용담댐 발전소 접지설계를 위한 대지비저항 모델링 및 접지저항 추정

Earth Resistivity Modelling and Grounding Resistance Estimation for Yongdam Dam Power Station Grounding Design

  • 오민환 (한국수자원공사 수자원연구소) ;
  • 김형수 (한국수자원공사 수자원연구소) ;
  • 김종득 (한국수자원공사 수자원연구소)
  • Oh, Min-Hwan (Korea Water Resources Corporation, Water Resources Research Institute) ;
  • Kim, Hyoung-Soo (Korea Water Resources Corporation, Water Resources Research Institute) ;
  • Kim, Jong-Deug (Korea Water Resources Corporation, Water Resources Research Institute)
  • 발행 : 1998.07.20

초록

Detailed estimation of subsurface resistivity distribution and accurate estimation of actual fault current coming into the grounding system are indispensible to optimun grounding system design. Especially, it is essential for efficient grounding design to estimate subsurface resistivity distribution quantitatively and logically. Accurate estimation of subsurface resistivity distribution has an absolute influence on calculating touch voltage, step voltage and ground potential rise (GPR) which are related with grounding design standard for human safety. In this study, thirty-three electrical sounding surveys were made in Yongdam Power Station to obtain detailed subsurface resistivity distribution and the sounding data were interpreted quantitatively using multi-layered model. The results of the quantitative resistivity models were adopted practically to calculate grounding resistance values. Analytical asymptotic equations and CDEGS program were used in grounding resistance calculation and the results were compared and reviewed in the study.

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