• 제목/요약/키워드: faulting

검색결과 131건 처리시간 0.025초

Safety-Related Equipment Classification for Maintenance Purposes with Risk Measures

  • Park, Byoung-Chul;Kwon, Jong-Jooh;Cho, Sung-Hwan
    • 한국원자력학회:학술대회논문집
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    • 한국원자력학회 1998년도 춘계학술발표회논문집(1)
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    • pp.838-843
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    • 1998
  • Risk importance measures are widely wed to rank risk contributors in risk-based applications. Typically, Fussell-Vesely (F-V) importance and risk achievement worth (RAW) are used in the component importance raking for the reliability centered maintenance (RCM) analysis of safety system in nuclear power plants (NPPs). This study was performed as part of feasibility study on RCM for domestic NPPs, which is focused on the component importance ranking approach the maintenance recommendation. The approach of modulizing faulting tree basic events was applied in the simplification process of the PSA model and the validity of the approach was evaluated As a result of the case study, this paper included the importance and the maintenance recommendations for the safety-related equipments associated with safety injection and containment spray in large loss of coolant accident sequences.

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양산단층의 구조운동과 한반도 주변 지구조사 (Movement of the Yangsan Fault and Tectonic History around the Korean Peninsula)

  • 장천중
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1998년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Spring 1998
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    • pp.228-234
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    • 1998
  • To interpret the relationship between movement of the Yangsan fault and tectonics around the Korean peninsula, the six sequential paleostresses were reconstructed from 1, 033 striated small faults which were measured at 37 outcrops along the strike of the Yangsan fault. And, the relationship between these paleostresses of the Yangsan fault and the tectonic events around the Korean peninsula were compared. As compared with the tectonic history around the Korean peninsula, the movement of the Yangsan fault is interpreted as follows; The initial feature of the Yangsan fault was formed with the development of extension fractures by the NW-SE extension. The fault experienced a right-lateral strike-slip movement continuously. The movements had been continued until the Late Miocene age, which was the most active period in faulting. The left-lateral strike-slip movement was followed by subsequent tectonic events. In the last stage, the fault acted with a slight extension or right-lateral movement.

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울산단층계 북부 천북면 일대의 트렌치 조사와 단층변위 (Trench Survey and Fault Displacement at Cheonbuk-myon Area along the Northern Part of Ulsan Fault System)

  • 경재복
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1998년도 추계 학술발표회 논문집 Proceedings of EESK Conference-Spring 1998
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    • pp.235-240
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    • 1998
  • Quaternary fault movement of the Ulsan fault system was interpreted by aenal photograph, field survey and trench excavation. The geomorphological evidences associated with active fault are clearly shown at Cheonbuk-myeon area, northern part of Ulsan fault system. In the trench wall one reverse fault(N 50$^{\circ}$E, 70$^{\circ}$E) is identified between basement rock (Miocene mudstone) and gravel deposits Another thrust fault (NS) extends up to the red and light brown soil layers. Middle terrace surface shows cumulative vertical displacements of about 3 to 7 m. The horizontai displacement of the red soil by faulting event is about 1.8 to 2.4m. The age of the fault activity is younger than that of the soil layer, which is roughly estimated to be late Quaternary (about 100Ka)

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2001, 2002년 발생 지진의 발진기구 특성 (Focal Mechanisms of earthquakes occured in 2001, 2002,)

  • 신진수;강익범;박윤경
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2003년도 춘계 학술발표회논문집
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    • pp.16-22
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    • 2003
  • The focal mechanisms of the earthquakes occurred in 2001 and 2002 are analyzed to understand the regional stress and tectonics in and around Korean Peninsula. The forty -three fault plane solutions are derived using the polarities of first arrival P-waves recorded at KIGAM, Bmh and KEPRI stations. The result suggest that thrust motion with significant amount of strike slip component is dominant mode of faulting. The larger population of mechanism is characterized by WNW-ESE striking nodal planes. NE-SW direction is interpreted as dominant compressional axis orientation of stress field. These solutions are similar to those of medium size earthquakes studied previously, which is known as typical regional tectonic stress orientation in and around Korean Peninsula.

