• Title/Summary/Keyword: Ground potential

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접지극의 공용화를 통한 접지저항 저감효과 분석 (Analysis of Ground Resistance Reduction Effect by Common use of Ground Poles)

  • 흥성택;이은춘;신강욱
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 A
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    • pp.440-442
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    • 2004
  • The ground resistance of middle scale ground pole was measured by using the 'fall of potential method' suggested by IEEE However, the measured resistance value was lower than the minimum value required To solve this problem. ground pole was set to be used commonly. In this research. ground resistance was measured using the newly suggested method and the results were analyzed to see if they satisfied the domestic regulation The results of this research will be applied to the management works as well as the establishment of new plan.

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원전 인허가승인을 위한 사고결말평가에서 지표침적에 의한 피폭의 민감도 분석 (Importance Analysis of Radiological Exposure by Ground Deposition in Potential Accident Consequences for the Licensing Approval of a Nuclear Power Plant)

  • 황원태;정해선;정효준;김은한;한문희
    • Journal of Radiation Protection and Research
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    • 제39권2호
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    • pp.89-95
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    • 2014
  • 원전의 인허가 승인을 위한 사고결말평가에서 경수로는 미국의 규제지침에서 제시한 바와 같이 방사성물질의 지표침적의 고려를 허용하지 않고 있는데 반해 중수로의 규제지침에서는 이의 고려를 허용하고 있다. 이러한 배경에 따라 본 연구에서는 방사성물질의 지표침적에 의한 피폭영향의 민감도를 정량적으로 고찰, 분석하였다. 가상사고 시나리오를 구성하여 Cs-137과 I-131의 환경방출에 따른 총 피폭선량을 평가한 결과, 방사성물질의 지표침적과 이로 인한 공기중 농도의 감손을 고려치 않는 경우에 보다 보수적 결과를 나타냈다. 이는 지표침적에 의한 피폭선량이 총 피폭선량에 미치는 기여는 상대적으로 적은데 비해 지표침적으로 인한 공기중 농도의 감손이 총 피폭선량에 미치는 기여는 상대적으로 크기 때문이다. 대기안정도, 방출기간, 평가거리 등에 따라 차이는 있지만 두 핵종 모두 총 피폭선량에 대해 흡입에 의한 피폭이 90% 이상을 차지했으며, 지표침적에 의한 피폭은 기껏해야 10% 미만을 나타냈다. 지표침적의 고려에 따른 총 피폭선량의 감소는 $^{137}Cs$ 보다는$^{131}I$의 경우에 보다 컸으며, 대기가 안정하고 방출기간이 길수록, 그리고 방출점으로부터 평가지점이 멀수록 감소경향은 보다 뚜렷하게 나타났다.

비접지 DC 급전시스템에서의 Delta-I 지락보호계전 시스템 (Development of Delta-I ground fault Protective Relaying Scheme for DC Traction Power Supply System)

  • 정상기;권삼영;정호성;김주락
    • 대한전기학회논문지:전력기술부문A
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    • 제55권12호
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    • pp.529-535
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    • 2006
  • In DC tracking power supply system, ground faults are currently detected by the potential relay, 64P. Though 64P relay detects ground fault, it cannot identify the faulted region which causes long traffic delays and safety problem to passengers. A new ground fault protective relay scheme, ${\Delta}I$ ground fault protective relay, that can identify the faulted region is presented in this paper. In ${\Delta}I$ ground fault protective relaying scheme, ground fault is detected by 59, overvoltage relay, which operates ground switch installed between the negative bus and the ground. It preliminarily chooses the faulted feeder after comparing the current increases among feeders and trips the corresponding feeder breaker. After some time delay, it then recloses the breaker if it finds the preselected feeder is not the actual faulted feeder. Whether or not the preselected feeder is the actual faulted feeder is determined by checking the breaker trip status in the neighboring substation in the direction of the tripped breaker. If the corresponding breaker in the neighboring substation is also tripped, it finally judges the preselected feeder is actually a faulted feeder. Otherwise it recloses the tripped breaker. Its algorithms is presented and verified by EMTP simulation.

