• Title/Summary/Keyword: critical velocity

검색결과 831건 처리시간 0.032초

두 이방성 띠판에 내재된 면외변형하의 등속평행 균열 (Parallel Crack with Constant Velocity in Two Bonded Anisotropic Strip Under Anti-Plane Deformation)

  • 박재완;김남훈;최성렬
    • 대한기계학회논문집A
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    • 제24권2호
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    • pp.496-505
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    • 2000
  • A semi-infinite parallel crack propagated with constant velocity in two bonded anisotropic strip under anti-plane clamped displacement is analyzed. Using Fourier integral transform a Wiener-Hopf equation is derived. By solving this equation the asymptotic stress and displacement fields near the crack tip are determined, where the results give the more general expression applicable to the extent of the anisotropic material having one plane of elastic symmetry for the parallel crack. The dynamic stress intensity factor and energy release rate are also obtained as a closed form, which are the results applicable to the problem both of dynamic and static crack under the same geometry as this study. The stress intensity factor approaches zero at the critical crack velocity which is less than the shear wave velocity, but in typical case of isotropic or orthotropic material agrees with the velocity of shear wave. Also a circular shear stress around crack tip is considered, from which the stress is shown to be approximately symmetric about the horizontal axis. Referring to the maximum stress criteria, it could be shown that a brenched crack is formed by crack growth as crack velocity increases.

가진 펌프에 연결된 곡관 출구의 직관에서 난류진동유동의 속도분포와 전단응력분포 (Velocity Profile and Wall Shear Stress Distributions of Developing Turbulent Oscillatory Flows in an Oscillator Connected to Straight Duct Located in Exit Region of a Curved Duct)

  • 손현철;이행남;박길문
    • 대한기계학회논문집B
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    • 제26권10호
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    • pp.1378-1386
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    • 2002
  • In the present study, velocity profile and wall shear stress distributions of developing turbulent oscillatory flows in an oscillator connected to straight duct located in exit region of a curved duct was investigated experimentally. The experimental study for air flows was conducted to measure axial velocity profiles, shear stress distributions by using the Laser Doppler Velocimetry(LDV) system with the data acquisition and processing system of Rotating Machinery Resolver(R.M.R) and PHASE software. The results obtained from experimental studies are summarized as follows. The critical Reynolds number for a change from transitional oscillatory flow to turbulent flow was about 7500, in the 60region of dimensionless axial position which was considered as a fully developed flow region. The turbulent oscillatory flow, velocity profiles of the inflow period in the entrance region were gradually developed, but those of the outflow period were not changed nearly. Velocity profiles of inflow and outflow were shown as a symmetric form in a fully developed flow region. The wall shear stress distributions of turbulent oscillatory flow increase rapidly as the flow proceeds to downstream and flow was in good agreement with the theoretically.

유체유동 회전 외팔 파이프의 동특성 및 안정성 해석 (Dynamic Characteristics and Stability Analysis of a Rotating Cantilever Pipe Conveying Fluid)

  • 김동진;윤한익;손인수
    • 한국소음진동공학회:학술대회논문집
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    • 한국소음진동공학회 2007년도 춘계학술대회논문집
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    • pp.1185-1190
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    • 2007
  • In this paper the vibration system is consisted of a rotating cantilever pipe conveying fluid. The equation of motion is derived by using the Lagrange's equation. Also, the equation of motion is derived applying a modeling method that employs hybrid deformation variables. Generally, the system of pipe conveying fluid becomes unstable by flutter. So, we studied about the influences of the rotating angular velocity, mass ratio and the velocity of fluid flow on the stability of a cantilever pipe by the numerical method. The influences of mass ratio, the velocity of fluid, the angular velocity of a cantilever pipe and the coupling of these factors on the stability of a cantilever pipe are analytically clarified. The critical fluid velocity$(u_{cr})$ is proportional to the angular velocity of the cantilever pipe. In this paper Flutter(instability) always occur in the second mode of the system.

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건조한 노면에서 Non-ABS 차량의 제동시점 속도계산 방법 (Calculation of Brake Onset Velocity for Non-ABS Vehicle on Dry Asphalt Pavement)

  • 김기남;옥진규;김민석;문원길;박수진;유완석
    • 한국자동차공학회논문집
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    • 제15권2호
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    • pp.109-114
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    • 2007
  • Skid mark and coefficient of friction are usually utilized to calculate the velocity and behavior of vehicles. For a critical case such as traffic accident reconstruction, however, the initial velocity of the car should be calculated precisely. In this study, the skid marks on dry asphalt pavement were measured, and the velocity at brake onset was precisely recovered. A passenger car with new tires and non-contact optical speedometer were set up for the tests. A new methodology to determine the more precise velocity for Non-ABS vehicle at braking onset were suggested.

고해상도 Cinematic PIV의 개발 (Development of a High Resolution Digital Cinematic Particle Image Velocimetry)

  • 박경현;김경천
    • 대한기계학회논문집B
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    • 제25권11호
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    • pp.1535-1542
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    • 2001
  • A high resolution digital cinematic Particle Image Velocimetry(PIV) has been developed. The system consists of a high speed CCD camera, a continuous Ar-ion laser and a computer with camera controller. To improve the spatial resolution, we adopt a Recursive Technique for velocity interrogation. At first, we obtain a velocity vector fur a larger interrogation window size based on the conventional two-frame cross-correlation PIV analysis using the FFT algorithm. Based on the knowing velocity information, more spatially resolved velocity vectors are obtained in the next iteration step with smaller interrogation windows. When the correct velocity vector at the first step is found to be critical, a Multiple Correlation Validation(MCV) technique is applied to decrease the spurious vectors. The MCV technique turns out to improve SNR(Signal to Noise Ratio) of the correlation table. The developed cinematic PIV method has been applied to the measurement of the unsteady flow characteristics of a Rushton turbine mixer. A total of 3,245 instantaneous velocity vectors were successfully obtained with 4 ms time resolution. The acquired spatial resolution corresponds to the conventional high resolution digital PIV system using a 1K ${\times}$ 1K CCD camera.

