• Title/Summary/Keyword: 수직전기탐사

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낙동강변 충적층 시추자료와 지구물리탐사자료의 연관성

  • Ham, Se-Yeong;Hwang, Hak-Su;Kim, Hyeong-Su;Jeong, Jae-Yeol;Moon, Chang-Gyu;Cha, Yong-Hun;Jang, Seong
    • Proceedings of the Korean Society of Soil and Groundwater Environment Conference
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    • 2003.09a
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    • pp.552-556
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    • 2003
  • 창원시 대산면 갈전리의 강변여과수 취수지역의 8개의 시추공의 시추지료로부터 파악된 지하지질과 물리탐사자료를 비교하여 둘 간의 연관성을 검토하였다. 본 연구에서는 이미 얻어진 시추공 자료와 비교ㆍ검토하기 위하여 지구물리탐사를 실시하였다. 수행된 지구물리탐사는 쌍극자배열 전기비저항 수평탐사, 슐럼버져법배열 전기비저항 수직탐사, 지하투과레이다탐사이다. 전기비저항 수평탐사에 의하면 저비저항치의 두께는 낙동강변에 가까울수록 두꺼워지는 경향성을 보이고 있다. 전기비저항 수직탐사 결과는 시추자료와 비교적 잘 일치하고 있으며 지표로부터 세립질 모래층, 중립질 모래층, 세립질 모래층의 구분이 수직탐사 결과에서 잘 나타나고 있다. 또한 GPR탐사와 전기비저항 수직탐사 결과에 의하면, 지하수면은 6m 부근에 위치하고 있음을 알 수 있다.

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대수층을 통한 해수침투의 정량적 평가를 위한 전기비저항 탐사 적용

  • Song, Seong-Ho;Lee, Gyu-Sang;Kim, Jin-Seong;Seong, Baek-Uk;U, Myeong-Ha;Seol, Min-Gu;Lee, Byeong-Ho;Gwon, Byeong-Du
    • 한국지구과학회:학술대회논문집
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    • 2005.09a
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    • pp.93-102
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    • 2005
  • 변산반도 서부 해안지역의 소규모 유역에 대하여 대수층을 통한 해수침투의 범위를 공간적으로 규명하기 위하여, 시추자료를 포함한 전기비저항 탐사와 지하수의 수질분석을 실시하였다. 전기비저항 탐사는 다층 구조로 되어있는 대수층 내 지하수의 수질변화 특성을 효과적으로 탐지해 낼 수 있는 수직탐사법을 이용하였으며, 탐사결과 겉보기비저항 곡선은 H type에 해당함을 알았다. 시추에 의해 3층 구조로 밝혀진 연구지역에 대하여 총 30 지점에 대한 H type 수직탐사 자료의 1차원 역산결과, 중간층과 상/하부층의 비저항 크기 차이가 크게 나타남에 따라 이 연구에서는 고전도도 지역, 중간지역, 저전도도지역 등 3가지의 영역으로 구분하였다. 15개 지점의 천부 지하수 관정에서 채취된 지하수 시료 분석결과를 TDS에 대한 HCO3/Cl과 Ca/Na 몰비로 도시하였는데, 그래프의 기울기에 따라 크게 2가지 그룹으로 구분되었다. 수직탐사의 3가지 영역과 지하수 수질 분석에 의한 2가지 그룹을 비교한 결과 낮은 농도의 HCO3/Cl과 Ca/Na를 나타내는 관정은 고전도도 지역에 위치하며, 높은 농도의 HCO3/Cl과 Ca/Na를 나타내는 관정은 저전도도 지역에 위치하는 것으로 나타났다. 따라서 이 연구에서 제시한 바와 같이 전기비저항 수직탐사 결과와 지하수 수질분석 결과를 복합 해석하는 경우 시추자료가 제한적인 해안지역 대수층을 통한 해수침투 범위를 효과적으로 규명할 수 있는 것으로 밝혀졌다.

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Distribution of Alluvium Depth by the Ordinary Kriging of Vertical Electrical Sounding Data (전기비저항 수직탐사 자료의 정규크리깅을 통한 충적층 분포도의 작성)

  • Jung, Yeon-Ho;Byun, Joong-Moo
    • Geophysics and Geophysical Exploration
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    • v.10 no.3
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    • pp.211-218
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    • 2007
  • In this study, vertical electrical sounding (VES) data and ordinary kriging are used to identify the alluvial depth of each area that Korea Resources Corporation (KORES) conducted groundwater survey at Miryang area in Gyeongsangnam-do and Pocheon area in Gyeonggi-do from 2003 to 2004. To verify the applicability of VES data to ordianry kriging, regression analysis of VES data versus drillhole data is conducted. Comparing the alluvial depth distributions using ordinary kriging with existing drillhole data, the result shows that the depth distributions are reasonably depicted along with the topography and the basin. So, the ordinary kriging of VES data is useful to identify the alluvial depth distributions.

