The Analysis of Ground Potential Rise for Shapes of Grounding Electrode Using Hemispherical Grounding Simulation System

반구형 접지모의시스템을 이용한 접지전극의 형상에 따른 대지전위상승의 분석

  • Published : 2005.07.01

Abstract

In order to analyze ground potential rise of grounding system installed in buildings, the hemispherical grounding simulation system has been designed and fabricated as substantial and economical measures. Ground potential rise(GPR) has been measured and analyzed for shapes of grounding electrode using the system in real time. The system is apparatus to have a free reduced scale for conductor size and laying depth of a full scale grounding system and is constructed so that a shape of equipotential surface is nearly identified a free reduced scale with a real scale when a current flows through grounding electrode. The system was composed of a hemispherical water tank, AC Power supply, a movable potentiometer, and test grounding electrodes. The test grounding electrodes were fabricated through reducing grounding electrode installed in real buildings such as rod type, mesh grid type. When a mesh grid type was associated with a rod type, GPR was the lowest value. The proposed results would be applicable to evaluate GPR in the grounding systems. and the analytical data can be used 0 stabilize the electrical installations and prevent the electrical disasters.

Keywords

References

  1. Chung-Seog Choi, Hyoung-Jun Gil, Ki-Boong Han, Woon-Ki Han, 'The Statistical Analysis and Investigation of Field Condition about Electrical Shock Accidents and Risk Factors in Temporary Power Installations', International Journal of Safety, Vol.2, No.2, pp.22-28, 2003
  2. 길형준, 한운기, 김향곤, 최충석, '건설현장의 수전설비 및 배.분전반의 현장실태 분석', 한국조명.전기설비학회 춘계학술대회 논문집, pp.335-340, 2004
  3. Chung-Seog Choi, Woon-Ki Han, Hyoung-Jun Gil, Ki-Boong Han, 'The Fire Characteristics of MOF Insulation Cover Used in 22.9kV Class Temporary Power Installations', Asia-Oceania Symposium on Fire Science and Technology, pp.711-716, 2004
  4. 한운기, 한기붕, 길형준, 최충석, '임시전력설비 감전재해 발행현황 분석에 관한 연구', 한국산업안전학회 추계학술발표회 논문집, pp. 118-123, 2003
  5. 한국전기안전공사, '22.9kV 수.변전설비에서의 감전위험성 연구', pp.11-33, 2002
  6. 한국전기안전공사, '전기재해 통계분석', pp.27-63, 2003
  7. Ronald P. O'Riley, 'Electrical grounding', Delmar Thomson Learning, pp.1-29, 2002
  8. 이복희, '접지의 핵심기초기술', 의제, pp.113-124, 2000
  9. F. Dawalibi, D. Mukedkar, 'Optimum Design of Substation Grounding in a Earth Structure : Part I-Analytical Study', IEEE Trans. PAS., Vol.PAS-94, No.2, pp.252-261, 1975
  10. F. Dawalibi, D. Mukedkar, 'Optimum Design of Substation Grounding in a Earth Structure : Part II-Comparison between Theoretical and Experimental results', IEEE Trans. PAS., Vol.PAS-94, No.2, pp.262-266, 1975
  11. A.P. Meliiopoulos, R.P. Webb, 'Touch and Step Calculation for Substation Systems', IEEE PES Winter meeting, A79 052-2
  12. R. Cadecott, D.G. Kasten, 'Scale Model Studies of Station Grounding Grids', IEEE Trans. PAS., Vol.PAS-102, No.3, pp.558-566, 1975 https://doi.org/10.1109/TPAS.1983.317975
  13. Yaqing Liu, Nelson Theethayi, Rajeev Thottappillil, Raul M. Gonzalez and Mihael Zitnik, 'An Improved Model for Soil Ionization around Grounding System and its Application to Stratified Soil', Journal of Electrostatics, Vol.60, Issues 2-4, pp.203-209, 2004 https://doi.org/10.1016/j.elstat.2004.01.012
  14. V. Cooray, M. Zitnik, M. Manyahi, R. Montano, M. Rahman and Y. Liu, 'Physical Model of Surge-Current Characteristics of Buried Vertical Rods in the Presence of Soil Ionization', Journal of Electrostatics, Vol.60, Issues 2-4, pp.193-202, 2004 https://doi.org/10.1016/j.elstat.2004.01.017
  15. A.P. Meliiopoulos, 'Power System Grounding and Transients', Marcel dekker Inc., 1988
  16. IEEE Standards Board, 'ANSI/IEEE Std 80-1999; An American National Standard/IEEE Guide for Safety in AC Substation Grounding', The Institute of Electrical and Electronics Engineers, Inc., pp.31-48, 1986
  17. 이복희, 이승칠, 엄주홍, 김효진, '보조접지전극의 시설에 의한 대지표면전위경도의 저감', 한국조명.전기설비학회 논문지, Vol.16, No.2, pp.121-129, 2002 https://doi.org/10.5207/JIEIE.2002.16.2.121