• Title/Summary/Keyword: A wave velocity

검색결과 2,013건 처리시간 0.034초

Oceanic Variables extracted from Along-Track Interferometric SAR Data

  • Kim, Duk-Jin;Moon, Wooil-M.
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2002년도 Proceedings of International Symposium on Remote Sensing
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    • pp.429-434
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    • 2002
  • The Synthetic Aperture Radar (SAR) data are considered to contain the greatest amount of information among various microwave techniques developed for measuring ocean variables from aircraft or satellites. They have the potential of measuring wavelength, wave direction and wave height of the ocean waves. But, it is difficult to retrieve significant ocean wave heights and surface current from conventional SAR data, since the imaging mechanism of ocean waves by a SAR is determined by the three basic modulation processes arise through the tilt modulation, hydrodynamic modulation and velocity bunching which are poorly known functions. Along-Track Interferometric (ATI) SAR systems can directly detect the Doppler shift associated with each pixel of a SAR image and have been used to estimate wave fields and surface currents. However, the Doppler shift is not simply proportional to the component of the mean surface current. It includes also contributions associated with the phase velocity of the Brags waves and orbital motions of all ocean waves that are longer than Brags waves. In this paper, we have developed a new method for extracting the surface current vector using multiple-frequency (L- & C-band) ATI SAR data, and have generated surface wave height information.

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Influence of imperfectly bonded piezoelectric layer with irregularity on propagation of Love-type wave in a reinforced composite structure

  • Singh, Abhishek Kumar;Chaki, Mriganka Shekhar;Hazra, Bristi;Mahto, Shruti
    • Structural Engineering and Mechanics
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    • 제62권3호
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    • pp.325-344
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    • 2017
  • The present paper investigates the propagation of Love-type wave in a composite structure comprised of imperfectly bonded piezoelectric layer with lower fiber-reinforced half-space with rectangular shaped irregularity at the common interface. Closed-form expression of phase velocity of Love-type wave propagating in the composite structure has been deduced analytically for electrically open and short conditions. Some special cases of the problem have also been studied. It has been found that the obtained results are in well-agreement to the Classical Love wave equation. Significant effects of various parameters viz. irregularity parameter, flexibility imperfectness parameter and viscoelastic imperfectness parameter associated with complex common interface, dielectric constant and piezoelectric coefficient on phase velocity of Love-type wave has been reported. Numerical computations and graphical illustrations have been carried out to demonstrate the deduced results for various cases. Moreover, comparative study has been performed to unravel the effects of the presence of reinforcement and piezoelectricity in the composite structure and also to analyze the existence of irregularity and imperfectness at the common interface of composite structure in context of the present problem which serves as a salient feature of the present study.

일 유입유량 변동과 공정내 표면파 전파속도 상관성 분석 (Analysis of relationship between daily inflow rate fluctuation and surface wave transfer velocity in water treatment processes)

  • 박노석;임성은;김성수;황준식;정남정
    • 상하수도학회지
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    • 제22권2호
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    • pp.239-243
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    • 2008
  • The fluctuation of inlet flow to a water treatment plant makes a serious problem that it can change the outlet flow-rate from each process abruptly, and ultimately occur the detachment of the attached particles inside each unit process. Also, since it takes very short time for the surface wave occurred from the fluctuation of inlet flow to reach the latter processes, it is impossible for operators to cope with that stably. Therefore this study was conducted to suggest the methodology for accurately predicting the travel time of surface wave occurred from the fluctuation of inlet flow to reach the latter process. Through the experiment, which was carried out for the full-scale water treatment plants(capacity : 2,000m3/d), it could be confirmed that the flow rate fluctuation from equalization tank produce the surface wave. And the wave transfer velocity is a function of the hydraulic radius and the length of each open type tanks which are comprised in the latter processes.

Wave propagation analysis of smart strain gradient piezo-magneto-elastic nonlocal beams

  • Ebrahimi, Farzad;Barati, Mohammad Reza
    • Structural Engineering and Mechanics
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    • 제66권2호
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    • pp.237-248
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    • 2018
  • This study presents the investigation of wave dispersion characteristics of a magneto-electro-elastic functionally graded (MEE-FG) nanosize beam utilizing nonlocal strain gradient theory (NSGT). In this theory, a material length scale parameter is propounded to show the influence of strain gradient stress field, and likewise, a nonlocal parameter is nominated to emphasize on the importance of elastic stress field effects. The material properties of heterogeneous nanobeam are supposed to vary smoothly through the thickness direction based on power-law form. Applying Hamilton's principle, the nonlocal governing equations of MEE-FG nanobeam are derived. Furthermore, to derive the wave frequency, phase velocity and escape frequency of MEE-FG nanobeam, an analytical solution is employed. The validation procedure is performed by comparing the results of present model with results exhibited by previous papers. Results are rendered in the framework of an exact parametric study by changing various parameters such as wave number, nonlocal parameter, length scale parameter, gradient index, magnetic potential and electric voltage to show their influence on the wave frequency, phase velocity and escape frequency of MEE-FG nanobeams.

