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Safety design planning of ground grid for outdoor substations in MEA's power distribution system

机译:MEA配电系统中室外变电站接地网的安全设计规划

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This paper analyzes the performance of grounding system that is made of copper conductors and significantly influenced by soil resistivity. The grounding performance is evaluated in terms of ground potential rise, touch voltage and step voltage caused by a short circuit that generates a flow of large currents in the aboveground structures and grounding system and dissipates in the soil. These currents may cause damage to substation equipment and may be dangerous to personnel working nearby. Safety design planning for step and touch voltage for the existing fault level and future fault levels are presented for utility applications where personnel hazards may exist. Modeling and simulation is carried out on the Current Distribution Electromagnetic interference Grounding and Soil structure (CDEGS) program. The safety design planning is illustrated by a practical case of ground grid design for the 69/12– 24 kV, indoor-type Pathumwan substation of Metropolitan Electricity Authority (MEA).
机译:本文分析了由铜导体制成且受土壤电阻率显着影响的接地系统的性能。接地性能通过接地引起的接地电位上升,接触电压和阶跃电压进行评估,该短路会在地上结构和接地系统中产生大电流并耗散在土壤中。这些电流可能会损坏变电站设备,并可能对附近的工作人员造成危险。针对可能存在人员危险的公用事业应用场合,针对现有故障等级和未来故障等级提出了步进和接触电压的安全设计计划。对电流分布电磁干扰接地和土壤结构(CDEGS)程序进行建模和仿真。通过大城市电力局(MEA)的69 / 12-24 kV室内型Pathumwan变电站的接地网设计实例,说明了安全设计规划。

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