Considerations in the design of electrical substations, including the effect of potential gradient on surrounding metallic structures

IF 0.4 Q4 ENGINEERING, MULTIDISCIPLINARY
Wilo Chiliquinga, Pablo Robles
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引用次数: 0

Abstract

For designing and studying an electrical substation grounding system [GS], a simple remote substation is considered according to the safety procedures indicated in the IEEE 80 Standard. Buried metallic materials or nearby metallic structures permanently endanger human life when electrical faults occur. Scenarios related to the design of electrical substations that consider the transfer of electrical potentials that can occur between the GS and buried metallic materials in their vicinity are presented, the behavior of potential transfer is evaluated, values of transferred voltages are calculated, and the main variables that influence the transferred voltage levels are identified. The simulations are performed with the CYMGRD software specific for GS calculations. Its analysis generates real results in the potential transfer that must be considered by the GS design engineer, which enables to avoid designing isolated substations without taking into account existing elements that may affect the substation surroundings.
变电站设计中的考虑因素,包括电位梯度对周围金属结构的影响
在设计和研究变电站接地系统[GS]时,根据IEEE 80标准中规定的安全程序考虑一个简单的远程变电站。当发生电气故障时,埋藏的金属材料或附近的金属结构将永久危及人类的生命。本文介绍了考虑GS和附近埋地金属材料之间可能发生的电势转移的变电站设计相关场景,评估了电势转移的行为,计算了转移电压的值,并确定了影响转移电压水平的主要变量。模拟是用专用于GS计算的CYMGRD软件进行的。它的分析产生了GS设计工程师必须考虑的电位传递的真实结果,从而避免在设计孤立变电站时不考虑可能影响变电站周围环境的现有因素。
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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来源期刊
Ingenius-Revista de Ciencia y Tecnologia
Ingenius-Revista de Ciencia y Tecnologia ENGINEERING, MULTIDISCIPLINARY-
CiteScore
0.90
自引率
0.00%
发文量
11
审稿时长
12 weeks
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