• 제목/요약/키워드: wave attenuation

검색결과 471건 처리시간 0.029초

실효유전율을 이용한 강우감쇠 예측 모델에 관한 연구 (A study on the rain attenuation prediction model using effective permittivity)

  • 김혁제;조삼모
    • 한국전자파학회논문지
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    • 제9권1호
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    • pp.52-59
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    • 1998
  • 빗방울이 랜덤하게 분포한 대기를 하나의 실효유전율을 가진 단일 매질로 가정하고 그 매질 내에서 전파가 진행시 감쇠량을 계산하였다. 실효유전율은 빗방울의 유전율과 빗방울이 대기 중에 차지하는 체적 동의 함수로 표현되는데, 주파수와 온도에 따라 변하는 빗방울의 유전율을 계산하고 Marshall-Palmer의 빗방울 크기분포를 이용하여 대기 중 빗방울이 차지하는 체적을 계산하였다. 빗방울이 산재한 대기를 단일 매질로 가정하고 실효유전율을 이용하여 강우에 의한 강우감죄량을 예측한 본 모델과 ITU가 권고하는 강우에 의한 전파감쇠모텔과 비교 하였는데 두 모델의 결과값이 비교적 일치하며 50 GHz 이하에서는 실효유전율 모텔이 낮게, 50 GHz 이상의 주 파수대역에서는높게 강우감쇠량을평가하고 있다.

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Attenuation of quasi-Lamb waves in a hydroelastic system "elastic plate+compressible viscous fluid+rigid wall"

  • Akbarov, Surkay D.;Negin, Mesut
    • Structural Engineering and Mechanics
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    • 제81권4호
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    • pp.443-459
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    • 2022
  • The paper studies the dispersion and attenuation of propagating waves in the "plate+compressible viscous fluid layer" system in the case where the fluid layer flow is restricted with a rigid wall, and in the case where the fluid layer has a free face. The motion of the plate is described by the exact equations of elastodynamics and the flow of the fluid by the linearized Navier-Stokes equations for compressible barotropic Newtonian viscous fluids. Analytical expressions are obtained for the amplitudes of the sought values, and the dispersion equation is derived using the corresponding boundary and compatibility conditions. To find the complex roots of the dispersion equation, an algorithm based on equating the modulus of the dispersion determinant to zero is developed. Numerical results on the dispersion and attenuation curves for various pairs of plate and fluid materials under different fluid layer face conditions are presented and discussed. Corresponding conclusions on the influence of the problem parameters on the dispersion and attenuation curves are made and, in particular, it is established that the change of the free face boundary condition with the impermeability condition can influence the dispersion and attenuation curves not only in the quantitative, but also in the qualitative sense.

Prediction of Wave Transmission Characteristics of Low Crested Structures Using Artificial Neural Network

  • Kim, Taeyoon;Lee, Woo-Dong;Kwon, Yongju;Kim, Jongyeong;Kang, Byeonggug;Kwon, Soonchul
    • 한국해양공학회지
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    • 제36권5호
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    • pp.313-325
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    • 2022
  • Recently around the world, coastal erosion is paying attention as a social issue. Various constructions using low-crested and submerged structures are being performed to deal with the problems. In addition, a prediction study was researched using machine learning techniques to determine the wave attenuation characteristics of low crested structure to develop prediction matrix for wave attenuation coefficient prediction matrix consisting of weights and biases for ease access of engineers. In this study, a deep neural network model was constructed to predict the wave height transmission rate of low crested structures using Tensor flow, an open source platform. The neural network model shows a reliable prediction performance and is expected to be applied to a wide range of practical application in the field of coastal engineering. As a result of predicting the wave height transmission coefficient of the low crested structure depends on various input variable combinations, the combination of 5 condition showed relatively high accuracy with a small number of input variables defined as 0.961. In terms of the time cost of the model, it is considered that the method using the combination 5 conditions can be a good alternative. As a result of predicting the wave transmission rate of the trained deep neural network model, MSE was 1.3×10-3, I was 0.995, SI was 0.078, and I was 0.979, which have very good prediction accuracy. It is judged that the proposed model can be used as a design tool by engineers and scientists to predict the wave transmission coefficient behind the low crested structure.

