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变电站课程设计.doc

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目录
前言··············································································(1)
变电所原始资料···························································(2)
变压器的设计······························································(3)
主变压器的选择································································(3)
所用变压器的选择···························································(4)

电气主接线的设计·····················································(5)
电气主接线方案的确定·····················································(5)
变电所的无功补偿························································(7)
短路电流计算···························································(7)
短路计算的原则···························································(7)
短路电流的计算方法和步骤··············································(7)
短路电流计算结果表······················································(7)
短路电流的计算···························································(7)
短路电流计算列表························································(7)

电气设备的选择······················································(7)
电气设备的选择原则·····················································(7)
电气设备选择的技术条件················································(11)

配电装置的选择······················································(11)
附录1短路电流的计算及程序说明···························(11)
附录2电气设备的选择··········································(11)
附录3主接线图···················································(11)













前言
电力工业是能源工业、基础工业,在国家建设和国民经济发展中占据十分重要的位置,是时间国家现代化的战略重点。电能是一种无形的、不能大量储存的二次能源。电能的发、变、送、配和用电,几乎是在同一瞬间完成的,须随时保持功率平衡。要满足国民经济发展的要求就必须加强电网建设,而变电站建设就是电网建设中的重要一环。在变电站的设计中,既要求所变电能能很好地服务于工业生产,又要切实保证工厂生产和生活的用电的需要,并做好节能工作,就必须达到以下基本要求:安全在变电过程中,不发生人身事故和设备事故。可靠所变电能应满足电能用户对用电的可靠性的要求。优质所变电能应满足电能用户对电压和频率等质量的要求。经济变电站的投资要少,输送费用要低,并尽可能地节约电能、减少有色金属的消耗量和尽可能地节约用地面积。220KV变电站属于高压网络,该地区变电所所涉及方面多,考虑问题多,分析变电所担负的任务及用户负荷等情况,选择所址,利用用户数据进行负荷计算,确定用户无功功率补偿装置。同时进行各种变压器的选择,从而确定变电站的接线方式,再进行短路电流计算,选择送配电网络及导线,进行短路电流计算。选择变电站高低压电气设备,为变电站平面及剖面图提供依据。本变电所的初步设计包括了:(1)总体方案的确定(2)负荷分析(3)短路电流的计算(4)高低压配电系统设计与系统接线方案选
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