• 제목/요약/키워드: Earth fault

검색결과 425건 처리시간 0.027초

22.9kV 다중접지 배전선로 자락고장으로 인한 과전압 유압사고 분석연구 (An Analysis Study on the Over-voltages by the Earth Fault in 22.9kV-Y Distribution Line)

  • 박상만;노황래;조성수;이흥호
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1999년도 하계학술대회 논문집 G
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    • pp.3126-3128
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    • 1999
  • In 22.9kV-Y overhead lines, if there is an earth fault, high fault current causes surge type over-voltages around this place. There are generally two types of earth faults. One is an earth fault which occurs when a voltage line falls to earth line. The other occurs when a voltage line directly falls to the earth. This study presents an analysis method on the earth fault.

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상천리 일대 양산단층의 재활동 연대 (Reactivated Timings of Yangsan Fault in the Sangcheon-ri Area, Korea)

  • 송윤구;박창윤;심호;최우현;손문
    • 자원환경지질
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    • 제49권2호
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    • pp.97-104
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    • 2016
  • 본 연구에서는 한반도 남동부지역 주요단층인 양산단층대 주단층이 지나는 울산시 상천리일대 3개 단층점토 지점의 각 3개 입도분리 시료에 대한, 일라이트 폴리타입 정량분석법, K-Ar 연대측정, 일라이트 혼합연대해석법(IAA)법 적용 및 해석을 통해 단층 재활동 절대연대를 결정하였다. 연대측정 및 해석결과, 상천리지점 단층시료에서 41.5~43.5 및 50.7 Ma의 2회 천부단층 재활동연대를 결정하였다. 본 연구결과는 양산단층에 대한 최초의 단층 재활동연대를 직접적인 방법으로 결정한 것으로, 양산단층 생성시기가 이 시기 이전이었으며, 최소 2회 이상의 재활동이 있었음을 의미한다. 양산단층대의 단층점토에 대한 추가적인 연대측정이 이루어질 경우 양산단층의 재활동 시간대를 구체화할 수 있을 것으로 생각된다.

영상어드미턴스에 의한 직접접지 배전방식에서의 역가압 지락사고 검출 (Back Fed Earth Fault Detection in Three Wire-Unigrounded Distribution-System By Zero Sequence Admittance)

  • 유명호;김일동;한홍석;박철원
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1993년도 하계학술대회 논문집 A
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    • pp.120-123
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    • 1993
  • This paper presents the developing a new algorithm for detecting the Back fed Earth Fault in three wire-unigrounded distribution system by zero sequence admittance. So called "Backfed Earth Fault" of the electric power distribution line refers to a class of earth faults that the load-side line only is grounded, following after the distribution line broken into two parts, the source-side and the load-side. Because its mechanism differs from that of other earth faults, it is therefore, required to examine. This paper deals with the detailed software of the digital protective relay for Backfed earth fault. In order to prove that the proposed schemes is good, we performed off-line simulation using data from EMTP and ETSA(Electrcity Trust Of South Austrilia). It is shown that the suggested algorithm is never mal operated.

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Fault Plane Solutions for the Recent Earthquakes in the Central Region of South Korea

  • Hoe, Seo-Yun;Kyung, Jai-Bok
    • 한국지구과학회지
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    • 제29권5호
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    • pp.437-445
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    • 2008
  • We analyzed fault plane solutions of the recent twenty-two earthquakes which occurred from 2004 to 2006 in the central part of the Korean Peninsula by using P- and S-wave polarities along with SH/P amplitude ratios. The fault plane solution shows that strike-slip fault is dominant here, especially for the events with local magnitude equal to or greater than 3.0. However, some events with local magnitude less than 3.0 show normal fault or strike-slip fault with normal components. In the case of strike-slip fault, its orientation is almost in the direction of NNE-SSW to NE-SW almost parallel to the general trend of faults, while the compressional axis of the stress field trends ENE to E-W. The result is almost consistent with the stress field in and around the Korean peninsula, as reported previously. We cannot give any appropriate explanations to the normal faulting events along the western offshore and inland areas whether it is related to the local stress changes or tectonically unidentified extensional structures. Thus, an extension of investigations is desirable to clarify the cause of such phenomena.

