| 123456789101112131415161718192021222324252627282930313233343536373839404142434445464748495051525354555657585960616263646566676869707172737475767778798081828384858687888990919293949596979899100101102103104105106107108109110111112113114115116117118119120121122123124125126127128129130131132133134135136137138139140141142143144145146147148149150151152153154155156157158159160161162163164165166167168169170171172173174175176177178179180181182183184185186187188189190191192193194195196197198199200201202203204205206207208209210211212213214215216217218219220221222223224225226227228229230231232233234235236237238239240241242243244245246247248249250251252253254255256257258259260261262263264265266267268269270271272273274275276277278279280281282283284285286287288289290291292293294295296297298299300301302303304305306307308309310311312313314315316317318319320 |
- 1
- 00:00:00,000 --> 00:00:05,290
- 220千伏有载调压开关是一种可在空载和带负荷条件下
- 2
- 00:00:05,290 --> 00:00:08,826
- 无需停电即可调整变压器输出电压的装置
- 3
- 00:00:08,826 --> 00:00:12,496
- 通过分接头档位转换调节高压绕组匝数
- 4
- 00:00:12,496 --> 00:00:14,166
- 从而改变负荷侧电压
- 5
- 00:00:14,720 --> 00:00:17,250
- 由于越靠近中性点电压越低
- 6
- 00:00:17,250 --> 00:00:20,300
- 该调压开关通过改变中性点匝数
- 7
- 00:00:20,300 --> 00:00:22,013
- 以及通过范围开关
- 8
- 00:00:22,013 --> 00:00:23,613
- 选择线圈方向
- 9
- 00:00:23,613 --> 00:00:25,153
- 加位或者减位
- 10
- 00:00:25,153 --> 00:00:26,813
- 来转换电流方向
- 11
- 00:00:26,813 --> 00:00:29,013
- 选择增大或者抵消磁场
- 12
- 00:00:29,013 --> 00:00:31,346
- 使调节倍数增加一倍
- 13
- 00:00:31,347 --> 00:00:34,027
- 它分为操作系统和执行系统
- 14
- 00:00:34,027 --> 00:00:37,587
- 操作系统通过电机或手动转动提供动力
- 15
- 00:00:37,587 --> 00:00:40,307
- 执行机构用于切换绕组匝数
- 16
- 00:00:40,307 --> 00:00:44,040
- 其中执行机构由选择开关和切换开关组成
- 17
- 00:00:44,040 --> 00:00:47,790
- 选择开关连接各个调节的不同匝数的绕组
- 18
- 00:00:47,790 --> 00:00:49,500
- 分别为1-8号抽头
- 19
- 00:00:50,067 --> 00:00:53,427
- 在三相系统中 每相又分为两层
- 20
- 00:00:57,652 --> 00:01:01,977
- 上层为奇数1357号抽头及范围开关共用抽头
- 21
- 00:01:01,977 --> 00:01:06,173
- 下层为偶数2468号抽头及范围开关共用抽头
- 22
- 00:01:06,173 --> 00:01:09,473
- 用于选择需调节的绕组和绕组的方向
- 23
- 00:01:09,473 --> 00:01:12,023
- 也用于预选需要转换的匝数
- 24
- 00:01:12,023 --> 00:01:14,133
- 切换开关主要是选择的匝数
- 25
- 00:01:14,694 --> 00:01:16,867
- 每相绕组有4个触头
- 26
- 00:01:16,867 --> 00:01:20,934
- 分别为A1到A4
- 27
- 00:01:20,934 --> 00:01:24,374
- B1到B4
- 28
- 00:01:24,374 --> 00:01:25,894
- C1到C4
- 29
- 00:01:25,894 --> 00:01:28,587
- 总计12个触头
- 30
- 00:01:28,587 --> 00:01:35,467
- 通过步进方式 让一组或两组触头接通
- 31
- 00:01:35,468 --> 00:01:37,254
- 中间经过渡电阻
- 32
- 00:01:37,254 --> 00:01:45,641
- 顺利切换到预选匝数 后经中性点线排回到变压器中性点
