MV cable temperature characteristics in dependence of load current, ambient environment and temperature. determination of the critical environment

J. Blūms, M. Budahs, J. Černovs, Ilgvars Gorņevs, V. Jurķāns
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引用次数: 2

Abstract

The paper presents results of Latvian distribution system operator Sadales tikls AS (ST) and Riga Technical University (RTU) joint research on possibilities to increase the permissible loading level of the operating MV cables in order to improve the efficiency of the existing network assets usage and increase the supply reliability. Permissible loading level determination of the operating MV cables from the heating point of view is affected by many variable factors such as ambient environment, temperature, number and configuration of the cables etc. To estimate the temperature characteristics in dependence of load current of the operating MV cables in the real environment at different climatic and ambient environments (cable channels, ladders, soil and pipes) in the cities of Latvia a special MV cable sheath and ambient environment temperature monitoring device is designed. Sheath and ambient environment temperature monitoring of nine 10 kV and 20 kV cables at four ST 110/10-20 kV substations is carried out for a period of one year. By analyzing the acquired temperature monitoring data, dynamics of the cable sheath temperature in dependence of load current, ambient environment and temperature is determined. A mathematical model for maximum achievable MV cable sheath temperature prediction is developed.
中压电缆的温度特性与负载电流、环境和温度的关系。关键环境的确定
本文介绍了拉脱维亚配电系统运营商Sadales tikls AS (ST)和里加技术大学(RTU)联合研究的结果,该研究旨在提高运行中压电缆的允许负载水平,以提高现有网络资产的使用效率并提高供电可靠性。从加热角度确定工作中压电缆的允许载荷水平受许多可变因素的影响,如环境、温度、电缆的数量和配置等。为评估在拉脱维亚城市不同气候和环境环境(电缆通道、梯子、土壤和管道)下实际环境中运行中压电缆的温度随负载电流的变化特性,设计了专用的中压电缆护套和环境温度监测装置。对4个ST 110/10- 20kv变电站的9条10kv和20kv电缆进行为期一年的护套和环境温度监测。通过对采集到的温度监测数据的分析,确定了电缆护套温度随负载电流、环境和温度的变化规律。建立了中压电缆护套最大可实现温度预测的数学模型。
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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