• Title/Summary/Keyword: 전파 속도

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Hydraulic Experiments of Flood Wave Propagation Due to Levee Breach in Inundation Area by Variation of Froude Number (Froude 수 변화에 따른 제방붕괴 범람홍수파의 전파 수리모형실험)

  • Kim, Soo-Young;Lee, Ji-Hun;Jung, Seok-Il;Lee, Seung-Oh
    • Proceedings of the Korea Water Resources Association Conference
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    • 2012.05a
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    • pp.148-148
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    • 2012
  • 제방의 붕괴는 전체 수공구조물 중 70%를 차지하고 있으며, 그 중 월류에 의한 피해가 40%로 가장 많은 비율을 차지하고 있다. 제방을 월류하여 제내지로 유입되는 붕괴유량은 높은 속도로 제내지로 전파된다. 제방붕괴로 인한 피해를 줄이기 위해서는 이러한 붕괴파의 거동에 대한 연구가 필요하다. 기존의 연구들에서는 제방의 붕괴를 수문의 개방으로 가정하여 제내지 유입을 재현하였다. 본 연구에서는 제방의 규격은 높이 3 m, 정부폭 3 m, 사면경사가 1:2인 제방에 대해서 1/10 축척으로 수리모형실험을 실시하였으며 제방의 붕괴부를 모래를 축조하여 이동상으로 제작하였고 이동상 제방의 길이는 4 m이다. 제방에 월류를 유도하여 붕괴를 유발하였으며 홍수파가 제내지로 유입되는 속도 및 경향을 기록하였다. 제내지는 길이 6 m, 폭 6 m로 수평하게 제작하였다(그림 1 참조). Froude 수 변화에 따라 제내지로 유입되는 범람홍수파의 전파 경향을 분석하였으며 그 결과 Froude 수가 클수록 선단 홍수파의 방향이 하류방향으로 전파되는 경향을 나타냈다.

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열처리가 Zr-2.5Nb압력관 재료의 지체균열전파 특성에 미치는 영향

  • 김인섭;오제용;김영석;국일현
    • Proceedings of the Korean Nuclear Society Conference
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    • 1995.05a
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    • pp.765-770
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    • 1995
  • 지체균열전파(DHC)는 중수로 압력관의 수명에 근 영향을 미치는 중요한 현상 중의 하나이다. 본 연구에서는 열처리를 통하여 압력관 재료인 Zr-2,5Nb의 기계적 성질, 집합조직을 변화시켜 각 인자들이 DHC에 미치는 영향을 조사하였다. 그 결과 지체균열전파속도(DHCV)는 항복강도와 경도와 비례한다는 것과 유사한 미세구조와 집합조직을 갖는 Zr-2.5Nb의 경우 항복강도와 Puls의 모델을 이용하여 지체균열전파속도(DHCV)를 예측할 수 있었다. 그리고 secondary cracking이 annealing한 시편들에서는 관찰되었으나 $\beta$열처리 후 급냉한 시편에서는 관찰되지 않았다. 이것의 수소화물 형상의 차이에 의한 것으로 생각된다.

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2D Prestack Generalized-screen Migration (2차원 중합전 일반화된-막 구조보정)

  • Song, Ho-Cheol;Seol, Soon-Jee;Byun, Joong-Moo
    • Geophysics and Geophysical Exploration
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    • v.13 no.4
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    • pp.315-322
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    • 2010
  • The phase-screen and the split-step Fourier migrations, which are implemented in both the frequency-wavenumber and frequency-space domains by using one-way scalar wave equation, allow imaging in laterally heterogeneous media with less computing time and efficiency. The generalized-screen migration employs the series expansion of the exponential, unlike the phase-screen and the split-step Fourier migrations which assume the vertical propagation in frequency-wavenumber domain. In addition, since the generalized-screen migration generalizes the series expansion of the vertical slowness, it can utilize higher-order terms of that series expansion. As a result, the generalized-screen migration has higher accuracy in computing the propagation with wide angles than the phase-screen and split-step Fourier migrations for media with large and rapid lateral velocity variations. In this study, we developed a 2D prestack generalized-screen migration module for imaging a complex subsurface efficiently, which includes various dips and large lateral variations. We compared the generalized-screen propagator with the phase-screen propagator for a constant perturbation model and the SEG/EAGE salt dome model. The generalized-screen propagator was more accurate than the phase-screen propagator in computing the propagation with wide angles. Furthermore, the more the higher-order terms were added for the generalized-screen propagator, the more the accuracy was increased. Finally, we compared the results of the generalizedscreen migration with those of the phase-screen migration for a model which included various dips and large lateral velocity variations and the synthetic data of the SEG/EAGE salt dome model. In the generalized-screen migration section, reflectors were positioned more accurately than in the phase-screen migration section.

