• 제목/요약/키워드: Conrad discontinuity

검색결과 13건 처리시간 0.023초

수신함수에 의한 한국 지진관측소(인천, 원주 포항) 하부의 지각구조 연구 (Crustal Structure Beneath Korea Seismic Stations (Inchon, Wonju and Pohang) Using Receiver function)

  • 김소구;이승규
    • 한국방재학회 논문집
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    • 제4권4호
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    • pp.43-54
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    • 2004
  • 광역 수신 함수가 원주, 인천, 포항 관측소에서 원격 지진 P파로 개발된다. 그리고, 이들 관측소 하부의 지각 구조 해석을 위해서 분석된다. 원격 수신 함수는 관측소 하부 P 파 속도 구조를 위한 시간 영역에서 역산된다. 모호 불연속면에서 P파에서 전환된 S 파가 이들 관측소에서 관측되었다. 관측소의 지하 지각구조는 수신함수 역산으로 산출된다. 1) 인천 관측소에서 Conrad 불연속면은 남서방향에서 17.5Km이고, Moho 불연속면은 북서방향에서 29.5Km와 남동 및 밤서 방향에서 30.5Km이다. 2) 원주 관측소의 경우 천부층의 퇴적층 두께는 3Km인 것으로 해석된다. Moho 깊이는 3.0Km, Conrad 깊이는 북동쪽에서는 17.0Km로, 북서쪽에서는 21.04km이다. 3) 포항 관측소의 경우, 천부 퇴적암 두께 3Km가 북동 및 북서 방향에서 발견되었다. Moho 깊이는 북동쪽과 북서방향에서 28.04km인 것으로 해석되며, Conrad 불연속면은 북동과 북서방향에서 21.0Km인 것으로 산출되었다.

원격 수신함수를 이용한 서울과 인천 관측소 하부의 지각 속도구조와 Moho 불연속면 특성 연구 (Crustal Structure Study and Characteristics of Moho Discontinuities beneath the Seoul and Inchon Stations using Teleseismic Receiver Functions)

  • 이승규;김소구
    • 자원환경지질
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    • 제31권4호
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    • pp.339-347
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    • 1998
  • The purpose of this study is to find P-wave crustal velocity structure and the Moho characteristics beneath Seoul (SEO) and Inchon (INCN) stations using broadband teleseismic records. The use of broadband receiver function analysis is increasing to estimate the fine-scale velocity structure of the lithosphere. The broadband receiver functions are developed from teleseismic events of P waveforms recorded at Seoul (SEO) and Inchon (INCN) stations, and are analyzed to examine the crustal structure beneath the stations. The teleseismic receiver functions are inverted in the time domain of the vertical P wave velocity structures beneath the stations. The crustal velocity structures beneath the stations are estimated using the receiver function inversion method (Ammon et al., 1990). The general features of inversion results are as follows: (1) For the Seoul station, the Conrad and Moho discontinuities exist at 22 km and 30 km depth in the south ($BAZ=180^{\circ}$) direction. (2) For the Inchon station, the Conrad discontinuity exists at 22 km depth in the direction of SE ($BAZ=145^{\circ}$) and the Moho discontinuity exists at 30~34 km depth with a 4 km thick, which consists of a laminated velocity transition layers with thickness, whereas a crust-mantle boundary beneath the Seoul station consists of a more sharp boundary compared with the Moho shape of INCN station.

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파형분석에의한 영월지진의 특성 (Characteristics of the Yeongwol Earthquake based on the phase analysis)

  • 김우한
    • 한국지진공학회:학술대회논문집
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    • 한국지진공학회 1997년도 춘계 학술발표회 논문집 Proceedings of EESK Conference-Fall 1997
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    • pp.67-76
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    • 1997
  • The seismic records of the main shock and two after shocks of the Yeongwol Earthquake are studied based on the phsase analysis. The travel time curves with 12 different possible phases are constructed to analysis the phases of the records. which were provided by KIGAM seismic network. The results of phase analysis show that 1) The main shock (Ms=4.5) shows clear Pn phase but two after shocks (Ms=4 and Ms=2.5) do not show Pn phase. 2) The Pg or PmP phases look as first arrival phase in the after shock records whose edicental distance is smaller or larger than 150 km. 3) It is very difficult to identity the phases related to the Conrad discontinuity even if the Conrad discontiuity arrival exists. 4) The record of GRE station located outside of the Kueongsan Basin shows different arrival time of Pn phase, P-S duration time and frequency compared with those of the other stations located within the Kyeongsan Basin.

