IEEE接地设计标准与我国接地设计标准的异同分析

胡庆来,李汉峰

电力建设 ›› 2013, Vol. 34 ›› Issue (2) : 100-104.

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PDF(552 KB)
电力建设 ›› 2013, Vol. 34 ›› Issue (2) : 100-104.
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IEEE接地设计标准与我国接地设计标准的异同分析

  • 胡庆来,李汉峰
作者信息 +

Analysis of Differences and Similarities between the IEEE and Domestic Grounding Design Standards

  • HU Qinglai, LI Hanfeng
Author information +
文章历史 +

摘要

国内设计院在电厂和变电站的接地设计时,一直使用中国的电力行业标准DL/T 621—1997标准,它与IEEE标准无论在设计方法还是原理等方面都存在较大差别,给涉外工程电气设计工作带来很大困难。在查阅了国内外接地相关标准及文献后,通过接地装置导体截面的选择、接地电阻值、接触电位差和跨步电位差要求值等3个方面,比较2个标准的主要异同点;逐一列举并讨论2种标准在这3个方面各自的特点和计算方法;并应用不同标准中的计算公式进行分析和推导,从而得出有助于涉外工程接地设计和计算的结论。

Abstract

In the design of power plant and substation grounding, as China’s electric standard DL/T 621-1997 has been adopted by domestic design institutes for a long time, which has big differences in the design method and principles with the IEEE standard, it has arosed great difficulty in the electric design work for overseas projects. Based on the review of the relative domestic and foreign grounding standards and literatures, the differences and similarities between these two standards are compared from three aspects: the choice of grounding conductor section, the grounding resistance, as well as the required value of step and contact voltages. Then the characteristics and calculation methods of these two standards in these three aspects are presented and discussed. Furthermore, through analyzing and derivating the calculation formulas listed in the two standards, some useful conclusions of grounding design and calculation for overseas power projects are proposed.

关键词

接地装置导体材料常数 / 等效热稳定系数 / 接地极 / 衰减系数 / 最大跨步电位差 / 最大接触电位差

Key words

material constants of grounding conductor / equivalent coefficient of thermal stability / grounding electrode / attenuation coefficient / maximum step voltage / maximum contact voltage

引用本文

导出引用
胡庆来,李汉峰. IEEE接地设计标准与我国接地设计标准的异同分析[J]. 电力建设. 2013, 34(2): 100-104
HU Qinglai, LI Hanfeng. Analysis of Differences and Similarities between the IEEE and Domestic Grounding Design Standards[J]. Electric Power Construction. 2013, 34(2): 100-104

参考文献

[1]IEEE Std 80—2000  IEEE guide for safety in AC substation grounding[S].

[2]Natarajan R,  Popoff J. Analysis of grounding systems for electric traction [J]. IEEE Traction on Power Delivery, 2001,16

(3).

[3]Practical Applications of ANSI /IEEE Standard 80, IEEE Guide for safety[M]. IEEE Tutorial Course,1986.

[4]DL/T 621—1997 交流电气装置的接地[S].北京:中国电力出版社,1998.

[5]姜俊峰. 发电厂、变电所接地设计研究[D]. 郑州:郑州大学,2004.

[6]International Electrotechnical Commission. Effects of current passing through the human body[M]. IEC, 1984.

[7]Schwarz S J. Analytical expression for resistance of grounding systems[J].IEE Transactions on Power Apparatus and Systems

,1954,173(13):1011-1016.

[8]Joseph P, Kosiarski. The use of electrically conductive organic surface coatings  shielding and grounding of plastic

enclosures[J]. Polymer-Plastics Technology and Engineering,1979, 33(2): 183-195.

[9]王洪泽. 对电力标准《接地》中接地网最大接触电位差公式的分析与拓展[J].广西电力工程, 2000(4): 23-26.

[10]GB 50065—2011 交流电气装置的接地设计规范[S].北京:中国计划出版社,2012.

基金

中国电力工程顾问集团中南电力设计院科技项目:科标信项目(40-Y2012-0101D)


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