An Electrical Resistivity Survey for the Characterization of Alluvial Layers at Groundwater Artificial Recharge Sites (지하수 인공함양 지역 충적층 특성 평가를 위한 전기비저항탐사)

  • Won, Byeongho;Shin, Jehyun;Hwang, Seho;Hamm, Se-Yeong
    • Geophysics and Geophysical Exploration
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    • v.16 no.3
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    • pp.154-162
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    • 2013
  • Vertical electrical sounding and 2D electrical resistivity survey were applied for evaluating the characteristics of alluvial layers at a groundwater artificial recharge site. The fine particles in alluvial layer, main target layer of groundwater artificial recharge, may cause clogging phenomena. In this case, electrical resistivity method is an effective technique to verify the spatial distribution of low-resistivity layers, such as saturated silts and clays. On the other hand, much attention should be paid to interpret the resistivity data in unconsolidated layers, because thick clayey overburden sometimes produces a masking effect on underlying interbedded resistive sands and gravels. Considering these points, we designed 35 points arranged in a grid form for vertical electrical sounding and 10 lines for 2D electrical resistivity survey, and concentrated our effort on enhancing the vertical and horizontal resolution of resistivity images. According to the results, 15 meters thick layers consisting of sands and gravels are located in 30 meters below ground. And the spatial distribution of silts and clays are mapped, which may cause clogging. Consequently, this approach can contribute to design and determine the location and depth of injection and observation wells for groundwater artificial recharge.

Hydrogeologic Structure derived from Electrical and CSMT Surveys in the Chojung Area (전기 및 CSMT 탐사를 이용한 초정지역의 수리지질 구조 해석)

  • Song Sung-Ho;Yong Hwan-Ho;Kim Jin-Ho;Song Seung-Yup;Chung Hyung-Jae
    • Geophysics and Geophysical Exploration
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    • v.5 no.2
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    • pp.118-125
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    • 2002
  • The hydrogeologic structure in the Chojung area was evaluated from a set of geological and geophysical investigations: detailed geological survey, vertical electric sounding (VES), borehole logging, and controlled-source magnetotelluric (CSMT) survey. Among these, CSMT soundings were taken for integrated interpretation to extend hydrogeologic structure with depth. The result of CSMT survey along with VES and borehole logging provides the vertical geologic boundary connected with hydrogeologic structure, and also indicates the depth of aquifer in granite basement. To interpret the geologic boundary and aquifer characteristics using CSMT data, we adopted the technique of 1-D inversion with smoothness-constrained method and 2-D continuous profiling with 1-D Bostick inversion and spatial filtering. The methodology tested and adopted in this study would be useful and required for providing a more information to the structure of fractured aquifer system.

Frequency Sounding in Small-Loop EM Surveys (소형루프 전자탐사법에서의 주파수 수직탐사)

  • Cho In-Ky;Lim Jin-Taik
    • Geophysics and Geophysical Exploration
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    • v.6 no.3
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    • pp.119-125
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    • 2003
  • The small-loop electromagnetic (EM) technique has been used successfully for many geophysical investigations, particularly for shallow engineering and environmental surveys. In conventional small loop EM operating at small induction numbers, geometric sounding has been widely used because the depth of penetration of EM energy depends only on the source-receiver separation. Recently developed small loop EM system, however, measures the secondary magnetic field, $H^S$, at multiple frequencies with a fixed source-receiver separation and frequency sounding is tried actively. In this study, we analyzed the behavior of in-phase and quadrature components of ${H^S}_z$, for horizonal coplanar (HCP) configuration over two-layer models. Through this theoretical analysis, it was found that the in-phase component of ${H^S}_z$ is more suitable for frequency sounding than the quadrature component. But, the in-phase component of ${H^S}_z$ is too small to measure, especially in resistive and noisy environment like Korea. Using the fact that the quadrature component is much greater than the in-phase component and the difference of quadrature component of ${H^S}_z$ measured at two frequencies shows the same behavoir as the in-phase component, we suggested an alternative frequency sounding technique. Also, we defined an apparent conductivity, which reflects well the conductivity of subsurface layers.

