Single-phase 25 kV traction networks of electrified alternating current(AC)railways create electromagnetic fields(EMFs)with significant levels of intensity.The most intense magnetic fields occur when short circuits ex...Single-phase 25 kV traction networks of electrified alternating current(AC)railways create electromagnetic fields(EMFs)with significant levels of intensity.The most intense magnetic fields occur when short circuits exist between the contact wire and rails or ground.Despite the short duration of exposure,they can adversely affect electronic devices and induce significant voltages in adjacent power lines,which is dangerous for operating personnel.Although numerous investigations have focused on modeling the EMF of traction networks and power lines,the challenge of determining the three-dimensional electromagnetic fields near metal supports during the flow of a short-circuit current through them is yet to be resolved.In this case,the field has a complex spatial structure that significantly complicates the calculations of intensities.This study proposes a methodology,algorithms,software,and digital models for determining the EMF in the described emergency scenarios.During the modeling process,the objects being studied were represented by segments of thin wires to analyze the distribution of the electric charge and calculate the intensities of the electric and magnetic fields.This approach was implemented in the Fazonord software,and the modeling results show a substantial increase in EMF levels close to the support,with a noticeable decrease in the levels as the distance from it increases.The procedure implemented in the commercial software Fazonord is universal and can be used to determine electromagnetic fields at any electrical power facility that includes live parts of limited length.Based on the proposed procedure,the EMF near the supports of overhead power lines and traction networks of various designs could be determined,the EMF levels at substations can be calculated,and the influence of metal structures located near traction networks,such as pedestrian crossings at railway stations,can be considered.展开更多
为保证电力应急物资及时配送,使其可快速恢复供电,减少经济损失,以地理信息系统为基础,提出电力应急物资配送路径的规划方法。先基于GIS(Geographic Information System)地理信息系统中的Map X组件,构建地理空间数据预处理模型,然后根...为保证电力应急物资及时配送,使其可快速恢复供电,减少经济损失,以地理信息系统为基础,提出电力应急物资配送路径的规划方法。先基于GIS(Geographic Information System)地理信息系统中的Map X组件,构建地理空间数据预处理模型,然后根据处理后数据,建立配送路径规划数学模型与约束条件,最后融合遗传算法、爬山算法与蚁群算法,循环运算数学模型,取得最优配送路径。实验以某次电力设备突发事件为背景,当满足物资需求时,规划路径在道路状况正常与非正常条件下的配送时间各减少14 min和30 min,成本分别减少10.9元和5.09元,证明所设计的规划方法具有显著优越性。展开更多
针对矿井工业负载缺少应急电源,电力突发事件应急能力较差的问题,榆树坡煤矿决定增加自备应急电源。本文根据榆树坡煤矿实际情况,对自备应急电源的类型进行选择,根据实际负载量等信息进行发电机组的选型计算,最终选定2台功率为2 400 k W...针对矿井工业负载缺少应急电源,电力突发事件应急能力较差的问题,榆树坡煤矿决定增加自备应急电源。本文根据榆树坡煤矿实际情况,对自备应急电源的类型进行选择,根据实际负载量等信息进行发电机组的选型计算,最终选定2台功率为2 400 k W/3 000 k VA的柴油发电机组。经过实际试验,此次设计应急电源柴油发电机组运行良好,可以在突然断电情况下保证榆树坡煤矿井下重要用电负载的正常运行,达到了预期目的,保障了榆树坡煤矿安全高效生产。展开更多
文摘Single-phase 25 kV traction networks of electrified alternating current(AC)railways create electromagnetic fields(EMFs)with significant levels of intensity.The most intense magnetic fields occur when short circuits exist between the contact wire and rails or ground.Despite the short duration of exposure,they can adversely affect electronic devices and induce significant voltages in adjacent power lines,which is dangerous for operating personnel.Although numerous investigations have focused on modeling the EMF of traction networks and power lines,the challenge of determining the three-dimensional electromagnetic fields near metal supports during the flow of a short-circuit current through them is yet to be resolved.In this case,the field has a complex spatial structure that significantly complicates the calculations of intensities.This study proposes a methodology,algorithms,software,and digital models for determining the EMF in the described emergency scenarios.During the modeling process,the objects being studied were represented by segments of thin wires to analyze the distribution of the electric charge and calculate the intensities of the electric and magnetic fields.This approach was implemented in the Fazonord software,and the modeling results show a substantial increase in EMF levels close to the support,with a noticeable decrease in the levels as the distance from it increases.The procedure implemented in the commercial software Fazonord is universal and can be used to determine electromagnetic fields at any electrical power facility that includes live parts of limited length.Based on the proposed procedure,the EMF near the supports of overhead power lines and traction networks of various designs could be determined,the EMF levels at substations can be calculated,and the influence of metal structures located near traction networks,such as pedestrian crossings at railway stations,can be considered.
文摘针对矿井工业负载缺少应急电源,电力突发事件应急能力较差的问题,榆树坡煤矿决定增加自备应急电源。本文根据榆树坡煤矿实际情况,对自备应急电源的类型进行选择,根据实际负载量等信息进行发电机组的选型计算,最终选定2台功率为2 400 k W/3 000 k VA的柴油发电机组。经过实际试验,此次设计应急电源柴油发电机组运行良好,可以在突然断电情况下保证榆树坡煤矿井下重要用电负载的正常运行,达到了预期目的,保障了榆树坡煤矿安全高效生产。