고속철도 터널내를 전파하는 압축파의 일차원 수치해석 (One-Dimensional Numerical Study of Compression Wave Propagating in High-Speed Railway Tunnel)

  • 김희동;엄용균;송미일태
    • 대한기계학회논문집
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    • 제19권5호
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    • pp.1280-1290
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    • 1995
  • In order to investigate the compression wave propagating in a high-speed railway tunnel, a numerical calculation was applied to the wave phenomenon occurring in a model tunnel. Unsteady, one-dimensional inviscid or viscous flows were solved by an explicit TVD scheme, and the calculated flows were compared with the results of measurement in real tunnels. Tunnel noises caused by emission of the compression wave were characterized in terms of excess pressure of compression wave, pressure gradient in the wave front and width of the compression wave. Calculated attenuation, pressure gradient and width of compression wave with the propagating distance agreed with the results of measurement in the real tunnels. The results also show that tunnel noises are proportional to the train velocity entering the tunnel.

비틀림 유도파를 이용한 토양 특성 규명 및 지하매설 배관 결함 검출 (Identification of the Properties of Soils and Defect Detection of Buried Pipes Using Torsional Guided Waves)

  • 박경조;김정엽
    • 동력기계공학회지
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    • 제17권2호
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    • pp.56-62
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    • 2013
  • A technique is presented that uses a circular waveguide for the measurement of the bulk shear (S-wave) velocities of unconsolidated, saturated media, with particular application to near surface soils. The technique requires the measurement of the attenuation characteristics of the fundamental torsional mode that propagate along an embedded pipe, from which the acoustic properties of the surrounding medium are inferred. From the dispersion curve analysis, the feasibility of using fundamental torsional mode which is non-dispersive and have constant attenuation over all frequency range is discussed. The principles behind the technique are discussed and the results of an experimental laboratory validation are presented. The experimental data are best fitted for the different depths of wetted sand and the shear velocities are evaluated as a function of depths. Also the characteristics of the reflected signal from the defects are examined and the reflection coefficients are calculated for identifying the relation between defect sizes and the magnitude of the reflected signal.

국내환경에 적합한 밀리미터파대역에서의 강우감쇄 추정 (Estimation of Rain-Attenuation for Millimeter-Wave Propagation in Domestic Environments)

  • 조삼모;김양수;백정기;이성수;김혁제
    • 한국통신학회논문지
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    • 제23권7호
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    • pp.1755-1763
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    • 1998
  • 약 10GHz 이상의 주파수를 사용하는 무선 채널에서 채널의 가용도는 강우감쇄에 심각한 영향을 받는다. 강우감쇄의 영향은 주파수와 지역적 상황에 따라 다르다. 본 논문에서는 국내환경에 적용할 수 있는 밀리미터파대역의 강우감쇄를 추정하였다. 빗방울 크기분포는 지수분포로 가정하였고, 빗방울 크기분포를 변화시켜가며 국내환경과 유사한 여러나라의 측정치를 비교하고 분석하여 국내환경에 적용시킬 수 있는 빗방울 크기분포를 보였다. 또한, r분 강우율을 1분 강우율로 변환할 수 있는 변환모델을 논하고 이를 적용하여 변환한 국내의 강우율데이타를 이용하여 강우감쇄의 확률분포를 계산하였다.

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소파제-초대형 부유식 해상구조물 운동 및 소파효율 해석 (Motion and Wave Elevation Analyses for Floating Breakwaters and a VLFS)

  • 홍도천;홍사영
    • 대한조선학회논문집
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    • 제41권3호
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    • pp.22-27
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    • 2004
  • Waveheight attenuation efficiencies of floating breakwaters in water of finite depth for a VLFS are studied numerically in accordance with the two body radiation-diffraction problem. Four different forms of the breaker are tested with a solid VLFS. The radiation-diffraction wave elevations between the breakwater and the VLFS are predicted directly instead of the far-field transmission-reflection coefficients of the breakwater.