Investigation of Water Leakage in Seosan A-Region Sea Wall using Integrated Analysis of Remote Sensing, Electrical Resistivity Survey, Electromagnetic Survey, and Borehole Survey (원격탐사, 전기탐사, 전자기탐사 및 시추공영상의 융합적 분석을 통한 서산지역 방조제 누수구역 판별)

  • Hong, Seong-In;Lee, Dongik;Baek, Gwanghyun;Yoo, Youngcheol;Lim, Kookmook;Yu, Jaehyung
    • Economic and Environmental Geology
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    • v.46 no.2
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    • pp.105-121
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    • 2013
  • This study introduces integrated approach on detection of a leakage in a sea wall based on remote sensing, electric resistivity survey, electromagnetic survey, and borehole survey for the Seosan A-Region sea wall. The satellite temperature distribution from Landsat ETM+ data identifies water leakage distribution and period by analyzing temperature mixing patterns between sea water and fresh water. Electric resistivity survey provides both horizontal and vertical anomaly distributions over the sea wall showing below average electric resistivity. Electromagnetic survey(electrical conductivity survey) reveals the potential possible leakage areas with minimal background impact by comparing electrical conductivity values between high and low tides. Borehole image processing system confirmed the locations of anomalies identified from the other survey methods and distributions of vertical fracture zones. The integrated approach identified 41.7% of the sea wall being the most probable area vulnerable to water leakage and effectively approximated both horizontal and vertical distribution of water leakage. The integrated analysis of remote sensing, electric resistivity survey, electromagnetic survey and borehole survey is considered to be an optimal method in identifying water leakage distribution, period, and extent of fractures knowledged from the boreholes.

Geomagnetic Depth Sounding to Investigate the Trend of Electrical Conductivity in and around the Korean Peninsula (지자기 수직 탐사에 의한 한반도 주변의 전기전도도 구조)

  • 오석훈;양준모;이덕기;남재철
    • Economic and Environmental Geology
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    • v.35 no.5
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    • pp.437-444
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    • 2002
  • Geomagnetic depth sounding (GDS) was performed to analyze the characteristics of deep resistivity structure in and around the Korean Peninsula. The data that have 0.01 nT precision were collected from 5 geomagnetic observatories and measured every one or five second. In this study, amount of 16 days of geomagnetic data were used for analyzing. Generally the sea affects the GDS data seriously due to its high conductivity. However, though the Korean peninsula is surrounded by seas in three sides, the results given by induction arrow strongly show that the trend of electrical conductivity at neighborhood of the Korean Peninsula is reigned by some geological features. Also it is believed that observation in Jeju island is related with the electrical structure around the East China Sea.

A Pole-pole Electrical Survey for Groundwater (2극법 전기비저항 탐사에 의한 지하수탐사)

  • Cho Dong-heng;Jee Sang-keun
    • Geophysics and Geophysical Exploration
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    • v.3 no.3
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    • pp.88-93
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    • 2000
  • The present study may be summarized as follows. By means of a pole-pole electrical survey, major geological features, i.e, fresh rocks, fractured & weak & saturated rocks, fresh water bearing aquifer, were successfully delineated in the surveyed area of a granite region in Korea. The subsequent Schlumberger sounding and drilling confirmed the existence of the acquifer at 60 m depth as expected. But one more minor acquifer which does not show up in the resistivity depth section was met at 100 m depth. A simple forward modelling leads the authors to believe that any other electrode configuration, e.g., Wenner, Schlumberger, dipole-dipole, pole-dipole, would not detect the deeper aquifer. Under these circumstances, further studies remain to be done in connection with the spatial resolution in the vertical direction.

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지구물리탐사자료의 지리정보시스템 해석

  • Han, Su-Hyeong;Kim, Ji-Su;Sin, Jae-U;Gwon, Il-Ryong
    • Journal of the Korean Geophysical Society
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    • v.5 no.1
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    • pp.29-39
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    • 2002
  • Geophysical data sets from the Chojeong area in the Chungbok-Do are compositely studied in terms of multi-attribute interpretations for the subsurface mappings of shallow fracture zones, associated with groundwater reservoir. Utilizing a GIS software, the attribute data were implemented to a database; a lineament from the satellite image, electrical resistivities and its standard deviation, radioactivity, seismic velocity, and bedrock depth. In an attempt to interpret 1-D electrical sounding data in 3-D views, 1-D data are firstly performed horizontal and vertical inter- and extrapolation. Reconstruction of a resistivity volume is found to be an effective scheme for subsurface mapping of shallow fracture zones. Shallow fracture zones are located in the southeastern part of the study area, which are commonly correlated with the various exploration data.

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