일광단층 동편에서 관찰되는 지질구조를 이용한 고응력사 해석 (Interpretation of Paleostress using Geological Structures observed in the Eastern Part of the Ilgwang Fault)

  • 김태형;정수호;이진현;;양원동;지도형;김영석
    • 지질공학
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    • 제28권4호
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    • pp.645-660
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    • 2018
  • 한반도 동남부에는 양산단층과 울산단층을 비롯한 대규모 단층곡이 인지된다. 이 두 단층을 포함한 북북동-남남서 방향의 단층곡들을 총칭하여 양산단층계라고 한다. 그러나 이 단층계의 중요성에 비해 양산단층과 울산단층을 제외한 다른 단층곡들은 상대적으로 연구가 부진하다. 본 연구는 이 단층계 중에서 가장 동편의 선형구조인 일광단층 주변에 위치한 봉대산과 대변항 일원에서 화강암 내에 발달한 지질구조들의 상호 절단관계를 통해 고응력변화를 추론 하였고, 이를 기존 선행연구와 비교 검토하였다. 연구지역에서는 일광단층과 평행한 선형구조가 4개 인지되며, 그 중 3개의 선형구조에서 단층의 증거를 확인하였다. 각 선형구조를 따른 단층에서는 좌수향 및 우수향의 주향이동 운동감각이 모두 인지되었다. 이는 선형구조를 따라 반전 다중변형을 겪은 것을 지시하는 것으로 판단된다. 지질구조들의 상호절단관계를 통해 분석한 응력방향은 1) 후기 백악기에 동북동-서남서 방향의 압축에 따른 인장단열들이 먼저 발달하고, 2) 북서-남동 방향의 압축에 따른 공액상의 주향이동단층들이 발달하였으며, 3) 북동-남서 방향의 압축에 따라 일부 구조들의 선택적 재활운동이 있었던 것으로 해석된다.

Wide Fault에 대한 GBAS 궤도 오차 모니터 성능 분석 (Performance Assessment of GBAS Ephemeris Monitor for Wide Faults)

  • 송준솔
    • Journal of Positioning, Navigation, and Timing
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    • 제13권2호
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    • pp.189-197
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    • 2024
  • Galileo is a European Global Navigation Satellite System (GNSS) that has offered the Galileo Open Service since 2016. Consequently, the standardization of GNSS augmentation systems, such as Satellite Based Augmentation System (SBAS), Ground Based Augmentation System (GBAS), and Aircraft Based Augmentation System (ABAS) for Galileo signals, is ongoing. In 2023, the European Union Space Programme Agency (EUSPA) released prior probabilities of a satellite fault and a constellation fault for Galileo, which are 3×10-5 and 2×10-4 per hour, respectively. In particular, the prior probability of a Galileo constellation fault is significantly higher than that for the GPS constellation fault, which is defined as 1×10-8 per hour. This raised concerns about its potential impact on GBAS integrity monitoring. According to the Global Positioning System (GPS) Standard Positioning Service Performance Standard (SPS PS), a constellation fault is classified as a wide fault. A wide fault refers to a fault that affects more than two satellites due to a common cause. Such a fault can be caused by a failure in the Earth Orientation Parameter (EOP). The EOP is used when transforming the inertial axis, on which the orbit determination is based, to Earth Centered Earth Fixed (ECEF) axis, accounting for the irregularities in the rotation of the Earth. Therefore, a faulty EOP can introduce errors when computing a satellite position with respect to the ECEF axis. In GNSS, the ephemeris parameters are estimated based on the positions of satellites and are transmitted to navigation satellites. Subsequently, these ephemeris parameters are broadcasted via the navigation message to users. Therefore, a faulty EOP results in erroneous broadcast ephemeris data. In this paper, we assess the conventional ephemeris fault detection monitor currently employed in GBAS for wide faults, as current GBAS considers only single failure cases. In addition to the existing requirements defined in the standards on the Probability of Missed Detection (PMD), we derive a new PMD requirement tailored for a wide fault. The compliance of the current ephemeris monitor to the derived requirement is evaluated through a simulation. Our findings confirm that the conventional monitor meets the requirement even for wide fault scenarios.

