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신성렬(Sung-Ryul Shin),김찬수(Chan-Su Kim),여은민(Eun-Min Yeo),김영준(Young-Jun Kim) 한국마린엔지니어링학회 2005 한국마린엔지니어링학회 학술대회 논문집 Vol.2005 No.-
In this study, we have developed the high resolution multichannel seismic data acquisition system and shallow marine seismic source. It is easy to operate our source system which utilizes piezoelectric transducer of high electrical power. According to water depth, survey condition and purpose, transducer number of source system can be easily changed in order to maximize field applicability. In the recording part, we used 24 bits and 8 channel high speed A/D board in order to achieve the improvement of data quality and the efficiency of data acquisition. The developed system was tested and varied with the data acquisition parameters such as source-receiver offset, and transducer number versus water depth for the field application.
모델링 기술을 이용한 심해 Gas Hydrate의 탄성파 특성 연구
신성렬(Sung-Ryul Shin),여은민(Eun-Min Yeo),김찬수(Chan-Su Kim),김영준(Young-Jun Kim),박근필(Keun-Pil Park),이호영(Ho-Young Lee) 한국마린엔지니어링학회 2005 한국마린엔지니어링학회 학술대회 논문집 Vol.2005 No.-
Gas hydrate is ice-like crystalline lattice, formed at appropriate temperature and pressure, in which gas molecules are trapped. It is worldwide popular interesting subject as a potential energy. In korea, a seismic survey for gas hydrate have performed over the East sea by the KIGAM since 1997. In this paper, we had conducted numerical and physical modeling experiments for seismic properties on gas hydrate with field data which had been acquired over the East sea in 1998. We used a finite difference seismic method with staggered grid for 2-D elastic wave equation to generate synthetic seismograms from multi-channel surface seismic survey, OBC(Ocean Bottom Cable) and VSP(Vertical Seismic Profiling). We developed the seismic physical modeling system which is simulated in the deep sea conditions and acquired the physical model data to the various source-receiver geometry. We carried out seismic complex analysis with the obtained data. In numerical and physical modeling data, we observed the phase reversal phenomenon of reflection wave at interface between the gas hydrate and free gas. In seismic physical modeling, seismic properties of the modeling material agree with the seismic velocity estimated from the travel time of reflection events. We could easily find out AVO(Amplitude Versus Offset) in the reflection strength profile through seismic complex analysis.
신성렬(Sung-Ryul Shin),김찬수(Chan-Su Kim),여은민(Eun-Min Yeo),김영준(Young-Jun Kim),하희상(Hee-Sang Ha) 한국마린엔지니어링학회 2005 한국마린엔지니어링학회 학술대회 논문집 Vol.2005 No.-
Sub-bottom profiler(SBP) has been used extensively for the mapping of basement in the foundation design of offshore structure, for pre- and post-dredging operations within harbors and channels, for selection of pipeline routes, sitting of drilling platforms, and in the exploration for an aggregates such as sands and gravels. During the construction of Siwha embankment for irrigation water and the expansion of arable land, the breaking of an embankment unfortunately occurred so that a lot of riprap was swept away and widely dispersed by the tide and strong current. The feasibility study for the construction of the tidal-powered electric plant in Siwha embankment was performed quite recently. Therefore we made use of SBP survey to investigate the distribution of the lost riprap. We could successfully map out the distribution of the lost riprap from the reflection amplitude characteristics of the sediments in SBP data set. We demonstrated the variation of reflection amplitude versus the sediments with and/or without riprap by means of the numerical modeling of acoustic wave equation using finite difference method. Also we examined an amplitude anomaly of the ripraped area through the physical modeling using ultrasonic.
신성렬(Sung Ryul Shin),조철현(Cheol Hyun Jo) 한국암반공학회 2009 터널과지하공간 Vol.19 No.1
비파괴 물리탐사 방법의 일종인 충격반향법 조사는 터널 구조물의 시공 중 품질관리 및 시공 후 구조물의 건전성을 파악하기 위한 안전진단 분야에 널리 사용되고 있다. 충격반향법은 특히 철근콘크리트로 시공된 라이닝에 대하여 라이닝의 두께나 터널 배면 공동 등 내부 상태를 파악하는데 가장 효과적인 비파괴탐사 방법이다. 본 연구는 현장적용 사례 연구의 일환으로 철근 콘크리트 라이닝의 도로터널, NATM공법으로 시공된 지하철터널, 재래식 공법으로 시공된 도로터널 등 구조 및 형식이 다른 여러 가지 터널에 대하여 충격반향법 조사를 실시하였다. 충격반향법 탐사 결과를 기존의 설계도서, 코어링 자료 및 다른 탐사자료와 대비하였을 때 서로 잘 일치하였고 충격반향법 탐사결과의 신뢰도를 확인할 수 있었으며, 시간-주파수 분석은 구조물 내부 특성에 대한 추정을 보다 용이하게 하였다. 1차원적인 한 지점에서의 수직하부 정보를 구하는 통상적인 주파수 영역에서의 충격반향법 자료해석과 더불어 2차원적인 심도단면도를 구하는 탐사법 적용은 구조물을 보다 정확하게 영상화할 수 있기 때문에 구조물 내부에 대한 신뢰도 높은 정보 파악이 가능하였다. For the purpose of determining the thickness of concrete lining and detect of the cavity where may be located behind tunnel lining, IE (Impact-Echo) method is effectively useful in the tunnel safety diagnosis and the quality control during the construction. As a part of case study, we applied IE method to various tunnel structure types such as road tunnel and subway tunnel constructed by NATM (New Austrian Tunnelling Method) and ASSM (American Steel Support Method). As tunnel specifications estimated from this method were compared with coring data, design drawing and other survey results, it was very good agreement with each other. In conclusion, we verified that IE method shows an accurate and reliable result. The conventional interpretation of IE method in frequency domain gives only vertical information at a certain point. However, the interpretation using time-frequency analysis and depth section imaging technique from two dimensional profiling surveys can show more reliable information about structure inside.