• 제목/요약/키워드: surface-wave dispersion

검색결과 144건 처리시간 0.029초

차분 전개를 이용한 표면파 기법의 모형 응답 계산 (A Study on the Finite Difference Forward Modeling in SASW Method)

  • 하희상;신창수;서정희
    • 지구물리와물리탐사
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    • 제5권2호
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    • pp.99-107
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    • 2002
  • 표면파 기법(SASW, Spectral Analysis of Surface Waves)을 지반공학 분야에 효율적으로 적용하기 위해 모형 응답 알고리듬을 해석적으로 도출하였다. 이 논문에서는 이론적인 분산 곡선 응답 반응을 Aki and Richard에 의해 제안된 운동 응력 벡터(motion stress vector)를 이용하여 미분 방정식을 구성한 후 차분 전개를 통하여 구함으로서 동적 강성도 법이나 전파 행렬법에 비해 간단하고 빠르게 구할 수 있었다. 차분 전개를 통한 이론 분산 곡선 응답 반응 알고리즘으로 2개의 지구 모형에 대해 이론 분산 곡선을 구하여 타당성을 검증하였다. 또한 모형 응답 계산 과정에서 고려하여야 할 주파수 대역에 따른 적절한 모형의 크기에 대하여 고찰한 결과 각 파장의 $1.5\~2$배 이내로 모형의 크기를 결정할 때 경제적이고 안정적인 결과를 얻을 수 있었다.

해석적 자코비안을 이용한 표면파 기법의 역산 (Inversion of spectral analysis of surface waves with analytic Jacobian)

  • 하희상
    • 지구물리
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    • 제5권3호
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    • pp.233-245
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    • 2002
  • 이 연구에서는 표면파의 분산 특성을 지반 공학에 적용하여 비파괴 시험으로 강성도 프로파일(stiffness profile of shear)를 얻는 방법인 표면파 기법(SASW, spectral analysis of surface waves)의 효율적이고 경제적인 역산을 수행하기 위하여 해석적으로 자코비안을 도출하였다. 표면파 기법은 지하구조를 균질한 수평 층으로 가정하여 레일리 파의 파장 대 위상 속도 관계인 분산 곡선으로부터 레일리 파와 전단파 간의 속도 비례 관계를 이용하여 지하 천부의 전단파 속도 구조를 파악하는 방법이다. 해석적으로 자코비안 식을 유도하여 역산을 수행하므로서 수치적으로 자코비안을 구해 역산을 수행하는 방법에 비해 지하구조를 N개의 수평 층으로 나누었을 때 계산 시간을 2N 배 빠르게 역산을 수행할 수 있었다. 차분 전개를 통한 이론 분산 곡선 응답 반응 알고리즘으로 이론분산 곡선을 구한 후 해석적으로 도출한 자코비안을 이용하여 제한 조건을 가한 감쇠 최소 자승법을 이용하여 이론 모형에 대한 반응 양상을 검토, 고찰하여 타당성을 검증하였다. 물리적 특성을 직접 확인할 수 있었던 현장의 도로 포장체에 대해 적용하므로서 현장 적용 가능성을 확인하였다. 또한 표면파 기법의 응용으로 터널의 숏크리트 두께 및 배면의 전단파 주상도를 얻을 수 있었고 이로부터 터널의 건전성 평가를 내릴 수 있는 가능성을 제시하였다.

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Inspection of Ceramic Coatings Using Nanoindentation and Frequency Domain Photoacoustic Microscopy

  • Steen, T.L.;Basu, S.N.;Sarin, V.K.;Murray, T.W.
    • 비파괴검사학회지
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    • 제26권6호
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    • pp.390-402
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    • 2006
  • The elastic properties and thickness of mullite environmental barrier coatings grown through chemical vapor deposition (CVD) on silicon carbide substrates were measured using frequency domain photoacoustic microscopy. In this technique, extremely narrow bandwidth surface acoustic waves are generated with an amplitude modulated laser source. A photorefractive crystal based interferometer is used to detect the resulting surface displacement. The complex displacement field is mapped as a function of source-to-receiver distance in order to extract the wavelength of the surface acoustic wave at a given excitation frequency, and the phase velocity is determined. The coatings tested exhibited spatial variations in thickness and mechanical properties. The measured surface wave dispersion curves were used to extract an effective value for the elastic modulus and the coating thickness. Nanoindentation was used to validate the measurements of the effective elastic modulus. The average elastic modulus measured through the coating thickness using nanoindentation is compared to the effective modulus found using the photoacoustic system. Optical microscopy is used to validate the thickness measurements. The results indicate that the photoacoustic microscopy technique can be used to estimate the effective elastic properties in coatings exhibiting spatial inhomogeneities, potentially providing valuable feedback for the optimization of the CVD growth process.