FE model of electrical resistivity survey for mixed ground prediction ahead of a TBM tunnel face

  • Kang, Minkyu;Kim, Soojin;Lee, JunHo;Choi, Hangseok
    • Geomechanics and Engineering
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    • 제29권3호
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    • pp.301-310
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    • 2022
  • Accurate prediction of mixed ground conditions ahead of a tunnel face is of vital importance for safe excavation using tunnel boring machines (TBMs). Previous studies have primarily focused on electrical resistivity surveys from the ground surface for geotechnical investigation. In this study, an FE (finite element) numerical model was developed to simulate electrical resistivity surveys for the prediction of risky mixed ground conditions in front of a tunnel face. The proposed FE model is validated by comparing with the apparent electrical resistivity values obtained from the analytical solution corresponding to a vertical fault on the ground surface (i.e., a simplified model). A series of parametric studies was performed with the FE model to analyze the effect of geological and sensor geometric conditions on the electrical resistivity survey. The parametric study revealed that the interface slope between two different ground formations affects the electrical resistivity measurements during TBM excavation. In addition, a large difference in electrical resistivity between two different ground formations represented the dramatic effect of the mixed ground conditions on the electrical resistivity values. The parametric studies of the electrode array showed that the proper selection of the electrode spacing and the location of the electrode array on the tunnel face of TBM is very important. Thus, it is concluded that the developed FE numerical model can successfully predict the presence of a mixed ground zone, which enables optimal management of potential risks.

송도매립지역의 액상화 구역도 작성 (Mapping of Liquefaction Potential in Songdo Reclamied Land)

  • 김성환
    • 한국재난정보학회 논문집
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    • 제14권3호
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    • pp.296-304
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    • 2018
  • 연구목적: 이 논문에서는 인천 해안 매립 지반에 대한 액상화 평가를 위하여 장주기의 Hachinohe 지진파와 단주기의 Ofunato 지진파에 대하여 ProShake 프로그램을 사용하여 지반응답해석을 수행하였다. 연구방법: 지반응답해석 결과와 수정 Seed and Idriss의 방법을 이용하여 액상화 평가를 수행하였다. 각 지점의 액상화 평가 결과를 대표할 수 있는 지표로 Iwasaki가 제시한 액상화 가능성 지수를 산정하였다. 또한, 액상화 구역도 작성을 위한 정량적인 지표로서 등가 액상화 안전율을 이용하였다. 연구결과: 이 논문에서는 액상화 가능지수와 등가 액상화 안전율을 이용하여 인천 해안 매립지역을 대상으로 액상화 구역도를 작성하였다. 결론: 구역도 작성 결과, 액상화 가능지수와 등가 액상화 안전율을 이용하여 작성된 구역도가 유사한 분포 형태를 보여 이 논문에서 제시한 액상화 구역도 작성 지표로 인천 해안 매립 지역의 액상화 구역도를 작성할 경우 이용에 편리할 것으로 판단된다.

Diesel 용출에 따른 지하수 오염물질의 거동 (Modeling of Dissolution Potential of Diesel Components)

  • 김낙경;김현성;염익태
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2003년도 봄 학술발표회 논문집
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    • pp.577-584
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    • 2003
  • This study investigated the modeling of dissolution Diesel to estimate the behavior of contaminants in the ground. The modeling based on the initial concentration change considering dissolution potential of pure Diesel and Xylene was performed using VISUAL MODFLOW, and was compared with general modeling ignored the initial concentration change condition.

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포텐셜 유동에 의한 프로펠러-WIG선의 상호작용 및 성능해석 (Analysis of Propeller-WIG Interaction and Performance in Potential Flow)

  • 전호환;김민규
    • 대한조선학회논문집
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    • 제38권4호
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    • pp.11-22
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    • 2001
  • 프로펠러-WIG(Wing in Ground Effect)선의 상호작용 및 성능을 포텐셜 유동에 의해 해석하였다. 프로펠러는 보오텍스 격자법(VLM)을 사용하였고 WIG선은 포텐셜 기저 패널법을 사용하여 각 경계조건을 만족시키면서 반복계산을 통하여 상호작용 및 성능을 해석하였다. 자유수면은 강체로 가정하여 경상법을 사용하였다. 프로펠러-WIG의 상호작용 및 성능을 해석하기에 앞서 발표된 실험결과와 계산결과가 있는 MP101 프로펠러와 MR-21 타의 상호작용 및 성능해석을 수행하여 개발된 프로그램의 정도를 검증하였다. 프로펠러-WIG선의 상호작용해석은 프로펠러의 부착위치, 직경 및 회전수의 변화에 따른 비행고도 높이 변화에 대한 양력 및 피치모멘트를 계산하여 비교하였다. 날개 앞에 부착된 프로펠러는 WIG선의 양력을 급격히 향상시키며 정적안정성을 향상시킴을 알았다. 따라서 적절한 프로펠러의 크기, 부착위치 및 회전수의 선택이 PARWIG선의 성능향상을 위해 필수적임을 알았다.

