• 제목/요약/키워드: seismic refraction

검색결과 138건 처리시간 0.023초

Shallow Crustal Structure of the Bransfield Basin Using an Autonomous Underwater Hydrophone

  • ;박민규;홍종국;이주한
    • 지구물리
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    • 제9권4호
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    • pp.351-359
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    • 2006
  • We investigated subsurface structures of the Bransfield Basin, the Antarctic with AUH (Autonomous Underwater Hydrophne) which was designed to record abyssal T-waves generated from submarine earthquakes. The data obtained from a multi-channel seismic survey and an AUH were used for this study. A seismic reflection method was applied to the multi-channel seismic survey data in order to identify bathymetry and sedimentary structures, and the signals recorded in the AUH were used to obtain deep structures as we applied a seismic refraction method. Even though we couldn’t investigate deeper and detailed structure in study area because of lack of Airgun’s capacity, the AUH showed possibilities for being used for a marine seismic survey. From this experiment, we decided the upper and lower sediment layer velocities, detected irregular basement topography probably caused by submarine volcanic/magmatic activities, and retrieved the velocity of the basement and the depth of the sediment layer/basement boundary.

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남원 섬진강변 관로 매설을 위한 굴절파 탐사 (Seismic Refraction Survey for Installation of Water Pipe on a Side of the Seomjin River near Namwon)

  • 김기영;우남철;김형수
    • 지구물리
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    • 제2권3호
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    • pp.209-216
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    • 1999
  • 전라북도 남원군과 전라남도 곡성군을 경계로 흐르고 있는 섬진강의 남서쪽 강변에서 관로 매설에 필요한 지질정보 파악을 위한 굴절파 탐사를 실시하였다. 인라인 굴절법에 앞서 수행한 지오폰 간격 1 m, 오프셋 구간 -36∼+36 m의 워커웨이 자료로부터, 평균속도 585 m/s의 마른 토사층 하부에 평균 1,326 m/s의 속도를 갖는 젖은 사력층이 거의 수평 상태로 놓여 있으며, 그 하부에는 평균 4,218 m/s의 속도를 갖는 기반암이 분포하는 것으로 분석된다. 지오폰 간격 2 m로 획득한 총 220 m의 굴절파 측선자료를 GRM (Generalized Reciprocal Method) 방법으로 해석한 결과, 평균속도가 688 m/s, 1,473 m/s, 3,776 m/s인 3개 지층이 인지되며, 리핑이 불가능할 것으로 판단되는 기반암까지의 깊이는 숨은 층(hidden layer)의 영향에 따라 최소 1.51∼2.43 m부터 최대 2.25∼3.54 m까지로 구해진다. 이 지역 자료는 굴절법의 전형적인 문제점인 숨은 층 존재로 인하여 2번째 층의 두께를 정확히 계산하는데 어려움이 있다.

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웨이브글라이더를 이용한 천해저 탄성파 굴절법 탐사 사례 (Case Study of the Shallow Seismic Refraction Survey using Wave Glider)

  • 김영준;정순홍;구남형;천종화;김정기;황규덕;이호영;허신;문기돈;정철훈;홍성두
    • 지구물리와물리탐사
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    • 제20권1호
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    • pp.43-48
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    • 2017
  • 전세계적으로 장기 해양 관측에 많이 활용되고 있는 웨이브글라이더를 이용하여 천해저 굴절법 탐사의 적용가능성을 시험하였다. 굴절파 기록을 위해 웨이브글라이더에 무게 추가 달린 단일채널 스트리머와 탄성파를 기록하는 상용 소프트웨어를 탑재하였다. GPS 정밀 시간동기 신호와 RF(radio frequency) 통신을 이용하여 트리거 동기화 및 실시간 자료품질 관리를 수행하였다. 웨이브글라이더가 설정 지점에 위치하게 되면, 설계된 측선을 따라 2,000 J 용량의 스파커를 2초 간격으로 발파하면서 탐사하였다. 첫 시험탐사를 통해 성공적으로 해저 천부지층 탄성파 굴절파를 취득할 수 있었다.

대심도 탄성파 토모그래피 탐사를 이용한 암반분류 (Rock Quality using Seismic Tomography in Deep Tunnel Depths)

  • 구자갑;김영덕;권소진
    • 한국지반환경공학회 논문집
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    • 제3권3호
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    • pp.5-13
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    • 2002
  • 본 연구에서는 수도권 근처의 터널설계시 대심도 탄성파 토모그래피 탐사에 의한 탄성파 속도와 Q 값과의 상관관계를 도출하고 이를 통한 정확한 암반분류로 공사비 절감효과에 대하여 고찰하였다. 터널전구간 지표면에서 탐사를 수행하여 대심도 구간의 자료를 얻어 암반분류를 수행하였으며, 이상대 구간에서는 VSP를 통한 자료를 추가하여 보다 상세한 자료를 얻어 신뢰성 향상을 얻을 수 있었다.

