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Unusual Presentation of The Popliteal Venous Aneurysm : A Case Report 증례보고
Joh, Joon-Hee,Park, Jai-Soung,Paik, Sang-Hyun,Cha, Jang-Gyu,Park, Seong-Jin,Hong, Hyun-Sook,Kim, Dae-Ho,Lee, Hae-Kyung 순천향의학연구소 2004 Journal of Soonchunhyang Medical Science Vol.10 No.2
Primary venous aneurysm (PVA) is a rare condition and in most cases of little clinical significance, whereas PVA's are potentially life threatening because they have been recognized to be a source of recurrent pulmonary embolism. Recently, we experienced a case of PVA without obvious pulmonary embolism that was managed by surgery. And we report rediologic findings of the venography, Magnetic Resonance Imaging (MRI) and operation.
Assessment of Structural Integrity for a Concrete Runway by Seismic Techniques
Joh, Sung Ho,Kang, Tae Ho,Kwon, Soo Ahn Trans Tech Publications, Ltd. 2006 Key Engineering Materials Vol.321 No.-
<P>Concrete runways are subject to material deterioration or structural problems, which lead to surface cracks and scaling of a concrete pavement. In this study, seismic techniques including the SASW method, the impact-echo method and the impulse-response method were integrated into a systematic nondestructive approach, which is designed for the assessment of structural integrity of concrete runway pavements. Numerical simulation of the employed seismic methods was performed to verify the validity. For feasibility, the integrated approach was applied to a concrete runway which has surface cracks at pavement segments not subject to airplane loading. The approach verified that the surface cracks were attributed to reduced subgrade stiffness, which may not be detected by conventional pavement tests. The validity of the integrated approach was also proven in lieu of forensic engineering for concrete runway pavements.</P>
Development of an Inversion Analysis Technique for Downhole Testing and Continuous Seismic CPT
Joh, Sung-Ho,Mok, Young-Jin Korean Geotechnical Society 1998 韓國地盤工學會誌 Vol.14 No.3
지반의 S파 및 P파의 깊이에 따른 변화를 원위치에서 측정하기 위하여 다운흘 시험 (downhole testing)과 SCPT (seismic CPT) 등이 널리 사용되어 왔다. 다운홀 시험과 SCPT는 경제성, 운용의 용이성, 발진원의 단순성 등의 측면에서 효율적이기 때문에, 현재 지반조사에서 그 사용빈도가 더욱 증가하고 있는 추세이다. 특히 최근에는 다운흘과 SCPT의 자료 분석을 자동화하기 위한 노력의 일환으로 interval measurements의 기법이 활용되고 있는데, 현재 이에 대한 적절한 역산해석 (inversion analysis) 기법이 없는 형편이다. 따라서, 본 논문에서는 다운홀이나 SCPT의 interval measurements를 분석하기 위한 새로운 역산해석 기법을 제안하였다. 제안된 역산해석 기법의 정모델링(forward modeling)에서는 탄성파의 전파를 Snell의 법칙에 의거하여 굴절.반사되는 현상을 고려하였곡, 역산해석을 위해서는 최대공산법 (maximum likelihood method)을 적용하였다. 그리고, 본 논문에서 제안한 역산해석 기법의 검증을 위하여, 하나의 S파 주상도를 가정하고 이에 대하여 다운흘 시험을 모사하였다. 이론적으로 수행한 다운홀 시험 결과에 대하여 기존의 비 역산해석 방법과 본 논문에서 제안한 역산해 석 기법에 의해서 S파 주상도를 추정하였는데, 그 결과 본 논문에서 제시한 역산기법이 가장 정확한 결과를 도출하였으며, 다운홀 시험과 SCPT을 자동화하는데 효율적으로 적용이 될 수 있음을 입증하였다. Downhole testing and seismic CPT (SCPT) have been widely used to evaluate stiffness profiles of the subgrade. Advantages of downhole testing and SCPT such as low cost, easy operation and a simple seismic source have got these testings more frequently adopted in site investigation. For the automated analysis of downhole testing and SCPT, the concept of interval measurements has been practiced. In this paper. a new inversion procedure to deal tilth the interval measurements for the automated downhole testing and SCPT (including a newlydeveloped continuous SCPT) is proposed. The forward modeling in the new inversion procedure incorporates ray path theory based on Snell's law. The formulation for the inversion analysis is derived from the maximum likelihood approach, which estimates the maximum likelihood of obtaining a particular travel time from a source to a receiver. Verification of the new inversion procedure was performed with numerical simulations of SCPT using synthesized profiles. The results of the inversion analyses performed for the synthetic data show that the new inversion analysis is a valid procedure which enhances Va profiles determined by downhole testing and SCPT.