비탄성 매질의 진폭 감쇠 효과를 첨가한 일반화된 주파수-파수 구조보정 (Generalized Frequency-wavenumber Migration Implemented by the Intrinsic Attenuation Effect)

  • 박창업;심재헌
    • 한국석유지질학회지
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    • 제1권1호
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    • pp.47-52
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    • 1993
  • 지진파의 전파속도와 감쇠정도가 불균질한 매질에서 2차원 지진파 단면자료에 대한 주파수-파수 영역에서의 구조보정 방법 및 그 결과를 제시한다. 파동전파의 감쇠효과를 포함시키기 위해 일반화된 주파수-파수 구조보정 방법을 개선하여 파동장의 상향 및 하향 외삽연산자에 복소수 전파속도를 사용한다. 이 복소수 전파속도의 허수 부분은 지진파 감쇠 척도인 Q 값을 포함하도록 한다. 불균질한 전파속도와 비탄성을 가진 매질 속에서의 전파방정식의 해를 얻기 위해, 불균질한 매질자체를 일정한 전파속도와 비탄성을 갖는 평균적 매질과 가상적 파동원의 불균질한 분포로 규합된 등가의 시스템으로 취급한다. 가상적 파동원은 전파속도와 매질비탄성의 불균질 정도에 따라 그 세기가 좌우된다. 이 방법에 의해 수 개의 구조 모델에 대해 수치적으로 계산된 결과는 기존의 일반화된 파수-주파수 구조 보정 방법에 의한 것보다 더욱 선명한 단면 영상을 보여주며 파의 비탄성에 의해 불명확하게된 영상신호가 복원된다. 이 방법은 석유나 천연가스가 부존된 구조 또는 파쇄대가 존재하는 지역에서 획득된 자료를 구조보정하는데 유용하게 쓰일 것이다.

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수박에서의 초음파 전파 특성에 관한 실험적 연구 (An Experimental Study on the Propagation Characteristics of Ultrasonic Wave in Watermelon)

  • 장경영;김만수;조한근
    • Journal of Biosystems Engineering
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    • 제23권6호
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    • pp.615-620
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    • 1998
  • The nondestructive internal quality evaluation of agricultural products has been strongly required from the needs for individual inspection. In recent, ultrasonic wave has been considered as a solution for this problem. It transmit well through most materials and can handle safely and easily. However, specially in a watermelon, it is known that general frequency band (higher than 20kHz) ultrasonic waves do not transmitted well due to severe attenuation. The objectives of this study were to find out the proper waveform and frequency of the ultrasonic waves that transmit well inside the watermelon, and to analyze the transmitted waveform in order to make clear the structure of wave propagation in watermelon. The result of several experiments showed that 2kHz shear wave was the most suitable for the detection of internal cavity in the watermelon. Also, it was found that the surface wave did not influence the directly transmitted bulk wave. These results could be a basis of application of ultrasonic wave on the evaluation of internal quality of the watermelon.

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Advanced electromagnetic wave-based method for characterizing defects in cement-based structures using time domain reflectometry

  • Dongsoo Lee;Jong-Sub Lee;Young K. Ju;Yong-Hoon Byun
    • Computers and Concrete
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    • 제33권5호
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    • pp.621-630
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    • 2024
  • This study presents novel electromagnetic wave-based methods for evaluating the integrity of cement-based structures using time domain reflectometry (TDR). Two cement-based plates with embedded rebars are prepared under sound and defective conditions. TDR tests are carried out using transmission lines with various numbers of artificial joints, and electromagnetic waves are measured to assess the integrity of the plates. The experimental results show that the travel time of electromagnetic waves is consistently longer in sound plates than in defective ones, and an increase in the reflection coefficients is observed in the defect zone of the defective plates. Electromagnetic wave velocities are higher in the defective plates, especially when connectors are present in the transmission line. A novel approach based on the area of the reflection coefficient provides larger areas in the defective plates, and the attenuation effect of the electromagnetic waves induces a difference in the areas of the reflection coefficient between the two defect conditions. An alternative method using the centroid of the defect zone slightly overestimates the location of the defect zone. The length of the defect zone is estimated using the defect ratio and wave velocities of cement, air, and plate. The length of the defect zone can also be calculated using the travel times within the plate, total measured length of the plate, and wave velocities in the cement and air. Therefore, the electromagnetic wave-based methods proposed in this study may be useful for estimating the location and length of defect zones by considering attenuation effects.