石化企业防XX研究院2024年10月
雷
目录1基本概念和基础知识······································11.1雷电现象及其危害·································11.2雷电分类·············································21.3防雷装置的组成·······································32
防雷措施·············································5
2.1防直击雷·············································52.2防感应雷·············································62.3防雷电侵入波·········································62.4防雷装置检查·········································7
1基本概念和基础知识1.1
雷电现象及其危害
雷是一种大气中的放电现象,也就是正负电荷的中和过程。雷云在形成过程中,某些云积累起正电荷,另一些云积累起负电荷。随着电荷的积累,电压逐步升高,当带不同电荷的雷云互相接近到一定距离时,将发生激烈放电,出现耀眼的闪光。由于闪光时温度高达20000℃,空气受热膨胀,??发出震耳轰鸣。这就是闪电和雷鸣。有时雷云很低,在地面凸出物上将感应出异性电荷,到一定程度时也将出现雷云对地面凸出物的放电,这就是常说的雷击。⑴雷电特点①电流大
雷电电流幅值可高达几万至几十万安倍,设计避雷
4
装置时可按15×10A考虑。
②时间短
一般雷击分为三个阶段,第一个阶段为先导放电,
时间为5~10??ms,第二阶段为主放电,时间仅为50~100μs,第三阶段为余光,时间为30~50??ms,雷击完成一次放电过程总共不超过60ms。
③频率高
雷电电流大,放电时间极短,这样放电陡度极大,
高达30kA/μs。所以具有高频特性。
④电压高雷电感应电压可高达300~400kV,??而直接雷的电压还要高得多。
⑵雷电危害①电破坏
1
石化企业防雷(研究院)
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