도심지 지반 전단파속도 탐사를 위한 P-파 속도와 전기비저항의 이종 결합
조성호(Joh Sung-Ho),김봉찬(Kim Bong-Chan) 대한토목학회 2010 대한토목학회논문집 C Vol.30 No.1
지하철 터널 시공, 지하공간 시공, 대심도 굴착 등과 같이 도심지에서의 토목구조물 설계와 시공에 있어서 큰 어려움 중의 하나는 도심지 지반조사이다. 여러 가지 지장물, 전기 잡음, 교통 진동 등과 같은 자연적, 인위적 장애물로 인하여 어느 지반조사 기법이든지 그 결과의 신뢰성은 그리 높지 않은 상황이다. 본 연구에서는 이와 같이 현실적 요구가 높은 고품질 도심지 지반조사 기법의 개발을 목표로 하여 선행연구를 수행하였고, 일차적으로 HiRAS(Hybrid Integration of Resistivity and Surface Wave Velocities) 라고 하는 표면파-전기비저항 병합기법을 개발하였다. HiRAS 기법은 표면파 기법인 CapSASW 기법과 전기비저항 기법인 PDC-R 기법을 병합한 것으로서, 지반 매질의 강성 평가에 우수한 CapSASW 기법의 장점과, 전기잡음에 대한 내성과 지층변화 평가에 우수한 특성을 가진 PDC-R 기법의 장점을 동시에 활용하고자 한 것이다. 표면파 기법과 전기비저항 기법을 동시에 활용하는 역산해석의 측면에서는 표면파 기법의 탄성파 속도와 전기비저항 시험의 전기비저항 간의 부지고유관계를 이용하여 병합역산을 수행하는 전략을 채택하였다. 또한 HiRAS 기법 개발과정에서 부차적으로 지반매질의 포아송비 분포를 2차원으로 평가할 수 있는 성과도 도출하였다. In urban area, design and construction of civil engineering structures such as subway tunnel, underground space and deep excavation is impeded by unreliable site investigation. Variety of embedded objects, electric noises and traffic vibrations degrades the quality of site investigation, whatever the site-investigation technique would be. In this research, a preliminary research was performed to develop a dedicated site investigation technique for urban geotechnical sites, which can overcome the limitations of urban sites. HiRAS (Hybrid Integration of Surface Waves and Resistivity) technique which is the first outcome of the preliminary research was proposed in this paper. The technique combines surface wave as well as electrical resistivity. CapSASW method for surface-wave technique and PDC-R technique for electrical resistivity survey were incorporated to develop HiRAS technique. CapSASW method is a good method for evaluating material stiffness and PDC-R technique is a reliable method for determination of underground stratification even in a site with electrical noise. For the inversion analysis of HiRAS techniuqe, a site-specific relationship between stress-wave velocity and resistivity was employed. As for outgrowth of this research, the 2-D distribution of Poisson's ratio could be also determined.
강성특성치를 이용한 고속전철 콘크리트궤도의 처짐가능성 평가
조성호(Joh Sung-Ho),이일화(Lee Il-Wha),황선근(Hwang Seon Keun),강태호(Kang Tae-Ho),김석철(Kim Seok-Chul) 한국철도학회 2009 한국철도학회 세미나자료 Vol.2009 No.5
Concrete tracks are superior to ballast tracks in the aspect of durability, maintenance and safety. However, deteriorated stiffness of railroad bed and settlement of soft ground induced by trapped or seepage water lead to problems in safety of train operation. In this research, characteristic stiffness of concrete tracks, which is determined from FRACTAL (Flexural-Rigidity Assessment of Concrete Tracks by Antisymmetric Lamb Waves) technique, was employed as an index of track displacement. The characteristic stiffness is defined using Poisson's ratio, moment of inertia and stiffness ratio of subgrade to slab. To verify validity and reliability of the proposed characteristic stiffness, experimental and theoretical researches were performed. Feasibility of the characteristic stiffness based on FRACTAL technique was proved at a real concrete track for Korean high-speed trains. Validity of the FRACTAL technique was also verified by comparing the results of impulse-response tests performed at the same measurement array and the results of SASW tests and DC resistivity survey performed at a shoulder nearby the track.