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한반도의 지진활동과 지각구조 (Comments on Seismicity and Crustal Structure of the Korean Peninsula)

  • 이기화
    • 지구물리와물리탐사
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    • 제13권3호
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    • pp.256-267
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    • 2010
  • 한반도의 지진들은 주로 중생대에 반도에서 발생한 격렬한 지각변동으로 생성된 단층 및 깨어진 주요 지질구조의 경계에서 발생한다. 이 지진들은 Eurasian plate와 충돌하는 인접한 Indian plate와 Pacific plate 및 Philippine plate에 의한 E-W 내지 ENE-SSW 방향의 압축력장에서 반도 내의 주로 NNE-SSW 방향의 활성단층들이 깨어지며 발생하며 주향성분이 우세한 역단층의 메커니즘을 갖는다. 한반도의 지진활동은 지난 20세기 동안 15~18세기의 이례적으로 높은 기간을 제외하고는 비교적 낮거나 중간수준이며 이는 판내부 지진활동의 전형적인 불규칙한 양상을 보여준다. 한반도의 지각구조는 상부지각과 하부지각을 뚜렷하게 구분하는 Conrad 면이 없는 대체로 균질한 지각이며 수평적 불균질성은 존재한다. 지각의 평균 두께는 33 km 정도이며 Airy 형의 지각균형을 이루고 있어 산악지방이 평야지역에 비하여 지각의 두께가 더 크다. P파의 속도는 지표 부근에서 Moho 면까지 점진적으로 증가하며 평균은 대략 6.3 km/sec이다. 상부맨틀의 P파(Pn)의 속도는 대략 7.8 km/sec이다.

2016년 9월 경주지진 소고(小考) (Discussions on the September 2016 Gyeongju Earthquakes)

  • 이기화
    • 지구물리와물리탐사
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    • 제20권3호
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    • pp.185-192
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    • 2017
  • 2016년 9월 12일 규모 5.8의 본진을 포함한 일련의 지진들이 경주에서 발생했다. 본진은 1905년 한반도에서 지진관측을 시작한 이래 반도 남부에서 발생한 최대의 지진으로서 양산단층이 명백한 활성단층임을 입증하였다. 콘래드 불연속면이 없는 단층의 한반도 지각 모델에 의한 경주지진들의 전진, 본진, 여진들의 평균깊이는 12.9 km로 콘래드 불연속면이 있는 2층 구조의 IASP91 모델에 의한 평균깊이보다 2.8 km 낮다. 경주지역에서 발생한 역사지진 및 계기지진들의 진앙분포는 주 단층인 양산단층과 부속 단층을 포함하는 양산단층계가 광범위한 파쇄대임을 시사한다. 규모 5.8의 경주지진에 수반한 지진들의 진앙분포는 양산단층계의 몇 단층들이 응력에너지의 방출에 관여하였음을 지시한다. 경주지진들의 주요 지진들이 지표가 아닌 10 km 이하에서 발생한 것은 양산단층계의 심부 활성단층들의 분포를 연구할 필요성을 제기한다. 경주지역의 지진자료에 근거하여 추정한 이 일대의 최대지진의 규모는 7.3이다. 한반도의 가장 완전한 1978년 이후의 지진자료를 이용하여 추정한 경주지역의 규모 5.0, 6.0, 7.0을 초과하는 지진들의 재현간격은 각기 80년, 670년, 그리고 5,900년이다. 2016년 9월 경주지진들은 본질적으로 판내부지진활동의 범주에 속하며 2011년 3월 11일 일본해구에서 발생한 판경계지진횔동인 동일본대지진과는 무관하다.

