输电线路的设计在施工时要满足社区的要求

M. Nassereddine, J. Rizk, A. Hellany, M. Nagrial, G. Nasserddine
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引用次数: 1

摘要

高压输电线路广泛分布在居民区周围。它们有各种形式:混凝土、钢和木杆。地网一直是高压输电结构的组成部分,而土壤电阻率值是确定地网要求的主要输入之一。本文将探讨土壤结构及其对高压输电电线杆电极电阻的影响。此外,本文将使用IEEE和澳大利亚标准对各种土结构进行模拟,以验证CDEGS软件的计算结果。在此基础上,利用CDEGS模拟分析了不同土壤电阻率结构下的分裂因子行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Transmission lines design to meet community requirements during constructions
High Voltage (HV) transmission lines are widely spread around residential places. They take all forms of shapes: concrete, steel, and timber poles. Earth grid always form part of the HV transmission structure, whereas soil resistivity value is one of the main inputs when it comes to determining the earth grid requirements. In this paper, the soil structure and its implication on the electrode resistance of HV transmission poles will be explored. In Addition, this paper will present simulation for various soil structures using IEEE and Australian standards to verify the computation with CDEGS software. Furthermore, the split factor behavior under different soil resistivity structure will be presented using CDEGS simulations.
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