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http://dx.doi.org/10.5207/JIEIE.2006.20.3.028

Study for the Grounding Resistance of the Mesh Grounding Electrode by Water Tank Model  

Kim, Ju-Chan (경남대학교 전기공학과)
Kim, Sung-Sam (경남대학교 대학원 전기공학과)
Choi, Jong-Gyu (마산대학 컴퓨터전기공학부)
Lee, Chung-Sik (대원과학대학 전기전자과)
Koh, Hee-Seog (경남대학교 전기공학과)
Publication Information
Journal of the Korean Institute of Illuminating and Electrical Installation Engineers / v.20, no.3, 2006 , pp. 28-35 More about this Journal
Abstract
Recently, a number of equipments related with electricity, electronics, and communication in the same building are needed to the grounding system for safety from unexpected accidents. When the faulted electric current flows into a certain grounding system, the potential rise in that system takes place and it might induce the potential rise to other grounding system. This potential interference was strongly affected by the surface potential, which was deeply related with the electrode shape. In this paper, the fundamental formula was deduced on the basis of surface potential of two grounding electrodes. Which corresponds to source of the potential interference and other grounding electrode, respectively. Therefore, the degree of potential interference in this mesh grounding electrode system was verified by the simple model simulation. In addition, in order to identify the difference between the grounding resistance in the realistic construction site and the expected value from the corresponding simulation, the experiment was performed with model on a reduced scale about the realistic grounding system. It consists of stainless steel hemisphere electrodes in a water tank. From this work, the grounding resistance in the mesh grounding electrode showed the good coincidence results between those. Consequently, it is confirmed that the grounding resistance in the mesh electrode is possible to be estimated by performing the experiment using the water tank model.
Keywords
Potential Rise; Potential Interference; Water Tank Model;
Citations & Related Records
Times Cited By KSCI : 1  (Citation Analysis)
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