수신함수와 표면파 분산곡선의 복합역산 및 수신함수 H-κ 중첩법을 이용한 원주 KS31 지진관측소 하부의 S파 지각 속도구조 (S-wave Velocity Structure Beneath the KS31 Seismic Station in Wonju, Korea Using the Joint Inversion of Receiver Functions and Surface-wave Dispersion Curves and the H-κ Stacking Method)

  • 전태현;김기영;박용철;강익범
    • 지구물리와물리탐사
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    • 제15권1호
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    • pp.8-15
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    • 2012
  • 원주 KS31 광대역 지진관측소 하부의 S파 속도구조를 구명하기 위해서, 2002 ~ 2009년 사이에 기록된 규모 Mw 5.5 이상의 297개 원거리 지진 이벤트 자료로부터 구한 수신함수와 표면파 분산곡선의 복합역산 및 $H-{\kappa}$ 영역에서의 중합법을 적용하였다. 분석 결과는 이 관측소 반경 수십 km 이내의 모호면 평균 깊이가 $32.4{\pm}0.5\;km$로 거의 평탄하게 놓여 있음을 지시한다. 이 지역 지각의 평균 S파 속도는 3.69 km/s이고, P파와 S파 속도비, $V_p/V_s$$1.72{\pm}0.04$로 나타나서 전형적인 육지지각의 특성을 보인다. 수신함수 1 s에 나타난 음 위상은 KS31 관측소 하부의 상부지각 10 ~ 18 km 깊이에 S파 저속도층이 존재함을 지시한다.

표면파에 대한 웨이블렛 변환을 이용한 모형 암반의 위상속도 예측 (Evaluation of phase velocity in model rock mass using wavelet transform of surface wave)

  • 이종섭;엄현석;김동현;이인모
    • 한국터널지하공간학회 논문집
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    • 제10권1호
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    • pp.69-79
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    • 2008
  • 터널 막장 전방의 암반 물성 변화의 예측은 터널 시공 시 붕괴를 막을 수 있는 중요한 요소이다. 본 연구에서는 표면파에 대한 웨이블렛 변환을 이용한 모형 암반의 위상속도를 예측하는 비파괴 시험법을 제안함으로써 터널 막장 전방의 암반 물성 변화를 예측하고자 한다. 실내 실험에서는 암반을 모사하기 위하여 강도가 각각 틀린 두 층으로 이루어진 석고 모형을 사용하였다. 가진윈은 진동 발생 가능한 주파수 대역이 150 Hz에서 5 kHz인 액츄에이터를 사용하였으며, 감지기는 두 개의 가속도계가 사용되었다. 분산곡선을 계산하기 위하여 웨이블렛 변환 해석을 수행하였다. 실내 실험 결과, 근접장 효과를 없애기 위한 최소 감지기 간격이 탐측 가능 깊이의 3배 이상으로 나타났다. 정규 분포 곡선에 기초한 가중치를 이용한 간단한 역산을 제안하였고, 파장 반영계수가 0.2일 때 예측치와 실측치가 잘 일치하였다. 표면파의 전파 깊이는 파장의 $0.42{\sim}0.63$배로 나타났으며, 분산곡선에서 파장에 따라 위상속도가 변하는 구간이 역산을 통해 계산된 구간과 잘 일치하였다. 표면파에 대한 웨이블렛 변환을 이용한 위상속도의 예측은 기존의 표면파 시험법에 비해 실험 구성 및 실험 방법, 역산과정이 간단하므로 터널 막장 전방의 암반 물성 변화를 예측하는데 효율적인 적용이 가능할 것으로 판단된다.

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Molecular Dynamics Simulation of Contact Process in AFM/FFM Surface Observation

  • Shimizu, J.;Zhou, L.;Eda, H.
    • 한국윤활학회:학술대회논문집
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    • 한국윤활학회 2002년도 proceedings of the second asia international conference on tribology
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    • pp.61-62
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    • 2002
  • In order to clarify the contact mechanism between specimen surface and probe tip in the surface observation by the AFM (atomic force microscope) or the FFM (friction force microscope), several molecular dynamics simulations have been performed. In the simulation, a 3-dimensional simulation model is proposed where the specimen and the probe are assumed to consist of mono-crystal line copper and a carbon atom respectively and the effect of cantilever stiffness is also taken into considered. The surface observation process on a well-defined Cu{100} is simulated. The influences of cantilever stiffness on the reactive force images and the behavior of probe tip were evaluated. As a resuIt, several phenomena similar to those observed by the actual surface observation experiment, such as double-slip behavior and dispersion in the stick-slip wave period were observed.

