• Title/Summary/Keyword: Bouguer anomalies

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동해 지역의 완전부우게 이상 계산 (Computation of Complete Bouguer Anomalies in East Sea)

  • 김용현;윤홍식;이동하;황학
    • 한국측량학회:학술대회논문집
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    • 한국측량학회 2010년 춘계학술발표회 논문집
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    • pp.165-168
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    • 2010
  • This paper describes the results of complete Bouguer anomalies computed from the Free-air anomalies that derived from Sandwell and DNSC08 mairne gravity models. Complete bouguer corrections consist of three parts: the bouguer correction (Bullard A), the curvature correction (Bullard B) and the terrain correction (Bullard C). These all corrections have been computed over the East Sea on a $1'{\times}1'$ elevation data (topography and bathymetry) derived from ETOPO1 global relief model. In addition, a constant topographic (sea-water) density of $2,670kg/m^3$ ($1,030kg/m^3$) has been used for all correction terms. The distribution of complete bouguer anomalies computed from DNSC08 are -34.390 ~ 267.925 mGal, and those from Sandwell are -32.446 ~ 266.967 mGal in East Sea. The mean and RMSE value of the difference between DNSC08 and Sandwell is $0.036{\pm}2.373$ mGal. The highest value of complete bouguer anomaly are found around the region of $42{\sim}43^{\circ}N$ and $137{\sim}139^{\circ}E$ (has the lowest bathymetry) in both models. Theses values show that the gravity distribution of both models, DNSC08 and Sandwell, are very similar. They indicate that satellite-based marine gravity model can be effectively used to analyze the geophysical, geological and geodetic characteristics in East Sea.

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동해 지역의 프리에어 이상으로부터 완전부우게 이상의 계산 (Computation of Complete Bouguer Anomalies from Free-air Anomalies in East Sea)

  • 윤홍식;이동하;김용현
    • 한국측량학회지
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    • 제28권3호
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    • pp.317-328
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    • 2010
  • 본 연구는 Sandwell 및 DNSC08 해상중력모델로부터 구한 프리에어 이상으로부터 동해 지역의 완전부우게 이상을 구한 결과를 설명한 것이다. 완전부우게 보정은 부우게 보정(Bullard A), 곡률보정(Bullard B)과 지형보정(Bullard C)의 세 부분으로 구성된다. 각 보정량의 계산을 위하여 전지구 기복모델인 ETOPO1을 통해 1분 간격의 표고데이터(지형 및 수심)를 취득하여 이용하였으며, 지형(해수)의 밀도로는 $2,670kg/m^3$($1,030kg/m^3$)의 수치를 일괄적으로 적용하였다. DNSC08 모델을 이용하여 계산된 완전부우게 이상은 동해 지역에 대하여 약 -34.390~267.925mGal의 분포를 나타내었으며, Sandwell 모델의 경우 -32.446~266.967mGal의 분포를 나타내었다. 또한, 두 모델 간 완전부우게 이상의 차이는 평균 $0.036{\pm}2.373mGal$로 계산되었으며, 가장 큰 완전부우게 이상값은 가장 낮은 수심분포를 보이는 위도 $42{\sim}43^{\circ}N$ 및 경도 $137{\sim}139^{\circ}E$ 사이의 지역에서 나타났다. 이러한 수치를 통해 DNSC08과 Sandwell 모델의 중력분포가 동해 지역에 대해 매우 유사한 것을 알 수 있었으며, 위성기반의 해상중력모델이 동해 지역의 지구물리학적, 지질학적, 측지학적 특성의 해석에 효율적으로 이용될 수 있다고 판단되었다.