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울산단층 주변 제4기 단층의 유형분류와 분절화 (Classification of Quaternary fault types and segmentation around the Ulsan Fault System)

  • 최원학;장천중;신정환
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 2003년도 추계 학술발표회논문집
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    • pp.28-35
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    • 2003
  • Quaternary faults found around the Ulsan Fault System can be divided into 4 types based on the fault outcrop features : Type I fault cuts basements and Quaternary deposits of which remain on both hangwall and footwall. Type II fault is developed only in Quaternary deposit. Type III fault has inclined unconformity after Quaternary faulting. Type IV fault is common type around the Ulsan fault system and has horizontal unconformity surface after cutting earlier Quaternary deposit. After erosion, later Quaternary deposit overlays on both old deposit and basement. The Ulsan Fault System consists of three segments at large scale from north to south based on the lineament rank and shape, Quaternary fault location, and slip rate. The segment boundaries are identified by the existence of the two intervals which show no lineaments and Quaternary faults. But, if detail fault parameters could be obtained and used in segmentation, it can be divided into more than three segments.

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The 29 May 2004 Offshore Southeast Coast of Korea Earthquake Sequence: Shallow Earthquakes in the Ulleung Back-arc basin, East Sea (Sea of Japan)

  • ;노명현
    • 지구물리
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    • 제9권3호
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    • pp.249-262
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    • 2006
  • The 29 May 2004 offshore Uljin, Korea earthquake was predominantly thrust-faulting at a depth of approximately 12 (±2) km. The mainshock attained the seismic moment of M0 =5.41 (±1.87)  1016 N m (Mw = 5.1). The focal mechanism indicates a subhorizontal P-axis trending 264° and plunging 2°. The orientation of P- and T-axis is consistent with the direction of absolute plate motion generally observed within the plates, hence the cause of the May 29 shock is the broad-scale stress pattern from the forces acting on the downgoing slab along the Japan trench and inhibiting forces balancing it. The 29 May 2004 earthquake occurred along a deep seated (~12 km), pre-existing feature that is expressed on the surface as the basement escarpment along the western and southern slopes of the Ulleung basin. The concentrated seismicity along this basement escarpment suggests that this feature may qualify as a seismic zone - the Ulleung basement escarpment seismic zone (UBESZ).

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안동시 풍천면 안동단층계 주변의 지질구조 (Geological Structure around Andong Fault System, Pungcheon-myeon, Andong, Korea)

  • 강지훈;이덕선
    • 암석학회지
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    • 제17권2호
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    • pp.83-94
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    • 2008
  • 안동시 풍천면 지역은 선캠브리아기 변성암류, 쥬라기 화성암류, 백악기 퇴적암류 (하산동층, 진주층, 일직층), 그리고 백악기 화성암류 (반려암체, 암맥류) 등으로 구성되어 있으며, 몇몇 주요 단층들이 발달한다. 이들은 백악기 경상분지와 선캠브리아기-쥬라기 기반암류(영남육괴)의 경계단층에 해당하는 동북동 방향의 안동단층, 이에 평행한 남후단층, 북북서 방향의 매봉단층, 남남동 방향으로 볼록한 활형의 광덕단층, 북북동 방향의 하회단층 등이다. 이 논문에서는 층리, 절리, 단층, 끌림 습곡에 대한 상세한 기하적인 분석을 통하여 이들 주요 단층 주변지역의 지질구조를 연구하였다. 그 결과, 활형의 광덕단층과 그의 동부 연장선상에 발달하는 하회단층 주변에서 측정된 층리의 극점 배열로부터 상부가 남남동 방향으로 충상하는 단층운동에 수반된 광역적인 끌림습곡작용이 인지되며, 광덕단층의 서부와 하회단층에서는 비교적 폭이 좁고 광덕단층의 중부와 동부에서는 비교적 폭이 넓은 약 150 m-300 m 폭의 광덕 끌림습곡대가 설정된다. 이는 이전 연구결과와 달리 하회단층과 광덕단층은 하나의 단층으로써 그 운동성과 운동시기가 광덕단층과 동일함을 의미한다. 연구지역에는 두 종류의 방향 단층[(동)북동${\sim}$동서 방향(단충 I), 서북서${\sim}$북북서 방향(단층 II)과 네 종류의 방향절리 [동서(I), (북)북서 (II),북북동 (III), 북동 (IV) 방향 절리]가 인지되며, 이들은 적어도 다음과 같은 네 번의 변형단계를 걸쳐 형성되었다 (1) Dn 단계; 동서 방향의 압축 응력에 의한 절리 (I) (광덕절리)의 형성과 동서 방향의 산성질 암맥의 관입작용, (2) Dn+1 단계, (북)북서 방향의 압축 응력에 의한 절리 (II) (매봉절리) 형성, 산성질 암맥의 렌즈상 부딘작용, 광덕절리의 사교이동성 역단층운동 (단층 I-광덕단층 형성)과 이에 수반된 광역적인 광덕 끌림습곡대 형성, (3) Dn+2 단계; 북북동 방향의 압축 응력에 의한 절리 (III) 형성, 매봉절리의 우수 주향이동 단층운동 (단층 II-매봉단층 형성)과 이에 수반된 Dn+1 구조물의 연장성 단절작용, (4) Dn+3 단계; 북동 방향의 압축 응력에 의한 절리 (IV) 형성과 단층 II의 우수향 성분이 우세한 사교이동성 단층으로의 재활동 등이다. 이러한 연구결과는 매봉단층은 안동단층과 광덕단층의 충상 지구조운동과 관련된 인열단층이라기 보다는 이들 단층보다 후기에 생성되었음을 지시한다.

