LEADER 01714nam 2200373 450 001 996281044903316 005 20231207090438.0 010 $a0-7381-8782-8 035 $a(CKB)3780000000090502 035 $a(NjHacI)993780000000090502 035 $a(EXLCZ)993780000000090502 100 $a20231207d2013 uy 0 101 0 $aeng 135 $aur||||||||||| 181 $ctxt$2rdacontent 182 $cc$2rdamedia 183 $acr$2rdacarrier 200 10$aIEEE Std 998-2012 (Revision of IEEE Std 998-1996) $eIEEE Guide for Direct Lightning Stroke Shielding of Substations - Redline /$fInstitute of Electrical and Electronics Engineers 210 1$aNew York, NY, USA :$cIEEE,$d2013. 215 $a1 online resource (510 pages) 330 $aDesign information for the methods historically and typically applied by substation designers to reduce direct lightning strokes to equipment and buswork within substations is provided. Two approaches, the classical empirical method and the electrogeometric model, are presented in detail. A third approach, which involves the use of non-conventional lightning terminals and related design methods, is also reviewed. 517 $aIEEE Std 998-2012 (Revision of IEEE Std 998-1996) - Redline: IEEE Guide for Direct Lightning Stroke Shielding of Substations - Redline 517 $aIEEE Std 998-2012 606 $aLightning protection 606 $aElectric substations 615 0$aLightning protection. 615 0$aElectric substations. 676 $a621.3126 801 0$bNjHacI 801 1$bNjHacl 906 $aDOCUMENT 912 $a996281044903316 996 $aIEEE Std 998-2012 (Revision of IEEE Std 998-1996)$92580516 997 $aUNISA