100分求变压器继电保护设计 论文!!
如题..满意追加100分!!!
推荐回答(2个)
电力变压器是电力系统中不可缺少的重要设备,他的故障给供电可靠性和系统的正常运行带来严重的后果,同时大容量变压器也是非常贵重的元件,因此,必须根据变压器的容量和重要程度装设性能良好的、动作可靠的保护元件。
本文是笔者在阅读了大量专业资料、咨询了很多的专家和老师的前提下,按照指导老师所给的原始资料,通过系统的原理分析、精确的整定计算。做出的一套电力变压器保护方案。
本文语言简练、逻辑严密、内容夯实。可作为从事电气工程技术人员的参考资料。
关键词 电力系统故障,变压器,继电保护,整定计算
目 录
摘 要………………………Ⅰ
ABSTRACT………………Ⅱ
1 绪论1
1.1 课题背景…………………………1
1.1.1设计题目………………………1
1.1.2毕业设计原始资料……………1
1.1.3 待保护变压器的在系统中的连接情况……………………1
1.1.4设计任务…………………1
1.2继电保护的综述 ……2
1.2.1电力系统的故障和不正常运行状态及引起的后果………2
1.2.2 继电保护的任务……………2
1.2.3 继电保护装置的组成………3
1.2.4 继电保护的基本要求……3
1.3 电力变压器故障概况…………6
1.4继电保护发展………………7
1.4.1计算机化……………………7
1.4.2网络化…………………………8
1.4.3保护、控制、测量、数据通信一体…………………………9
1.4.4智能化…………………………9
2 短路电流实用计算 ………………11
2.1 短路电流计算的规程和步骤 11
2.1.1 短路电流计算的一般规定…11
2.1.2 计算步骤 …………………12
2.2 三相短路电流的计算…………12
2.2.1 等值网络的绘制…………12
2.2.2 化简等值网络……………12
2.2.3 三相短路电流周期分量任意时刻值的计算……………13
2.2.4 三相短路电流的冲击值…14
3 电力变压器保护原理分析…15
3.1 瓦斯保护原理…………15
3.2 变压器纵差动保护………16
3.2.1 构成变压器纵差动保护的基本原则……………………16
3.2.2 不平衡电流产生的原因和消除方法……………………16
3.3 电流速断保护原理…………20
3.3.1电流速断保护的整定计算20
3.3.2 躲过励磁涌流……………21
3.3.3 灵敏度的校验……………21
3.4 过电流保护的原理……………21
3.4.1过电流保护…………………21
3.4.2 复合电压起动的过电流保护……………………………22
3.4.3负序电流和单相式低压过电流保护……………………24
3.5零序过电流保护原理………24
3.5.1中性点直接接地变压器的零序电流保护………………25
3.5.2中性点可能接地或不接地变压器的保护………………26
3.6 过负荷保护原理 ……………28
3.7 过励磁保护原理……………29
3.8微机保护原理 ……………………29
3.8.1 微机保护概况……………30
3.8.2 变压器的微机保护配置…30
4 保护配置与整定计算…31
4.1电力变压器的保护配置…31
4.2 保护参数分析与方案确定………33
4.2.1 保护方案……33
4.2.2 保护设备配置选择……34
4.3 接线配置图…………………35
4.4 整定计算……………………36
4.4.1 带时限的过电流保护整定计算…………………………36
4.4.2 电流速断保护整定计算 36
4.4.3 单相低压侧装设低压侧接地保护………………………37
4.4.4过负荷保护………………38
4.5保护配置动作实现……………38
结论…39
参考文献……………………40
附录A:接线配置图…………………41
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