电力勘测设计
電力勘測設計
전력감측설계
ELECTRIC POWER SURVEY
2013年
3期
57-61
,共5页
发电厂%变电站%接地系统%安全判据%接触电位差%跨步电位差%地电位升%相对地电位差
髮電廠%變電站%接地繫統%安全判據%接觸電位差%跨步電位差%地電位升%相對地電位差
발전엄%변전참%접지계통%안전판거%접촉전위차%과보전위차%지전위승%상대지전위차
power plant%substation%grounding system%safety criteria%touch potential%step potential%ground potential rise%relative ground potential rise
人身安全和设备安全是发电厂和变电站接地设计的主要目的。国内接地设计标准《GB 50065-2011:交流电气装置的接地设计规范》和国际接地设计标准《IEEE Std 80-2000 IEEE Guide for Safety in AC Substation Grounding》中关于这两个接地系统目的的安全判据有所不同。通过对两者的分析,给出了两个标准对于人身安全判据的适用范围。同时,指出了两个标准对于设备安全判据的局限性,并根据发电厂和变电站设备绝缘水平、布置及运行的实际情况,首次提出宜采用最大相对地电位差作为接地系统中设备安全判据的新思路。对于大面积或者土壤电阻率较高的发电厂和变电站来说,应用此判据可大幅提高经济性。
人身安全和設備安全是髮電廠和變電站接地設計的主要目的。國內接地設計標準《GB 50065-2011:交流電氣裝置的接地設計規範》和國際接地設計標準《IEEE Std 80-2000 IEEE Guide for Safety in AC Substation Grounding》中關于這兩箇接地繫統目的的安全判據有所不同。通過對兩者的分析,給齣瞭兩箇標準對于人身安全判據的適用範圍。同時,指齣瞭兩箇標準對于設備安全判據的跼限性,併根據髮電廠和變電站設備絕緣水平、佈置及運行的實際情況,首次提齣宜採用最大相對地電位差作為接地繫統中設備安全判據的新思路。對于大麵積或者土壤電阻率較高的髮電廠和變電站來說,應用此判據可大幅提高經濟性。
인신안전화설비안전시발전엄화변전참접지설계적주요목적。국내접지설계표준《GB 50065-2011:교류전기장치적접지설계규범》화국제접지설계표준《IEEE Std 80-2000 IEEE Guide for Safety in AC Substation Grounding》중관우저량개접지계통목적적안전판거유소불동。통과대량자적분석,급출료량개표준대우인신안전판거적괄용범위。동시,지출료량개표준대우설비안전판거적국한성,병근거발전엄화변전참설비절연수평、포치급운행적실제정황,수차제출의채용최대상대지전위차작위접지계통중설비안전판거적신사로。대우대면적혹자토양전조솔교고적발전엄화변전참래설,응용차판거가대폭제고경제성。
@@@@Safety for person and equipment is the main purpose of power plant and substation grounding system design. The safety criteria defined in the domestic grounding design standard “GB 50065-2011: Code for design of ac electrical installations earthing” and the international grounding design standard “IEEE Std 80-2000: IEEE Guide for Safety in AC Substation Grounding” are different. According to the analysis of them, application scope for personal safety criterion is presented. At the same time, limitation of equipment safety criterion in these two standards is pointed out. And based on the equipments’ insulation level, arrangement and actual running situation in the power plant and substation, it is recommended for the first time to use the maximum relative potential rise inside the power plant or substation grounding system as the equipment safety criterion. For large area or high soil resistivity power plant and substation, it can greatly improve the economical efficiency.