Computational and Experimental Analyses of the Wave Propagation Through a Bar Structure Including Liquid-Solid Interface (액체-고체 경계면이 존재하는 구조물에서의 파동 전파 해석 및 실험)

  • Park, Sangjin;Rhee, Huinam;Yoon, Doo Byung;Park, Jin Ho
    • Transactions of the Korean Society of Mechanical Engineers A
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    • v.39 no.8
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    • pp.793-799
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    • 2015
  • In this research, we study the propagation of longitudinal and transverse waves through a metal rod including a liquid layer using computational and experimental analyses. The propagation characteristics of longitudinal and transverse waves obtained by the computational and experimental analyses were consistent with the wave propagation theory for both cases, that is, the homogeneous metal rod and the metal rod including a liquid layer. The fluid-structure interaction modeling technique developed for the computational wave propagation analysis in this research can be applied to the more complex structures including solid-liquid interfaces.

Effect of the Obstacles on Explosion Pressure and Propagation Velocity in Closed Tube (밀폐배관 내의 장애물에 의한 폭발압력과 화염전파속도의 영향)

  • Han, Ou-Sup;Lee, Jung-Suk
    • Journal of the Korean Institute of Gas
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    • v.24 no.3
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    • pp.20-26
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    • 2020
  • In this study, experimental study was conducted to examine the influence of explosion pressure and flame propagation velocity of methane-air mixtures due to the obstacles placed in the explosion space. We used the quantified parameter named barrier ratio in order to generalize the effect of explosion pressure and flame propagation velocity in the closed explosion space with obstacles. From experimental observations, the explosion pressure and flame propagation velocity regardless of the number of obstacles increased with barrier ratio. In the same methane concentration of 10% methane, the flame propagation velocity without obstacle (barrier ratio = 0) was 3.46 m/s but 24.24 m/s (increase about 7 times) with 3 obstacle and barrier ratio of 0.98. In the same barrier ratio, explosion pressure and flame propagation velocity increased sharply with increasing of the number of obstacles.

Influence of Adjacent Structures using Numerical Method during funnel Blasting (터널발파굴착시 수치해석에 의한 구조물의 영향평가)

  • 김학문
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.4 no.3
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    • pp.274-278
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    • 2003
  • The numerical analysis indicated that the vibration response reduced sharply at the three times of tunnel diameter. Visual display of vibration response was possible through 3-D FEM computer program, and displacement of structure, particle velocity were obtained as output. It was found that the vibration velocity was maximum at distance one to two times of tunnel diameter for the given simplified blast loadings. The results of numerical analysis were compared with empirical based predictive equation of blasting. The empirical equation showed a good agreement with 3-D FEM results at a certain range of tunnel depth in this particular type of ground conditions.

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A Study on the Flame Curvature Characteristics in a Lifted Flame (부상화염에서 화염 곡률반경 특성에 관한 연구)

  • Ha, Ji-Soo;Kim, Tae-Kwon;Park, Jeong;Kim, Kyung-Ho
    • Journal of the Korean Institute of Gas
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    • v.14 no.2
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    • pp.34-39
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    • 2010
  • Flame propagation velocity is the one of the main mechanism of the stabilization of triple flame. To quantify the triple flame propagation velocity, Bilger presents the triple flame propagation velocity through the experiment, depending on the mixture fraction gradient, based on the laminar jet flow theory. However, in spite of these many analyses, there has not been any attempt to quantify the triple flame propagation velocity with the radius of flame curvature. In the present research, a relation of the flame propagation velocity is proposed with the radius of flame curvature for the flame stabilization mechanism. As a result, we have shown that the height of lifted flame is determined with the nozzle diameter and exit velocity of fuel and presented that the radius of flame curvature is proportion to the nozzle exit velocity of fuel and height of lifted flame. Therefore, the importance of the radius of flame curvature has to be recognized. To discribe the flame stabilization mechanism, Bilger's formula has to be modified with flame curvature effect.

A Study of Seismic Wave Propagation for Tunnel Exploration (터널 탐사를 위한 탄성파 전파 양상에 관한 연구)

  • Suh, Baek-Soo;Oh, Seok-Hoon;Sohn, Kwon-Ik
    • Journal of the Korean earth science society
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    • v.27 no.5
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    • pp.539-547
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    • 2006
  • The activity of the seismic wave propagation around the cavity is investigated for the exact inversion of the crosshole tomography data, in order to understand the possibility of the existence inside the underground cavity. It is found that the adequate frequency range for the tunnel investigation is about 2 kHz to 5 kHz, and the grid space should be set up to 1/10 of the wavelength. The propagation of the seismic wave near the cavity may go through or detour the cavity according to the seismic velocity inside the cavity. The detouring wave propagates with the seismic velocity of mother rock in spite of the velocity of inside of the cavity. The smaller the velocity difference is between the mother rock and cavity, the more frequent penetration of the seismic wave through the cavity appears.