중력탐사(重力探査)에 의(依)한 경상층군내(慶尙層群內) 왜관(倭館)-포항간(浦項間)의 지하구조(地下構造) 연구(硏究) (Gravity Survey on the Subsurface Structure between Waekwan-Pohang in Kyoungsang Basin)

  • 민경덕;정종대
    • 자원환경지질
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    • 제18권4호
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    • pp.321-329
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    • 1985
  • The gravity measurement has been conducted at 113 stations with an interval of about 1km along the national road of about 120km running from Busangdong to Pohang through Waekwan, Daegu, Youngchun and Aankang. The subsurface geology and structure along the survey line is interpreted from Bouguer anomaly by applying Fourier method and Talwani method for two dimensional body. The mean depth of Moho discontinuity is 31.4km, and the depth decreases very slowly from inner continent toward east coast. The depth of Conrad discontinuity increases from 11km at the east coastal area to 17km at the inner continental area, and especially increases rapidly in the area between Waekwan to Busangdong. The depth of basement of Kyoungsang Basin inereases from near Waekwan toward Daegu upto about 4. 8km, and increases rapidly to reach the maximum depth of about 8.5km at 8km east of Daegu. But it starts to decrease from the place of 10km west of Youngchun, and is about 7.2km at Youngchun and about 6km at 6km east of Youngchun. The depth starts to increase smoothly beyond this point, and is 7km at 15km east of Youngchun. From this point, the depth starts to decrease again, and is about 3.8km at Ankang. The depth of basement of Pohang Basin is 500m at Pohang and about 650m at 5km west of Pohang. A massive granite body which is considered to be a part of Palgongsan Granite exposed at the depth of 1. 5km at 9km west of Youngchun. Another massive granite body is situated underneath the Pohang Basin at depth of 1.5 to 2km, and sedimentary rocks of Kyoungsang Group and volcanic rocks are distributed between Pohang Basin and this granite body. Finally, Yangsan Fault is identified at about 2.5km east of Ankang.

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지진파(地震波)를 이용(利用)한 남한(南韓)의 지각구조(地殼構造) 연구(硏究) (A Study on the Crustal Structure of South Korea by using Seismic Waves)

  • 김상조;김소구
    • 자원환경지질
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    • 제16권1호
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    • pp.51-61
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    • 1983
  • By using local earthquake data, the Korean crust model and travel-time tables were determined. The upper crustal earthquakes (Hongsung event and Ssanggyesa event) were considered as auxiliary information, and the lower crustal earthquakes (Uljin event and Pohang event) played an important role in determining model parameters. The possible existence of Low Velocity Layer (LVL) in the upper mantle was suggested by discrepancy in the arrival times of Sariwon earthquake which occurred below Moho discontinuity. Computer program for the determination of the model parameters was developed in order to screened out the optimum parameters by comparing the travel times of observed data with theoretical ones. We found that the discontinuities of Conrad, Moho, and upper and lower boundaries of LVL have their depth of 15, 32, 55 and 75 Km, respectively. The velocities of P-and S-wave in the layers between those discontinities were found to be (1) 5.98, 3.40 Km/sec (2) 6.38, 3.79 Km/sec (3) 7.95, 4.58 Km/sec (4) unknown (5) 8.73, 5.05 Km/sec, respectively from the top layer. Travel-time tables were also computed for the inter-local earthquakes which have their direct wave paths above the LVL.

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중력탐사에 의한 삼척-태백간의 지하지질 및 지질구조 연구 (Gravity Survey of the Subsurface Geology and Geologic Structure between Samcheog and Taebaek Area)

  • 민경덕;조광은
    • 자원환경지질
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    • 제28권1호
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    • pp.79-88
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    • 1995
  • The gravity measurment has been carried out at 48 gravity stations with intervals of 1.0~1.5 km along the survey line between Samcheog, Gosari and Taebaek to study subsurface geology and geologic structure in the northeastern part of the Ockchon zone. The Bouguer gravity anomaly values were obtained from the measured gravity values through the gravity corrections. The subsurface geology and geologic structure were interpreted quantitatively by means of the Fourier series method and Talwani method for 2.5 dimensional body. In the study area, the depth of Conrad discontinuity is about 10 km at Samcheog, northeastern end of the survey line, and it is increased rapidly to about 12.5 km at Miro, 15 km at Gosari and 15.5 km at Dongjeom, southwestern end of the survey line, respectively. The depth of the basement of the Ockchon zone exposed at Samcheog is increased smoothly to about 2 km at 5 km from Samcheog along the survey line, and is exposed again in the area between Singiry and Gosari. Beyond Gosari its depth is increased to about 1.7 km, and displaced 2.3 km downward by Osipcheon fault near Dogyeri and 0.5 km by Baeksan thrust near Cheolam, respectively. Many V-shaped low Bouguer gravity anomalies resulted from the fracture zone associated with faults imply the existence of Osipcheon fault and several inferred faults. The low Bouguer gravity anomaly zone between Tongdong and Dongjeom is caused by Jurassic gneissose granite. A local high Bouguer gravity anomaly at 35 km along the survey line from Samcheog is interpreted by the effect of iron deposit of high density existed at subsurface. The thickness of Great Limestone Group varies from 0.5 km to 1.4 km, that of Pyeongan Supergroup from 0.4 km to 0.9 km, and that of Yangdeog Group is about 0.3 km. The thickness of Jurassic gneissose granite varies from 1.5 to 3.0 km.

