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하윤철(Y.C. Ha),김대경(D.K. Kim),배정효(J.H. Bae),하태현(T.H. Ha),이현구(H.G. Lee) 한국가스학회 2008 한국가스학회지 Vol.12 No.1
산업화, 도시화에 따라 관리 주체가 다른 지중 금속시설물들이 크게 늘고 있으며 이러한 시설물의 보호를 위한 전기방식법, 특히 외부전원법의 적용이 전기방식에 대한 인식의 확산과 더불어 크게 증가하고 있다. 그러나 시스템의 설치를 위한 공간 확보의 어려움과 더불어 시설물 상호간의 표류전류 간섭 문제가 개별 관리주체로서는 해결할 수 없는 현안이 되고 있다. 이에 본 논문에서는 개별적으로 적용되던 전기방식 시스템 상호간의 간섭 사례를 현장 진단을 통하여 예시하고 이에 대한 대책으로 공용양극 외부전원 시스템을 설계, 현장 실증을 통하여 하나의 대안으로 제시하였다. Due to industrialization and urbanization, underground metallic utilities with different owners have been rapidly increased and cathodic protection (CP) methods, especially impressed current CP systems, have been widely adopted to protect their utilities from corrosion with expanded recognition of this method. The stray current interference problem as well as the difficulty in spatial security for system installation, however, came to a ramification of which each owner couldnt resolve for himself. In this respect, this paper illustrates a field-diagnosed example for mutual interference due to separately operated CP systems and suggests an alternative method to overcome the interference situation by design and field-assessment of a common anode bed cathodic protection system.
이현구(H.G. Lee),하윤철(Y.C. Ha),하태현(T.H. Ha),최정희(J.H. Choi),김대경(D.K. Kim),배정효(J.H. Bae) 대한전기학회 2007 대한전기학회 학술대회 논문집 Vol.2007 No.10
Current of DC traction systems flows from the positive busbar of the substation, through the overhead contact system, to the vehicle, and returns through the running rails. Because the rails are not very effectively insulated from the earth a certain amount of current flows into the earth, especially in the area near the load and depots. At the place where the stray current leaves the rail and pipe, corrosion may take place. In this paper we introduce the electrolytic corrosion protection methods of depots using silicon rectifier for the rail.
이현구(H.G. Lee),하태현(T.H. Ha),하윤철(Y.C. Ha),배정효(J.H. Bae),김대경(D.K. Kim) 대한전기학회 2006 대한전기학회 학술대회 논문집 Vol.2006 No.7
There are a number of reported instances of actual pipeline rupture during power line faults caused by melting of the pipe wall. This type of hazard was considered to be among the most serious of AC effects on pipelines in an international survey, comparable to the personnel safety hazard, Moreover, resistance coupling is not only a risk when the pipeline parallels a power line but also when they cross. One method of minimizing the effects of resistive coupling is by maintaining an appropriate separation distance between the pipeline and tower. This paper investigate the experiment for separation distance between the powerline earth and pipelines.