Wave propagation in a concrete filled steel tubular column due to transient impact load

  • Ding, Xuanming;Fan, Yuming;Kong, Gangqiang;Zheng, Changjie
    • Steel and Composite Structures
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    • 제17권6호
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    • pp.891-906
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    • 2014
  • This study aims to present a three dimensional finite element model to investigate the wave propagation in a concrete filled steel tubular column (CFSC) due to transient impact load. Both the concrete and steel are regarded as linear elastic material. The impact load is simulated by a semi sinusoidal impulse. Besides the CFSC models, a concrete column (CC) model is established for comparing under the same loading condition. The propagation characteristics of the transient waves in CFSC are analyzed in detail. The results show that at the intial stage of the wave propagation, the velocity waves in CFSC are almost the same as those in CC before they arrive at the steel tube. When the waves reach the column side, the velocity responses of CFSC are different from those of CC and the difference is more and more obvious as the waves travel down along the column shaft. The travel distance of the wave front in CFSC is farther than that in CC at the same time. For different wave speeds in steel and concrete material, the wave front in CFSC presents an arch shape, the apex of which locates at the center of the column. Differently, the wave front in CC presents a plane surface. Three dimensional effects on top of CFSC are obvious, therefore, the peak value and arrival time of incident wave crests have great difference at different locations in the radial direction. High-frequency waves on the waveforms are observed. The time difference between incident and reflected wave peaks decreases significantly with r/R when r/R < 0.6, however, it almost keeps constant when $r/R{\geq}0.6$. The time duration between incident and reflected waves calculated by 3D FEM is approximately equal to that calculated by 1D wave theory when r/R is about 2/3.

P-파 속도 영상화에 근거한 물로 포화된 이방성 사암에서의 $CO_2$ 이동에 관한 실험 연구 (Laboratory study of $CO_2$ migration in water-saturated anisotropic sandstone, based on P-wave velocity imaging)

  • 설 자구;뢰 흥림
    • 지구물리와물리탐사
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    • 제9권1호
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    • pp.10-18
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    • 2006
  • 물로 포화된 이방성 사암에 기체상, 액체상, 그리고 초임계상의 $CO_2$를 주입하면서 P 파의 속도 변화를 측정하였다. 층리면에 수직한 방향과 수평 방향을 따라 시추한 2 개의 원통 모양의 Tako 사암들에 압전 송수신 배열 시스템을 이용하여 P 파 속도를 측정하였다. $CO_2$ 주입으로 인한 속도 변화는 일반적으로 -6%의 평균값을 보였으며 초임계상의 $CO_2$를 주입하는 경우에 약 -16%의 최대값을 나타냈다. 차분도착주시법(differential arrival-time)으로부터 얻은 P 파 속도 토모그램은 $CO_2$의 유동이 층리면에 평행할 때보다 수직한 경우 $CO_2$의 이동 양상이 더 복잡하다는 것을 명백히 보여주고 있다. 또한 P 파 속도 영상의 차이가 $CO_2$의 상과 암석내 공극분포의 불균질성과 관련되었음을 발견하였다. 초임계상의 $CO_2$를 주입한 경우, 탄성파 영상은 기체상과 액체상의 $CO_2$를 주입한 경우에 비해 가장 큰 속도 감소를 보였다 이 결과는 지중 격리시 $CO_2$ 모니터링에 대한 탄성파 방법의 효용을 확신시켜 줄 것이다.

산지하천의 전자파 표면유속 측정에 기반한 유량 및 유속 관측 오차 분석 (Error Analysis for Electromagnetic Surface Velocity and Discharge Measurement in Rapid Mountain Stream Flow)

  • 김동수;양성기;정우열
    • 한국환경과학회지
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    • 제23권4호
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    • pp.543-552
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    • 2014
  • Fixed Electromagnetic Wave Surface Velocimetry (Fixed EWSV) has been started to be used to measure flood discharge in the mountain stream, since it has various advantages such that it works well to continuously measure stream discharge even in the night time as well as very strong weather. On the contrary, the Fixed EWSV only measures single point surface velocity, thus it does not consider varying feature of the transverse velocity profile in the given stream cross-section. In addition, a conventional value of 0.85 was generally used as the ratio for converting the measured surface velocity into the depth-averaged velocity. These aspects could bring in error for accurately measuring the stream discharge. The capacity of the EWSV for capturing rapid flow velocity was also not properly validated. This study aims at conducting error analysis of using the EWSV by: 1) measuring transverse velocity at multiple points along the cross-section to assess an error driven by the single point measurement; 2) figuring out ratio between surface velocity and the depth-averaged velocity based on the concurrent ADCP measurements; 3) validating the capacity of the EWSV for capturing rapid flow velocity. As results, the velocity measured near the center by the fixed EWSV overestimated about 15% of the cross-sectional mean velocity. The converting ratio from the surface velocity to the depth-averaged velocity was 0.8 rather than 0.85 of a conventional ratio. Finally, the EWSV revealed unstable velocity output when the flow velocity was higher than 2 m/s.