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Feasibility of MFC (Macro-Fiber Composite) Transducers for Guided Wave Technique

  • Ren, Gang;Yun, Dongseok;Seo, Hogeon;Song, Minkyoo;Jhang, Kyung-Young
    • 비파괴검사학회지
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    • 제33권3호
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    • pp.264-269
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    • 2013
  • Since MFC(macro-fiber composite) transducer has been developed, many researchers have tried to apply this transducer on SHM(structural health monitoring), because it is so flexible and durable that it can be easily embedded to various kinds of structures. The objective of this paper is to figure out the benefits and feasibility of applying MFC transducers to guided wave technique. For this, we have experimentally tested the performance of MFC patches as transmitter and sensors for excitation and reception of guided waves on the thin aluminum alloy plate. In order to enhance the signal accuracy, we applied the FIR filter for noise reduction as well as used STFT(short-time Fourier transform) algorithm to image the guided wave characteristics clearly. From the results, the guided wave generated based on MFC showed good agreement with its theoretical dispersion curves. Moreover, the ultrasonic Lamb wave techniques based on MFC patches in pitch-catch manner was tested for detection of surface notch defects of which depths are 10%, 20%, 30% and 40% of the aluminum plate thickness. Results showed that the notch was detectable well when the notch depth was 10% of the thickness or greater.

지표층의 탄성계수 측정을 위한 새로운 탄성파 방법 (CHARACTERIZATION OF GEOTECHNICAL SITES BY MULTI-CHANNEL ANALSIS OF SURFACE WAVES(MCASW))

  • 박춘병
    • 한국지반공학회:학술대회논문집
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    • 한국지반공학회 1995년도 가을 학술발표회 논문집
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    • pp.15.2-22
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    • 1995
  • Evaluating stiffness of near-surface materials has been one of the critically important tasks in many civil engineering works. It is the main goal of geotechnical characterization. The so-called deflection-response method evaluates the stiffness by measuring stress-strain behavior of the materials caused by static or dynamic load. This method, however, evaluates the overall stiffness and the stiffness variation with depth cannot be obtained. Furthermore, evaluation of a large-area geotechnical site by this method can be time-consuming, expensive, and damaging to many surface points of the site. Wave-propagation method, on the other hand, measures seismic velocities at different depths and stiffness profile (stiffness change with depth) can be obtained from the measured velocity data. The stiffness profile is often expressed by shear-wave (S-wave) velocity change with depth because S-wave velocity is proportional to the shear modulus. that is a direct indicator of stiffiiess. The crosshole and downhole method measures the seismic velocity by placing sources and receivers (geophones) at different depths in a borehole. Requirement of borehole installation makes this method also time-consuming, expensive, and damaging to the sites. Spectral-Analysis-of-Surface-Waves (SASW) method places both source and receivers at the surface, and records horizontally-propagating surface waves. Based upon the theory of surfacewave dispersion, the seismic velocities at different depths are calculated by analyzing the recorded surface-wave data. This method can be nondestructive to the sites. However, because only two receivers are used, the method requires multiple measurements with different field setups and, therefore, the method often becomes time-consuming and labor-intensive. Furthermore. the inclusion of noise wavefields cannot be handled properly, and this may cause the results by this method inaccurate. When multi-channel recording method is employed during the measurement of surface-waves, there are several benefits. First, usually single measurement is enough because multiple number (twelve or more) of receivers are used. Second, noise inclusion can be detected by coherency checking on the multi-channel data and handled properly so that it does not decrease the accuracy of the result. Third, various kinds of multi-channel processing techniques can be applied to f1lter unwanted noise wavefields and also to analyze the surface-wavefields more accurately and efficiently. In this way, the accuracy of the result by the method can be significantly improved. Fourth, the entire system of source, receivers, and recording-processing device can be tied into one unit, and the unit can be pulled by a small vehicle, making the survey speed very fast. In all these senses, multi-channel recording of surface waves is best suited for a routine method for geotechnical characterization in most of civil engineering works.

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An Analytical Solution for Regular Progressive Water Waves

  • Shin, JangRyong
    • Journal of Advanced Research in Ocean Engineering
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    • 제1권3호
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    • pp.157-167
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    • 2015
  • In order to provide simple and accurate wave theory in design of offshore structure, an analytical approximation is introduced in this paper. The solution is limited to flat bottom having a constant water depth. Water is considered as inviscid, incompressible and irrotational. The solution satisfies the continuity equation, bottom boundary condition and non-linear kinematic free surface boundary condition exactly. Error for dynamic condition is quite small. The solution is suitable in description of breaking waves. The solution is presented with closed form and dispersion relation is also presented with closed form. In the last century, there have been two main approaches to the nonlinear problems. One of these is perturbation method. Stokes wave and Cnoidal wave are based on the method. The other is numerical method. Dean's stream function theory is based on the method. In this paper, power series method was considered. The power series method can be applied to certain nonlinear differential equations (initial value problems). The series coefficients are specified by a nonlinear recurrence inherited from the differential equation. Because the non-linear wave problem is a boundary value problem, the power series method cannot be applied to the problem in general. But finite number of coefficients is necessary to describe the wave profile, truncated power series is enough. Therefore the power series method can be applied to the problem. In this case, the series coefficients are specified by a set of equations instead of recurrence. By using the set of equations, the nonlinear wave problem has been solved in this paper.