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2층 대지모델에서 대지저항률의 비율에 따른 접촉전류에 의한 감전의 위험성 분석 (Analysis of Electric Shock Hazards due to Touch Current According to Soil Resistivity Ratio in Two-layer Earth Model)

  • 이복희;김태기;조용승;최종혁
    • 조명전기설비학회논문지
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    • 제25권6호
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    • pp.68-74
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    • 2011
  • The touch or step voltages which exist in the vicinity of a grounding electrode are closely related to the earth structure and resistivity and the ground current. The grounding design approach is required to determine the grounding electrode location where the hazardous voltages are minimized. In this paper, in order to propose a method of mitigating the electric shock hazards caused by the ground surface potential rise in the vicinity of a counterpoise, the hazards relevant to touch voltage were evaluated as a function of the soil resistivity ratio $\rho_2/\rho_1$ for several practical values of two-layer earth structures. The touch voltage and current on the ground surface just above the test electrode are calculated with CDEGS program. As a consequence, it was found that burying a grounding electrode in the soil with low resistivity is effective to reduce the electric shock hazards. In the case that the bottom layer soil where a counterpoise is buried has lower resistivity than the upper layer soil, when the upper layer soil resistivity is increased, the surface potential is slightly raised, but the current through the human body is reduced with increasing the upper layer soil resistivity because of the greater contact resistance between the earth surface and the feet. The electric shock hazard in the vicinity of grounding electrodes is closely related to soil structure and resistivity and are reduced with increasing the ration of the upper layer resistivity to the bottom layer resistivity in two-layer soil.

국내 액상화 평가를 위한 지진파 선정 (Selection of Ground Motions for the Assessment of Liquefaction Potential for South Korea)

  • 장영은;서환우;김병민;한진태;박두희
    • 한국지진공학회논문집
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    • 제24권2호
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    • pp.111-119
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    • 2020
  • Recently, some of the most destructive earthquakes have occurred in South Korea since earthquake observations began in 1978. In particular, the soil liquefactions have been reported in Pohang as a result of the ML 5.4 earthquake that occurred in November 2017. Liquefaction-induced ground deformations can cause significant damage to a wide range of buildings and infrastructures. Therefore, it is necessary to take practical steps to ensure safety during an earthquake. In the current seismic design in South Korea, the Hachinohe earthquake and Ofunato earthquake recorded in Japan, along with artificial earthquakes, have been generally used for input motions in dynamic analyses. However, such strong ground motions are only from Japan, and artificial earthquake ground motions are different from real ground motions. In this study, seven ground motions are selected, including those recorded in South Korea, while others are compatible to the current design spectra of South Korea. The effects of the newly selected ground motions on site response analyses and liquefaction analyses are evaluated.

DC 급전시스템의 지락보호계전시스템 개발 (Development of Ground Fault Protective Relaying Schemes for DC Traction Power Supply System)

  • 정상기;정락교;조홍식;이안호;권삼영
    • 대한전기학회논문지:전력기술부문A
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    • 제54권9호
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    • pp.427-433
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    • 2005
  • In DC tracking power supply system, ground faults are currently detected by the potential relay, 64P. Though 64P relay detects ground fault, it cannot Identify the faulted region which causes long traffic delays and safety problem to passengers. Two new ground fault protective relay schemes that can identify the faulted region are presented in this paper. One is bus differential protective relay and the other is ground overcurrent protective relay. Both type of relays is similar in principle to the ordinary bus differential protective relay and the ground overcurrent relay used in other power system. In DC traction power supply system, since it is ungrounded, ground fault current is not big enough to operate those relays. To solve the problem, a current control device, called device 'X', is newly introduced in both system, which enables large amount of ground fault current flow upon the positive line to ground fault. Algorithms for these relays are developed and their validity are verified by EMTP simulation.