경기육괴서북부(京畿陸塊西北部)의 변성암복합체(變成岩複合體)의 층서(層序)와 지질구조(地質構造) (The Stratigraphy and Geologic Structure of the Metamorphic Complex in the Northwestern Area of the Kyonggi Massif)

  • 김옥준
    • 자원환경지질
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    • 제6권4호
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    • pp.201-216
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    • 1973
  • Being believed thus far to be distributed in the wide areas in the vicinity of Seoul, the capital city of Korea, the Yonchon System in its type locality in Yonchon-gun from which the name derived was never previously traced down or correlated to the Precambrian metamorphic complex in Seoul area where the present study was carried out. Due to in accessibility to Yonchon area, the writer also could not trace the system down to the area studied so as to correlate them. The present study endeavored to differentiate general stratigraphy and interprete the structure of the metamorphic complex in the area. In spite of the complexity of structure and rapid changes in lithofacies of the complex, it was succeeded to find out the key bed by which the stratigraphy and structure of the area could be straightened out. The keybeds were the Buchon limestone bed in the western parts of the area; Daisongri quartzite bed cropped out in the southeastern area; Jangrak quartzite bed scattered in the several localities in the northwest, southwest, and eastern parts of the area; and Earn quartzite bed isolated in the eastern part of the area. These keybeds together with the broad regional structure made it possible to differentiated the Precambrian rocks in ascending order into the Kyonggi metamorphic complex, Jangrak group and Chunsung group which are in clinounconformable relation, and the first complex were again separated in ascending order into Buchon, Sihung, and Yangpyong metermorphic groups. Althcugh it has being vaguely called as the Yonchon system thus far, the Kyonggi metamorphic complex have never been studied before. The complex might, however, belong to early to early-middle Precambrian age. The Jangrak and Chunsung group were correlated to the Sangwon system in North Korea by the writer (1972), but it became apparent that the rocks of the groups have different lithology and highly metamorphosd than those of the Sangwon system which has thick sequence of limestone and slightly metamorphosed. Being deposited in the margin of the basin, it is natural that the groups poccess terrestrial sediments rather than limestone, yet no explanation is at hand as to what was the cause of bringing such difference in grade of metamorphism. Thus the writer attempted to correlate the both groups to those of pre-Sangwon and post-Yonchon which might be middle to early-late Precambrian time. Judging from difference in grade of deformation and unconformity between the Kyonggi metamorphic complex, Jangrak group, and Chunsung group, three stages of orogeny were established: the Kyonggi, Jangrak orogenies, and Chunsung disturbance toward younger age. It is rather astonishing to point out that the structure of these Precambrian formations. was not effected by Daebo orogeny of Jurassic age. The post-tectonic block faulting was accompanied by these orogenies, and in consequence NNE and N-S trending faults were originated. These faulting were intermittented and repeated until Daebo orogeny at which granites intruded along these faults. The manifestation of alignment of these faults is indicated by the parallel and straight linear development of valleys and streams in the Kyonggi Massifland.

