• 제목/요약/키워드: ultrasonic wave modeling

검색결과 27건 처리시간 0.021초

SBP를 이용한 해저 천부에 유실된 사석의 조사 (Mapping of the lost riprap in shallow marine sediments using SBP)

  • 신성렬;김찬수;여은민;김영준;하희상
    • 한국마린엔지니어링학회:학술대회논문집
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    • 한국마린엔지니어링학회 2005년도 후기학술대회논문집
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    • pp.220-221
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    • 2005
  • 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.

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터널 지보구조 진단을 위한 초음파 스윕 발생원의 반사법 응용 가능성 연구 - 모형실험을 중심으로 - (Study on the Applicability of Reflection Method using Ultrasonic Sweep Source for the Inspection of Tunnel Lining Structure - Physical Modeling Approach -)

  • 김중열;김유성;신용석;현혜자
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 2001년도 봄 학술발표회 논문집
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    • pp.167-174
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    • 2001
  • Reflection method using ultrasonic source has been attempted to obtain the information about tunnel lining structures composed of lining, shotcrete, water barrier and voids at the back of lining. In this work, two different types of sources, i.e. single-pulse source and sweep source, can be used. Single-pulse source with short time duration has the frequency content whose amplitudes tend to be concentrated around the dominant frequency, whereas sweep source with long time duration denotes a flat distribution of relatively larger amplitude over a broad frequency band, although the peak to peak amplitude of single-pulse source wavelet is equivalent to that of sweep source one. In traditional seismic application, a single-pulse source(weight drop, dynamite) is typically used. However, to investigate the fine structure, as it is the case in the tunnel lining structure, the sweep wavelet can be also a desirable source waveform primarily due to the higher energy over a broad frequency band. For the investigation purposes of sweep source, a physical modeling is a useful tool, especially to study problems of wave propagation in the fine layered media. The main purpose of this work was using a physical modeling technique to explore the applicability of sweep source to the delineation of inner layer boundaries. To this end, a two-dimensional physical model analogous to the lining structure was built and a special ultrasonic sweep source was devised. The measurements were carried out in the sweep frequency range 10 ∼ 60 KHz, as peformed in the regular reflection survey(e.g. roll-along technique). The measured data were further rearranged with a proper software (cross-correlation). The resulting seismograms(raw data) showed quitely similar features to those from a single-pulse source, in which high frequency content of reflection events could be considerably emphasized, as expected. The data were further processed by using a regular data processing system "FOCUS" and the results(stack section) were well associated with the known model structure. In this context, it is worthy to note that in view of measuring condition the sweep source would be applied to benefit the penetration of high frequency energy into the media and to enhance the resolution of reflection events.

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금속 박막의 유도초음파 분산 특성 연구 (Investigation on Guided Wave Dispersion Characteristics for Metal Thin Films)

  • 김미소;조승현;장강원;이승석;박익근
    • 비파괴검사학회지
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    • 제34권3호
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    • pp.233-240
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    • 2014
  • 나노/마이크로 소자의 개발이 활발해짐에 따라 나노/마이크로 박막의 기계적 물성의 정밀 측정에 대한 필요성이 점차 커지고 있다. 기존의 파괴적인 방법의 한계를 극복하기 위한 방법으로, 유도초음파를 이용한 비파괴적인 박막 물성 방법에 대한 관심이 늘어나고 있다. 유도초음파를 이용하여 박막의 물성을 측정하는 실험을 설계하거나, 물성 측정에 대한 실험 결과를 이해하는데 있어 박막의 분산선도를 이해하는 것은 필수적이라 할 수 있다. 본 연구에서는, 전달 행렬법을 이용하여 박막의 분산선도를 계산하는 방법을 제시하고, 이를 금속 박막에 적용하여 그 특성을 관찰하였다. 전달 행렬법을 이용하여 다층판에서의 주파수에 따라 유도초음파가 전파하는 속도를 계산하여 상용 프로그램과 비교하여 그 타당성을 확인하였다. 이러한 방법을 Si 기판 위에 증착된 Al 금속 박막에 적용하여 얻은 분산곡선의 분석을 통해, 박막의 두께 조건에 따른 모드와 분산 및 비분산 특성이 나타나는 구간을 관찰할 수 있었다.

역전파신경회로망을 이용한 피로손상모델링에 관한 연구 (A Study on Fatigue Damage Modeling Using Back-Propagation Neural Networks)

  • 조석수;장득열;주원식
    • 한국자동차공학회논문집
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    • 제7권6호
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    • pp.258-269
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    • 1999
  • It is important to evaluate fatigue damage of in-service material in respect to assure safety and remaining fatigue life in structure and mechanical components under cyclic load . Fatigue damage is represented by mathematical modelling with crack growth rate da/dN and cycle ration N/Nf and is detected by X-ray diffraction and ultrasonic wave method etc. But this is estimated generally by single parameter but influenced by many test conditions The characteristics of it indicates fatigue damage has complex fracture mechanism. Therefore, in this study we propose that back-propagation neural networks on the basis of ration of X-ray half-value breath B/Bo, fractal dimension Df and fracture mechanical parameters can construct artificial intelligent networks estimating crack growth rate da/dN and cycle ratio N/Nf without regard to stress amplitude Δ $\sigma$.

