本文对敷设在不同土壤类型和不同环境温度条件下的中压地下电缆的热特性进行了试验研究。同一篇论文表明,由于环境温度和较高的土壤热电阻率的持续过热的影响,电缆及其接头的绝缘系统的热降解可以变得更加一致和更快。电缆及其接头热退化的另一个来源可以在影响与补偿中性点接地连接的系统的金属屏蔽的故障电流中指出。特别是,在这些系统中,故障电流持续大约几十秒的时间,以便通过自动分段开关更快地定位故障。在此期间,电流流过电缆的金属屏蔽层,使屏蔽层过热,特别是在接头内部的浇注连接中。如果单故障对地演变为双故障对地,则同一屏蔽将受到更大电流(短路)的影响,这将对位于金属屏蔽附近的半导体化合物和绝缘造成更深的降解。本文还介绍了由于热原因导致的电缆接头失效目视检查的结果。基于这些考虑,可以提出重要的解决方案,以降低中压电气系统的故障率,从而改善整个电气系统的整体电能质量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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