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석회암 지역의 기반암 및 경계면 조사를 위한 지구물리 탐사법의 적용 (The Application of Geophysical Prospecting for Detecting Substructure and Boundary of Layer In Limestone Area)

  • 서백수;이덕재
    • 산업기술연구
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    • 제20권A호
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    • pp.285-293
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    • 2000
  • In 1970's, the analysis of shallow substructure was the interests of geological engineering and environmental problems. And seismic refraction method was applied to detect those structures. From 1980's, digital electric industry is rapidly developed and high resolution prospecting equipment is supplied. And seismic reflection method is applied to achieve various data gathering and data analysis. In this study, geophysical prospecting method is applied to calculate the basic data of limestone yield production. Seismic shallow reflection method is used to detect the depth of bedrock and electrical resistivity method is used to detect of limestone layer boundary.

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금강 부여 군수리 충적 대수층 조사를 위한 고해상도 지구물리탐사 - 탄성파 탐사 및 GPR 조사를 중심으로 -

  • 김형수;서만철;이철우;진세화
    • 한국지하수토양환경학회:학술대회논문집
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    • 한국지하수토양환경학회 2003년도 총회 및 춘계학술발표회
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    • pp.287-291
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    • 2003
  • To delineate the internal structures of alluvial aquifer, high resolution seismic and GPR methods were adopted in Buyeo Gunsu-Ri area. The result of seismic refraction survey shows the water table of the aquifer and the result of seismic reflection reveals the basement and somewhat dominant internal structures of alluvial aquifer. The internal heterogeneity due to variations in channel behavior can be delineated using GPR survey. GPR profiles for the point bar deposits near Buyeo county reveals two different stratigraphic units the lower inclined heterogeneous strata and the upper horizontally stratified strata. According to the increase of demand for water resource using artificial recharge in alluvium, it is believed that the information acquired by high resolution geophysical methods will have an important roles for the effective and sustainable development and usage of groundwater in alluvial aquifer.

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음향파 굴절을 이용한 지진파의 표면파 가림 (Seismic Surface Wave Cloaking by Acoustic Wave Refraction)

  • 이동우;강영훈;김상훈
    • 한국지진공학회논문집
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    • 제19권6호
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    • pp.257-263
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    • 2015
  • Recently two seismic cloaking methods of earthquake engineering have been suggested. One is the seismic wave deflection method that makes the seismic wave bend away and the other is the shadow zone method that makes an area that seismic waves cannot pass through. It is called as seismic cloaking. The fundamental principles of the seismic cloaking by variable refractive index were explained. A two-dimensional cylindrical model which was composed of 40 layers of different density and modulus was tested by numerical simulation. The center region of the model to be protected is called 'cloaked area' and the outer region of it to deflect the incoming wave is called 'cloaking area' or 'cloak area.' As the incoming surface wave is approaching to the cloaking area, the refractive index is decreasing and, therefore, the velocity and impedance are increasing. Then, the wave bends away the cloaked area instead of passing it. Three cases are tested depending on the comparison between the seismic wavelength and the diameter of the cloaked region. The advantage and disadvantage of the method were compared with conventional earthquake engineering method. Some practical requirements for realization in fields were discussed.

지반침하지역에서의 탄성파 굴절법 탐사 적용사례 (Case Study on the Seismic Refraction Survey in a Subsidence Area)

  • 윤상호;지준;이두성
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2000년도 가을 학술발표회 논문집
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    • pp.577-584
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    • 2000
  • Seismic refraction survey was peformed for 10 lines along NE-SW and NW-SE directions above Nampoong gallery at Makyo-ri, Dogye, Samcheok, Kangwon-do. 48 geophones were laid in line with the interval of 1m, and a 5Kg hammer was used as a source at 5 points for each line. Data processing was done using reciprocal time method, GRM, and traveltime tomography which utilizes wavefront expansion method for forward process and SIRT for inversion. The result shows that the first layer has its lower boundary between 3.49m and 8.88m. The P-wave velocity of the first and the second layer were estimated as 270 360m/s and 1550 1940m/s respectively. When the boundary of the first and second layer is smooth enough and the velocity difference is large enough, GRM has little advantage over reciprocal time method. The result of reciprocal method and traveltime tomography shows consistency. The northeast part of the boundary has syncline structure, which is similar to the topography above. This implies that the collapse of the cavities of Nampoong gallery result in the subsidence of the ground surface. The subsidence is in progress across the Youngdong railroad, therefore a proper reinforcement work is required.

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전기적 잡음이 심한 지역에서 지표-시추공 복합배열 탄성파탐사에 의한 암반등급 산정 (Rock Mass Classification by Surface-borehole Hybrid Array Seismic Refraction Tomography in the Region of Serious Electrical Noises)

  • 김예련;사상호;남순성;조철현;차영호;박종범;신경진
    • 한국철도학회:학술대회논문집
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    • 한국철도학회 2005년도 춘계학술대회 논문집
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    • pp.610-614
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    • 2005
  • Rock mass classification by using electrical resistivity tomography(ERT) method is widely performed for the determination of rock support type in tunnel design. In the region of high electrical noise level, however, the result of the ERT will have many erroneous features. In this study, the back ground electrical noise had been measured to find out the reason why the results of ERT in this area did not agree to the expected geology confirmed by boreholes. In order to overcome this limitation of ERT, a hybrid surface-borehole array seismic refraction tomography had been followed. Using this technique, we could get P-wave velocity section including the depth level of tunnel. The comparison of the P-wave velocity and RMR shows fairly good statistical relationship to make it possible to set up the rock mass classification for the entire tunnel line.

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