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터널 지보구조 진단을 위한 고주파수 탄성파 반사법의 응용성 연구 - 모형 실험을 중심으로 - (Study on the Applicability of High Frequency Seismic Reflection Method to the Inspection of Tunnel Lining Structures - Physical Modeling Approach -)

  • 김중열;김유성;신용석;현혜자;정현기
    • 한국터널지하공간학회 논문집
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    • 제2권3호
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    • pp.37-45
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    • 2000
  • 콘크리트 라이닝, 방수막, 숏크리트 및 공동 등으로 구성된 터널 지보구조는 탄성파 반사법 응용면에서 일종의 박층구조로 간주될 수 있다. 그런데, 각 구성 매질의 경계면 및 물성은 무엇보다 터널 안정성평가를 위한 주요 정보가 되기 때문에 이에 대한 정밀 조사기법의 개발이 크게 요구되고 있는 실정이다. 최근, 국내 외에서 시도된 바 있는 GPR이나 Impact-Echo는 우선 박층에 대한 발생원 파형 길이(파장)면에서도 타당성을 잃게 되어 내부구조 분해능에 대한 상당한 불확실성을 나타내고 있다. 더구나, 현장응용에서 얻게되는 탄성파기록에는 여러 가지 불필요한 탄성파 도달 즉, 큰 진폭의 표면파, S파 반사파 및 변환파는 서로 중첩되어 지배적으로 발달될 것이 기대되기 때문에 이에 대처한 효율적인 측정 및 분석기법 개발이 불가피하다. 탄성파 모형 실험은 바로 상기 복합적인 문제를 구체화하고 또한 그에 따른 기술 개발을 촉진할 수 있는 유용한 기능을 갖고 있다. 따라서, 본 논문에는 터널 지보구조에 대등한 모형을 대상으로 탄성파 반사법 본연의 측정기법(roll-along법) 및 전산처리 과정에 의해 데이터를 취득하고 또한 전산처리 함으로써 주어진 내부구조를 어느 정도까지 재현할 수 있는가를 보여주고 있다. 비록, 측정 데이터에는 유용한 반사파보다는 이미 예상한 바 상기 불필요한 탄성파의 도달이 지배적으로 발달되고 있음이 관찰되었으나 적절한 측정 및 전산처리 과정은 주어진 내부구조에 대한 바람직한 결과를 초래하였다. 이러한 연구결실은 우선 선진국에서도 난제로 되어온 터널 지보구조 규명을 위한 하나의 계기를 마련함은 물론 나아가서 그의 현실화를 위한 기술개발을 가속화할 것으로 사료된다.

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Ultrasonic Characterization on Sequences of CFRP Composites Based on Modeling and Motorized System

  • Im, Kwang-Hee;David K. Hsu;Song, Sung-Jin;Park, Je-Woung;Sim, Jae-Ki;Yang, In-Young
    • Journal of Mechanical Science and Technology
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    • 제18권1호
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    • pp.65-73
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    • 2004
  • Composites are a material class for which nondestructive material property characterization is as important as flaw detection. Laminates of fiber reinforced composites often possess strong in-plane elastic anisotropy attributable to the specific fiber orientation and layup sequence when waves are propagating in the thickness direction of composite laminates. So the layup orientation greatly influences its properties in a composite laminate. It could result in the part being .ejected and discarded if the layup orientation of a ply is misaligned. A nondestructive technique would be very beneficial, which could be used to test the part after curing and requires less time than the optical test. Therefore a ply-by-ply vector decomposition model has been developed, simplified, and implemented for composite laminates fabricated from unidirectional plies. This model decomposes the transmission of a linearly polarized ultrasound wave into orthogonal components through each ply of a laminate. Also in order to develop these methods into practical inspection tools, motorized system have been developed for different measurement modalities for acquiring ultrasonic signals as a function of in-plane angle. It is found that high probability shows between the model and tests developed in characterizing cured layups of the laminates.

Prediction of the Dependence of Phase Velocity on Porosity in Cancellous Bone

  • Lee, Kang-Il;Choi, Min-Joo
    • The Journal of the Acoustical Society of Korea
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    • 제27권2E호
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    • pp.45-50
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    • 2008
  • In recent years, quantitative ultrasound (QUS) technologies have played a growing role in the diagnosis of osteoporosis. Most of the commercial bone somometers measure speed of sound (SOS) and/or broadband ultrasonic attenuation (EUA) at peripheral skeletal sites. However, the QUS parameters are purely empirical measures that have not yet been firmly linked to physical parameters such as bone strength or porosity. In the present study, the theoretical models for wave propagation in cancellous bone, such as the Biot model, the stratified model, and the modified Biot-Attenborough (MBA) model, were applied to predict the dependence of phase velocity on porosity in cancellous bone. The optimum values for the input parameters of the three models in cancellous bone were determined by comparing the predictions with the previously published measurements in human cancellous bone in vitro. This modeling effort is relevant to the use of QUS in the diagnosis of osteoporosis because SOS is negatively correlated to the fracture risk of bone, and also advances our understanding of the relationship between phase velocity and porosity in cancellous bone.