서울-철원간 추가령곡의 지형분석을 위한 GPS 중력측정 (GPS Gravity Surveying for the Terrain Analysis at the Choogaryeong Rift Valley between Seoul and Cheolwon)

  • 이창호
    • 자원환경지질
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    • 제32권3호
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    • pp.281-291
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    • 1999
  • This study presents the gravity data with GPS survrying and the geophysical profiles at the Choogaryeong Rift Valley. And in determing geoid by GPS measurement, survey control points (SCP) whoch built by the Republic of Korean Army are used. Seventy nine SCP and the two triangulation stations are reviewd by GPS. Digital terain model is under for terrain analysis. The analyses of the gravity surveying with GPS are as follows. The low values of the negative Bouguer anomalies represent the high elevation terrain. The Bouguer anomalies show the decrrasing trend toward the eastern part of the study area. Characteristics of free-air anomalies are related with terrain elevation. The regional gravity anomalies decreas toward the eastern part of the study area. The trends of variations are associated with the thermotectonic and geologic structure beneath the Choogaryeong Rift Valley. The most parts of the study area represent negative residual gravity anomalies due to the low dencity of sedimentary cover in the Rift Valley. There are three valleys and four mountains in the direction of NE-SW or NNE-SSW which are structured by the geological features.

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중력탐사에 의한 옥천대 남서부의 지하지질구조(1) (Subsurface Geological Structure of the Southwestern Part of Ogcheon Zone by Gravity Survey (1))

  • 김성균;안건상;오진용
    • 자원환경지질
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    • 제30권4호
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    • pp.363-369
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    • 1997
  • As a part of the study to know the deep geological structure of the Ogcheon Zone. gravity survey is performed along the survey line of which direction is roughly perpendicular to major faults of the Zone. Recent studies for petrology. geochemistry. and structural geology in south-western Ogcheon Zone are outlined. Raw gravity data are corrected to obtain Bouguer anomalies and the anomalies are interpreted to obtain subsurface structures along the survey line. The subterranean density discontinuities determined from the power spectrum method are appeared at depths of 15.4 km and 2.8 km. It is considered that the depth of 15.4 km indicates the boundary between upper and lower crust. Probably the depth of 2.8 km represents the boundary between upper volcanic formations and granites. Alternatively. the observed Bouguer anomalies are interpreted in terms of lateral density variation model. Finally. the subterranean geological structure to satisfy the Bouguer anomalies is presented through the iterative forward method in which results obtained from surface geological informations and from the inverse method are adopted as an initial model.

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A STUDY ON THE MOHO UNDULATION OF THE KOREAN PENINSULA FROM SATELLITE GRAVITY DATA

  • Yu, Sang-Hoon;Hwang, Jong-Sun;Min, Kyung-Duck
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2005년도 Proceedings of ISRS 2005
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    • pp.589-592
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    • 2005
  • Gravity characteristics and Moho undulations are investigated in the Korean peninsula by using satellite gravity data. According to the development of satellite geodesy, gravity potential models which have high accuracy and resolution were released. Using the EIGEN-CGOIC model based on low orbit satellite data such as CHAMP and GRACE, geoid and gravity anomaly were calculated by spherical harmonic analysis. The study area is located at $123^{\circ}\sim132^{\circ}E, 33^{\circ}\sim43^{\circ}$N including Korea. Free-air anomalies, which show the effect of terrain, have the values between $-37\sim724 mgal. After Bouguer correction, the range of simple Bouguer anomalies is $-221\sim246$ mgal. Complete Bouguer anomalies after terrain correction increase from continent to marine. This phenomenon is related rise of Moho discontinuity. The cut-frequency for extraction of Moho undulation was determined by power spectrum analysis, and then 3D inversion modeling was implemented. The mean, maximum, minimum, and standard deviation of Moho depth undulation are -26, -36, -8, and 4.9 krn, respectively.

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중력 및 자력탐사에 의한 옥천대 남서부의 지하 지질구조 (Subsurface Geological Structure of the Southwestern Part of the Ogcheon Zone by Gravity and Magnetic Surveys)