제4기 입실 단층 파쇄대에서 나타나는 단층점토의 산출상태에 따른 광물조성 연구: 고해상도분말회절 분석을 중심으로 (Studies on Mineral Composition of Fault Clay in Quaternary Ipsil Fault: High Resolution Powder Diffraction Analysis)

  • 박성민;강한;장윤득;임창복;김정진
    • 한국광물학회지
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    • 제20권2호
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    • pp.83-89
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    • 2007
  • 입실 단층 파쇄대에는 다양한 종류의 단층점토가 산출된다. 이들 단층점토에 대한 X-선회절분석, 고해상도분말회절분석, 전자현미경 관찰 등을 통하여 단층점토의 광물조성에 대한 연구를 하였다. 입실 단층 파쇄대에서 나타나는 단층점토는 색깔에 따라 광물 조성의 차이가 나타난다. 입실단층에서 나타나는 단층점토의 특징적인 광물은 로몬타이트이며, 주변암석에서 이 광물이 나타나지 않는 것으로 보아 풍화 변질 산물인 것으로 추정된다. 입실 단층의 단층점토의 주 구성광물은 스멕타이트이다.

Mechanical Properties of Fault Rocks in Korea

  • Seo, Yong-Seok;Yun, Hyun-Seok;Ban, Jae-Doo;Lee, Chung-Ki
    • 지질공학
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    • 제26권4호
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    • pp.571-581
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    • 2016
  • To understand the mechanical properties of fault rocks, data from 584 in situ and laboratory tests on fault rocks from 33 tunnels were analyzed. The unit weights of the fault rocks range from 17.3 to $28.2kN/m^3$ and the cohesion and friction angles vary from 5 to 260 kPa and $14.7^{\circ}$ to $44.0^{\circ}$, respectively. The modulus of deformation and elasticity were generally < 200 MPa. In most cases, the uniaxial compressive strength was < 0.5 MPa, and Poisson's ratios were mainly 0.20-0.35. The mechanical properties of individual rock types were analyzed using box plots, revealing that the cohesion values and friction angles of shale and phyllite have relatively wide inter-quartile ranges and that the modulus of deformation and elasticity of shale have the lowest values of all rock types. In the analysis of mechanical properties by components of fault rocks, the largest values were shown in damage zones of individual rock types.

Fault Plane Solutions of the Recent Earthquakes in the Northern Part of the Korean Peninsula

  • Lee, Min Jeong;Kyung, Jai Bok;Chi, Heon Cheol
    • 한국지구과학회지
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    • 제35권5호
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    • pp.354-361
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    • 2014
  • Fault plane solutions in North Korea and the northern part of the Yellow Sea ($37.5^{\circ}N-40.5^{\circ}N$, $124.5^{\circ}E-128.5^{\circ}E$) was studied for the earthquakes that occurred from November, 2008 to May, 2013. The analysis was based on the data collected from seismic networks in Korea and China. Fault plane solutions were obtained from P and SH wave polarities and SH/P amplitude ratioes. Most earthquakes exhibited predominantly strike-slip fault characteristics with NNE-SSW or WNW-ESE nodal planes. The P-axes trends are mainly NE-SW or ENE-WSW direction in the northern part of the Yellow Sea and inland area of North Korea except some areas in the Hwanghae province. Fault plane solutions and main axis of stress field in the study region were similar to those observed in the southern part of the Korean Peninsula.

저압직류 접지시스템의 지락경로 흐름 분석에 따른 감전 보호기법 (Protection Techniques Against Electric Shock in Low Voltage DC Grounding Systems Depending on the Analysis of Earth Fault Current Paths)

  • 김동우;임용배;이상익;최명일;문현욱
    • 전기학회논문지
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    • 제65권1호
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    • pp.232-238
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    • 2016
  • This paper presents protection techniques against electric shock in low voltage DC(direct current) grounding systems depending on the analysis of earth fault current paths. Firstly, the comparison between alternating current and direct current on human was conducted, and current threshold values for each current path and for long duration were analyzed. Secondly, the analyses of the earth fault current flows were performed depending on the grounding types and earth fault conditions. Lastly, based on these analyses, adequate protection measures of electric shock depending on low voltage DC grounding types were provided.