맥파 전달 속도(PWV) 측정을 위한 특징점 검출 알고리즘 개발 (Development of Feature Points Detection Algorithm for Measuring of Pulse Wave Velocity)

  • 최정현;조욱현;박준호;김남훈;성향숙;조종만
    • 센서학회지
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    • 제20권5호
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    • pp.343-350
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    • 2011
  • The compliance and stiffness of artery are closely related with disease of arteries. Pulse wave velocity(PWV) in the blood vessel is a basic and common parameter in the hemodynamics of blood pressure and blood flow wave traveling in arteries because the PWV is affected directly by the conditions of blood vessels. However, there is no standardized method to measure the PWV and it is difficult to measure. The conventional PWV measurement has being done by manual calculation of the pulse wave transmission time between coronary arterial proximal and distal points on a strip chart on which the pulse wave and ECG signal are recorded. In this study, a pressure sensor consisting of strain gauges is used to measure the blood pressure of arteries in invasive method and regular ECG electrodes are used to record the ECG signal. The R-peak point of ECG is extracted by using a reference level and time windowing technique and the ascending starting point of blood pressure is determined by using differentiation of the blood pressure signal and time windowing technique. The algorithm proposed in this study, which can measure PWV automatically, shows robust and good results in the extraction of feature points and calculation of PWV.

응력파속도를 이용한 부착식 PSC 텐던의 긴장력 추정 (Estimation of Prestressed Tension on Grouted PSC Tendon Using Measured Elastic Wave Velocity)

  • 김병화;장정범;이홍표;이일근
    • 대한토목학회논문집
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    • 제32권5A호
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    • pp.289-297
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    • 2012
  • 본 연구는 부착식 PSC 텐던의 응력파 속도를 계측하여 텐던에 도입된 긴장응력을 추정 할 수 있는 실험식을 제안한다. 실용적 실험식의 도출을 위하여 도입 긴장력이 다른 다수의 PSC시험체가 제작되었으며, 다양한 조건에서 종진동 실험이 반복 수행되었다. 도입 응력과 응력파 속도 사이의 관계에 영향을 미칠 수 있는 온도, 길이 및 텐던의 개수 등이 영향인자로 고려되었으며, 상사의 법칙을 적용하여 무차원 실험식이 도출 되었다. 제안 기법의 현장 적용성 검증은 실제 발전소 격납건물에 설치된 수직텐던에 대하여 수행되었다. 제안식을 이용하여 추정된 긴장응력은 텐던의 설계응력과 유사하다.

해양 다성분 탄성파 자료를 이용한 가스하이드레이트 유망지역의 BSR 상하부 S파 속도 도출 (S-wave Velocity Derivation Near the BSR Depth of the Gas-hydrate Prospect Area Using Marine Multi-component Seismic Data)

  • 김병엽;변중무
    • 자원환경지질
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    • 제44권3호
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    • pp.229-238
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    • 2011
  • 가스하이드레이트 부존량 평가에 있어서 해당 부존 지역의 S파 속도 정보는 암상과 공극유체의 정보를 파악하는데 결정적인 역할을 한다. 만일 퇴적층 내에 가스하이드레이트가 존재한다면 이 층에서의 P파 속도와 S파 속도는 동시에 증가하게 되며, 그 하부에 자유가스가 존재하는 경우 P파의 속도는 감소한다. 하지만 S파의 경우 공극을 채우고 있는 유체의 영향을 받지 않고 순수하게 매질을 통해서 진행하므로 하이드레이트 층의 하부에 자유가스층이 존재한다고 해도 그 속도가 변하지 않거나 오히려 매질의 영향으로 그 속도가 증가한다. 본 연구에서는 이러한 특성을 확인하기 위해 울릉분지의 가스하이드레이트 유망지역 중 탄성파 단면상에서 BSR(해저변 모방 반사면)이 강하게 분포하는 한 지점에서 한국지질자원연구원이 2009년 5월에 OBS(해저면 탄성파 기록계)를 이용하여 취득한 해저면 다성분 탄성파 자료를 이용하여 가스하이드레이트 부존 심도 부근의 P파 빛 모드전환 S파의 속도를 구하였다.OBS의 하이드로폰(hydrophone) 성분에 기록된 P파 자료를 이용하여 탄성파 주시 역산법을 수행하여 P파 속도 및 섬도 구조를 도출하였다. 해당지역에 취득한 2차원 반사법 탐사 자료는 기본 전산처리를 통해 구한 탐사지역의 기본 층서모델을 초기모델로 삼았다. 여기에 수평 2성분 지오폰(geophone)에 기록된 자료의 극성 분석을 통해 S파의 에너지가 최대로 모인 radial 성분 단면도를 생성하고 여기서 발췌한 주요 S파 이벤트의 주시를 이용해 포아송 비 정모델링을 수행하여 OBS가 위치한 지점에서의 포아송 비와 S파 속도구조를 최종적으로 도출하였다. 본 연구를 통해 탐사지역의 가스하이드레이트 존재로 인한 BSR 상하부 층의 P파 속도 역전 현상과 P파와는 달리 BSR 상부에서 히부로 갈수록 S파의 속도가 약간 증가하는 경향을 보여 결과적으로 자유가스층의 존재로 인한 BSR 하부에서 포아송 비 감소현상이 뚜렷함을 확인하였다.