  • 김성균;오진용;안건상;김용준
    • 지질공학
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    • 제8권3호
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    • pp.285-296
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    • 1998
  • 옥천대의 심부 지질구조를 규명하기 위한 연구의 일환으로 옥천대 서남단의 주요 구조선과 대체로 직교 하는 70km의 측선을 따라 중력과 자력탐사를 수행하였다. 또한 측선을 포함하는 옥천대 서남부에 대한 최근의 암석학적 및 지화학적 연구성과를 요약하였다. 중력과 자력 측정치들을 보정하여 각각 부게이상과 총자기이상을 구했다. 중력과 자력이상은 옥천대 남쪽 경계인 장흥부근에서 급격히 변화한다. 이러한 부게이상의 급격한 증가는 선 캠브리아 편마암류와 상대적으로 밀도가 큰 중성 심성암류와의 사이에 상당히 큰 변위를 가진 심부의 정단층으로 설명이 가능하다. 이 단층은 옥천대의 형성과 진화에 중요한 역할을 한 단층으로 사료된다. 한편 중력이상과 자력이상의 근원이 같다는 가정아래 중력이상으로부터 가상의 자력이상을 계산하였다. 계산된 자력이상은 측선상의 50km 부근(장흥근처)까지는 대체로 중력이상과 일치하나, 그 이후에는 완전히 반대의 상관을 보여준다. 끝으로 잔여 부게이상을 만족하는 지하구조가 시행착오적인 순해법에 의하여 제시되었다. 여기서 초기모델은 지표지질과 역해법의 결과로부터 주어졌다.

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중력자료를 이용한 북극 스발바드 군도의 지각구조연구 (A Study of Crust Structure at Svalbard Archipelago in Arctic Area by Using Gravity Data)

  • 유상훈;이성숙;민경덕
    • 한국석유지질학회지
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    • 제13권1호
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    • pp.17-23
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    • 2007
  • ArcGP 중력자료를 이용하여 다산과학기지가 위치한 북극 스발바드 군도의 중력특성을 파악하였다. 지형자료와 유사한 형태로 분포하는 free-air 중력이상에서 보이던 대륙 연변부의 가장자리 효과는 부게보정 후 보이지 않고, 육상지역의 CTOPO30 지형자료를 이용한 지형보정을 거친 완전 부게 중력이상에서 육상지역에서 해양지역으로 갈수록 중력이상이 증가하는 즉, 모호면의 상승과 관련이 깊은 특성이 관찰된다. 파워스펙트럼 분석을 통해 결정된 절단파수를 이용할 필터링 후 계산된 고주파 영역의 잔여이상에서 육상지역의 단층대를 따라 발달하는 특징적인 고이상대와 두꺼운 퇴적층에서 기인한 저이상대가 나타나며 해양지역 대륙사면의 최하부에서 기반 함몰 내지는 기반암 상부의 두꺼운 퇴적층과 관련이 있는 저이상대가 발달하고 있다. 역산 모델링을 통해 저주파 영역 성분에서 계산된 모호면의 기복은 스발바드 군도에서 유라시안 판 경계인 Knipovich ridge쪽으로 갈수록 상승하는 즉, 대륙주변부에서의 전형적인 특성을 보여준다.

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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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경기도 인천지역 분포하는 화산암류에 대한 중력 및 자력 탐사 연구 (Gravity and Magnetic Surverys for Volcanic Rocks in Yeoncheon Area, kyonggi-do)

  • 박혁진
    • 자원환경지질
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    • 제32권6호
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    • pp.645-651
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    • 1999
  • The gravity and magnetic measurements have been obtained from 34 stations with 50m intervals along the survey line positioned between Jangtanri and sindapri for studying subsurface geology and structures of the volcanic rocks in Yeoncheon area. The Bouguer gravity and magnetic anomaly values were evaluated from the reduction of the field observation, and then interpreted by Nettleton's method and maximum-pepth rules, are approximately 160m based on magnetic data and 135m based on gravity data. High Bouguer gravity anomaly zone between 0m in Jangtanri and 900m along the survery line, is caused by thick and high density, older dasalt which is positioned beneath jijangbong tuff breccia, and this result corresponds to the interpretation result based on magnetic anomly. Lower gravity and magnetic anomaly zones ariund 900m are caused by between 1300m and 1550m are caused by high density of Quarternary basalt exposed in the surface, and lower gravity and magnetic anomalies at 200m and 1250m are caused by faults.

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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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