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중력탐사(重力探査)에 의(依)한 마산(馬山)-부산간(釜山間)의 지하구조(地下構造) 연구(硏究) (Gravity Measurement and Interpretation of the Subsurface Structure of the Kyongsang Basin between Masan-Busan Area)

  • 민경덕;김정우
    • 자원환경지질
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    • 제20권3호
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    • pp.203-209
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    • 1987
  • The gravity measurement has been conducted at 69 points with an interval of about 1km along the national road between Masan and Busan through Kimhae to study on the subsurface geology and structure of Kyongsang basin. The Bouguer gravity anomalies were obtained from the observed gravity values, and interpreted by means of the Fourier-series method and Talwani method for 2-dimensional body. The depth of Conrad discontinuity is about 14.8km at the west end of survey line, and increases smoothly to about 13.6km at the east end. But it is uplifted by about 500m between Yangsan and Dongnae faults. The depth of the basement of Kyongsang basin is about 4.8km at the west end. It decreases gradually passing Masan, and reaches the maximum depth of 5.6km at the 15km east of Masan. Hereafter, it starts to increase to 4.3km at the east end. It is also uplifted by about 500m between Yangsan and Dongnae faults. The Bulgugsa granites which cause two low Bouguer gravity anomaly zones are distributed in the vicinity of Masan at depth of about 3.5km and Kimhae area at depth of about 5.3km. Diorite, granodiorite, aplite, and felsite are distributed with various depth of about 1~1.7km, and Jusasan andesitic rocks, except porphyritic one located at the west of Kimhae, are distributed with depth of about 1km. Three fracture zones associated with faults are located at the places where v-shaped Bouguer gravity anomalies are appeared.

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한반도 동남부에 분포하는 제3기 퇴적분지에 대한 중력탐사 (Gravity Survey of the Tertiary Basin in the Southern Part of Korean Peninsula)

  • 민경덕;방성수;현용호
    • 자원환경지질
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    • 제25권2호
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    • pp.167-177
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    • 1992
  • The gravity measurement has been conducted at 53 and 34 stations with an interval of 1~1.5 km along the national roads of about 47 km and 34 km running from Duksungri to Yangpori and from Angangri to Byungpori, Kyungsangbookdo, respectively. The subsurface geology and geologic structure of Tertiary Pohang and Janggi basins along two survey lines are interpreted quantitatively by applying Fourier series and Talwani methods for Bouguer gravity anomaly. The depths of Conrad discontinuity vary from 11.8 to 12.5 km and 11.5 to 13.2 km along the survey lines between Duksungri and Yangpori, and Angangri and Byungpori, respectively. The depths of pre-Cambrian Gneiss complex underneath Kyungsang Supergroup vary from 3.8 to 4.2 km and 3.8 to 4.6 km along the survey lines between Duksungri and Yangpori, and Angangri and Byungpori, respectively. Massive granite bodies which are not exposed along the survey line between Duksungri and Yangpori are distributed on a large scale at the subsurface between Duksungri and Ochun, and Daegokri and Yangpori. Along the survey line between Angangri and Byungpori, it is exposed at Angangri, and extends underneath Chungrimdong, Pohang city. Andesite is distributed on a small scale underneath Pohang city and Ochun. The thicknesses of Tertiary Yonil and Janggi Groups are 0.2~0.9 km and 0.1~0.5 km, respectively. The Tuffaceous rocks which are the lowest formation of Tertiary sedimentary rocks are distributed with the thickness of 0.2 km at the surface and between Kyungsang Supergroup and Yonil or Janggi Groups. The Yonil and Janggi Groups are in fault contact by a fault running through Ochun and Chungrimdong, Pohang city. Two other faults are newly found near Heunghae-eup and Hyungsan river.

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