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최근 5년간 한반도 중서부 지역에서 발생한 지진의 진원 특성 분석 (Analysis on the Source Characteristics of the Recent Five-year Earthquakes Occurred in the Central and Western Areas of the Korean Peninsula)

  • 백진주;경재복;최호선
    • 한국지구과학회지
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    • 제32권2호
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    • pp.161-169
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    • 2011
  • 본 연구는 최근 2005년 1월부터 2010년 5월까지 발생한 한반도 중서부지역(36-37.8$^{\circ}N$, 126-128$^{\circ}E$)의 내륙 지진중 규모 2.2 이상의 17개 지진에 대한 단층운동의 해를 구하여 분석하였다. 본 연구를 통해 각 지진의 진앙을 재결정하고, 이를 기상청의 진앙자료와 비교한 결과 대부분 $0.03^{\circ}$ 이내로 대체적으로 유사한 값을 보인다. 진원기구해는 P파 초동극성을 이용하는 방법과 SH파의 극성 및 SH/P 진폭비를 추가하는 방법으로 구하였다. 대부분 주향이동 운동 혹은 주향이동성분이 포함된 사교단층 운동의 특징을 보이며, 주응력장의 P축은 동북동-서남서 혹은 동서 방향이 우세하게 나타난다. 진원기구해는 주로 북북동-남남서와 서북서-동남동 방향의 단층면 혹은 단층보조면을 보이는데, 이는 지표 주구조선의 전반적인 방향과 잘 일치한다. 따라서 진앙이 지표 선구조선과 잘 일치하지 않는다고 하더라도 소규모적으로 지표에 나타나지 않는 이 방향의 지각의 약대를 따라 활성화 했을 가능성이 크다. 또한 경기육괴와 옥천대의 지체구조구에 따른 응력장이나 단층면해의 차이는 나타나지 않으며, 전반적인 한반도의 응력장 분포와도 일치한다.

남한 남동부 양산단층대와 울산단층대의 고지진 연구와 최대 지진 규모 평가 (Paleoseismological Study and Evaluation of Maximum Earthquake Magnitude along the Yangsan and Ulsan Fault Zones in the Southeastern Part of Korea)

  • 경재복
    • 지구물리와물리탐사
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    • 제13권3호
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    • pp.187-197
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    • 2010
  • 우리나라의 단층에 대한 고지진학적 연구는 1994년 이후 양산단층과 울산단층대를 따라 본격적으로 시작되었다. 양산단층대의 경우, 평해, 유계, 언양-통도사 등에서 부분적으로 고지진 활동을 나타내지만, 울산단층대의 경우 단층의 북부와 남부 일부를 제외하고 전 구간에서 단층운동 기록이 나타난다. 고지진에 의한 단층운동의 이력을 보면 양산단층의 경우 유계지역 일부를 제외하고 주로 20여만년 이전 기록이 대부분이다. 한편, 울산단층의 경우 운동 시기는 30만년 전 이후 수천년 전까지로 매우 최신까지의 기록이 나타나, 양산단층보다 최근까지 활동해오고 있음을 알 수 있다. 단층운동의 특성은 양산단층은 주로 우수주향이동이 우세하며, 울산단층은 역단층운동이 우세하였다. 이는 이 지역 일대에서 최근 발생하고 있는 지진들의 단층운동 감각과 유사함을 보인다. 평균변위율을 통해 단층의 활동도를 평가하는 일본의 경우에 대비할 경우, 양산단층의 평균변위율인 0.1~0.04 m/ka은 C 등급에 해당하며, 울산단층대의 평균변위율인 0.2~0.06 m/ka는 B-C 경계 등급에 해당한다. 각 단층대의 일부 구간에서 외국의 최대변위-규모 경험식에 기초하여 구한 최대 지진규모는 양산단층대의 유계단층에서는 평균 6.8, 울산단층대의 갈곡단층에서는 7.0의 값을 얻었다. 앞으로 이들 단층대의 분절화, 역사지진과의 관계 등 많은 해결과제가 남아있다.