- 33
- 00:01:45,642 --> 00:01:48,962
- 接下来让我们演示一下它的操作方法
- 34
- 00:01:48,962 --> 00:01:50,792
- 假设我们现在为一档
- 35
- 00:01:50,792 --> 00:01:52,502
- 想降低负载电压
- 36
- 00:01:52,502 --> 00:01:53,772
- 调节到二档
- 37
- 00:01:53,772 --> 00:01:55,642
- 由于遵循抵挡绕组少
- 38
- 00:01:55,642 --> 00:01:57,122
- 高档绕组多
- 39
- 00:01:57,122 --> 00:02:00,092
- 那么此时范围开关是在加档位置
- 40
- 00:02:00,092 --> 00:02:03,222
- 而选择开关绕组在 上层1号抽头位置
- 41
- 00:02:03,776 --> 00:02:09,322
- 我们手动摇动转动或者电机转动 经竖轴运动 横轴运动
- 42
- 00:02:09,323 --> 00:02:12,623
- 带动调压开关的选择开关的主轴运动
- 43
- 00:02:12,623 --> 00:02:14,023
- 经旋转齿盘
- 44
- 00:02:14,023 --> 00:02:16,803
- 拨动下端选择开关齿盘主轴运动
- 45
- 00:02:16,803 --> 00:02:20,029
- 让预选连接上层2号抽头绕组
- 46
- 00:02:20,030 --> 00:02:23,430
- 同时上端主轴带动切换开关快慢机
- 47
- 00:02:23,430 --> 00:02:26,900
- 使得触头中间的尾推弹簧机构有节奏的运动
- 48
- 00:02:27,457 --> 00:02:32,297
- 现在面临的情况是电经过下方分接开关1号绕组连接
- 49
- 00:02:32,297 --> 00:02:35,537
- 切换开关中的A1触头到达中性点
- 50
- 00:02:35,537 --> 00:02:41,883
- 分接开关2号绕组连接
- 51
- 00:02:41,884 --> 00:02:44,324
- 切换开关中的A4触头上
- 52
- 00:02:44,324 --> 00:02:47,844
- 首先连接A2
- 53
- 00:02:47,844 --> 00:02:53,790
- 然后断开A1触头
- 54
- 00:02:53,791 --> 00:02:55,377
- 接通A3触头
- 55
- 00:02:55,377 --> 00:02:58,924
- 断开A2触头
- 56
- 00:02:58,924 --> 00:03:02,684
- 连接第A4触头
- 57
- 00:03:02,684 --> 00:03:08,324
- 断开A3触头
- 58
- 00:03:08,325 --> 00:03:11,231
- 此时电经过分接开关2号绕组
- 59
- 00:03:11,231 --> 00:03:18,858
- 经过切换开关中的A4触头到达中性点
- 60
- 00:03:18,859 --> 00:03:21,659
- 这就是变压器经有载调压开关
- 61
- 00:03:21,659 --> 00:03:24,019
- 顺利从一档调节到二档的位置
- 62
- 00:03:24,579 --> 00:03:25,949
- 需要注意的是
- 63
- 00:03:25,949 --> 00:03:28,899
- 有载调压开关是不能跳档调节的
- 64
- 00:03:28,899 --> 00:03:30,659
- 只逐步一档一档调节
- 65
- 00:03:30,659 --> 00:03:33,885
- 当八档到九档时情况会比较特殊
- 66
- 00:03:33,886 --> 00:03:37,296
- 9档分为9A、9B和9C共三档
- 67
- 00:03:37,296 --> 00:03:39,816
- 9B为极性转换的标准档位
- 68
- 00:03:39,816 --> 00:03:40,992
- 可长期运转
- 69
- 00:03:40,992 --> 00:03:46,086
- 9A、9C为过渡档位 只可临时运行不可长期运行
- 70
- 00:03:46,086 --> 00:03:48,266
- 这就顺利的从加档位置
- 71
- 00:03:48,266 --> 00:03:50,076
- 切换到了减档位置
- 72
- 00:03:50,076 --> 00:03:52,619
- 从十档开始直至加到十七档
- 73
- 00:03:52,619 --> 00:03:56,059
- 其过程是1号绕组到8号绕组的切换
- 74
- 00:03:56,059 --> 00:03:58,759
- 从而完成1-17档的加档过程
- 75
- 00:03:58,766 --> 00:04:01,099
- 以实现负载的降压过程
- 76
- 00:04:01,100 --> 00:04:03,080
- 而减档则恰恰相反
- 77
- 00:04:03,080 --> 00:04:05,280
- 通过手动或电机反转
- 78
- 00:04:05,280 --> 00:04:08,340
- 下面为17档切换至1档的运动状态
- 79
- 00:04:08,340 --> 00:04:13,580
- 从而完成17-1档的减档过程 以实现负载的电压升高
- 80
- 00:04:13,580 --> 00:04:18,326
- 以上就是220千伏有载调压开关的构造和工作原理
|