发电厂电气部分课程设计

发电厂电气部分课程设计

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时间:2018-11-08

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1、目录设计任务书(置于目录前)·········································1摘要·······························································3引言·······························································41系统与负荷资料分析·············································52电气主接线··············································

2、·······62.1主接线方案的选择···············································62.2主变压器的选择与计算···········································92.3厂用电接线方式的选择···········································112.4主接线中设备配置的的一般规则··································133短路电流的计算··········································143.1短路计算的一

3、般规则·············································143.2短路电流的计算·················································153.3短路电流计算表·················································164电气设备的选择···········································17234.1电气设备选择的一般规则·········································174.2电气选择的条件··

4、···············································174.3电气设备的选择·················································204.4电气设备选择的结果表···········································225*配电装置················································235.1配电装置选择的一般原则·········································235.2配电装置的选择及依据··

5、·········································25结束语····················································26参考文献··················································27附录Ⅰ:短路计算··········································28附录Ⅱ:电气设备的校验····································33附录3:设计总图·······························

6、···········391、系统与负荷资料分析根据原始资料,本电厂是中型发电厂,比较靠近负荷中心。本电厂要向本地区的各工厂企业供电,还要与220KV系统相连,并担负着向市区供电,保障市区人民生产和生活用电的责任。由于本厂的地理位置优越,一般情况下都容易获得燃料,能确保本地区以及附近的工厂、市区的正常供电,还可以向220KV提供电能。23由资料我们可知,本电厂以110KV的电压等级向用户送电。这里有两电压等级,分别是110KV,有8回出线;220KV,有10回出线,全部负荷有Ⅰ、Ⅱ、Ⅲ级负荷。1.1220KV电压等级架空线10回,I级负荷,最大输送200MW,TMAX=6000h/a;

7、cos=0.85。出线回路数大于4回且为I级负荷,应采用双母带旁路或一台半。1.2110KV电压等级架空线8回,Ⅰ级负荷,最大输送180MW,TMAX=6000h/a;cos=0.85。出线回路数大于4回且为I级负荷,为使其出线断路器检修时不停电,应采用双母分段或双母带旁路,以保证其供电的可靠性和灵活性。总装机容量16000MW,短路容量10000MW。根据原始资料,本电厂是中型发电厂,其容量为2×200MW,占电力系统总容量(800/1600

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