An experimental procedure for evaluating the consolidation state of marine clay deposits using shear wave velocity

  • Chang, Ilhan;Kwon, Tae-Hyuk;Cho, Gye-Chun
    • Smart Structures and Systems
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    • 제7권4호
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    • pp.289-302
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    • 2011
  • In marine clay deposits, naturally formed or artificially reclaimed, the evaluation and monitoring of the consolidation process has been a critical issue in civil engineering practices due to the time frame required for completing the consolidation process, which range from several days to several years. While complementing the conventional iconographic method suggested by Casagrande and recently developed in-situ techniques that measure the shear wave, this study suggests an alternative experimental procedure that can be used to evaluate the consolidation state of marine clay deposits using the shear wave velocity. A laboratory consolidation testing apparatus was implemented with bimorph-type piezoelectric bender elements to determine the effective stress-shear wave velocity (${\sigma}^{\prime}-V_s$) relationship with the marine clays of interest. The in-situ consolidation state was then evaluated by comparing the in-situ shear wave velocity data with the effective stress-shear wave velocity relationships obtained from laboratory experiments. The suggested methodology was applied and verified at three different sites in South Korea, i.e., a foreshore site in Incheon, a submarine deposit in Busan, and an estuary delta deposit in Busan. It is found that the shear wave-based experimental procedure presented in this paper can be effectively and reliably used to evaluate the consolidation state of marine clay deposits.

만곡하천의 자갈하상재료 분포에 따른 한계수류력 평가 (Estimating Critical Stream Power by the Distribution of Gravel-bed Materials in the Meandering River)

  • 신승숙;박상덕;이승규;지민규
    • 한국수자원학회논문집
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    • 제45권2호
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    • pp.151-163
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    • 2012
  • 산지하천의 자갈하상재료 분포는 최근 특정규모 홍수의 수류력에 의한 유사 이송 및 퇴적 과정에 의해 형성되며, 장갑화된 하천에서 한계수류력을 평가하는 것은 안정하도설계를 위해 중요하다. 자갈하상 하천 종단지점과 만곡부 일정구간의 세부지점에대한하상재료의입도분포를조사하고, 한계유속 및 한계수류력을 평가하였다. 자갈하상 재료에 대한 Yang의 한계단위수류력과 Bagnold의 한계수류력은 상류로 갈수록 급격히 증가했다. 계획홍수량에 근거한 무차원 전단응력은 Shields 도표에서대부분조사지점의자갈하상재료가소류사형태로이동하는것으로평가되었다. 만곡부에 대한 평균입경은 상류 유입수의 1차 수충지점에서 가장 컸으며, 반사흐름에 의한 2차 수충지점에서 두 번째로 큰 입경을 보였다. 수충직하류지점들에서상대적으로작은평균입경을보였다. 만곡부의 평균한계유속 범위는0.77~2.60m/s의 범위이며, 한계단위수류력은 경사가 급한 1차 수충부에서는 상당히 컸다. 한계수류력의 분포는 7~171W/m2의 범위로 하천 횡단보다는 종단에 따른 변화가 뚜렷했고, 만곡 외측 1차 수충지점과 반사흐름 2차 수충지점에서 크게 작용하는 것으로 평가되었다.

Stability of suspension bridge catwalks under a wind load

  • Zheng, Shixiong;Liao, Haili;Li, Yongle
    • Wind and Structures
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    • 제10권4호
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    • pp.367-382
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    • 2007
  • A nonlinear numerical method was developed to assess the stability of suspension bridge catwalks under a wind load. A section model wind tunnel test was used to obtain a catwalk's aerostatic coefficients, from which the displacement-dependent wind loads were subsequently derived. The stability of a suspension bridge catwalk was analyzed on the basis of the geometric nonlinear behavior of the structure. In addition, a full model test was conducted on the catwalk, which spanned 960 m. A comparison of the displacement values between the test and the numerical simulation shows that a numerical method based on a section model test can be used to effectively and accurately evaluate the stability of a catwalk. A case study features the stability of the catwalk of the Runyang Yangtze suspension bridge, the main span of which is 1490 m. Wind can generally attack the structure from any direction. Whenever the wind comes at a yaw angle, there are six wind load components that act on the catwalk. If the yaw angle is equal to zero, the wind is normal to the catwalk (called normal wind) and the six load components are reduced to three components. Three aerostatic coefficients of the catwalk can be obtained through a section model test with traditional test equipment. However, six aerostatic coefficients of the catwalk must be acquired with the aid of special section model test equipment. A nonlinear numerical method was used study the stability of a catwalk under a yaw wind, while taking into account the six components of the displacement-dependent wind load and the geometric nonlinearity of the catwalk. The results show that when wind attacks with a slight yaw angle, the critical velocity that induces static instability of the catwalk may be lower than the critical velocity of normal wind. However, as the yaw angle of the wind becomes larger, the critical velocity increases. In the atmospheric boundary layer, the wind is turbulent and the velocity history is a random time history. The effects of turbulent wind on the stability of a catwalk are also assessed. The wind velocity fields are regarded as stationary Gaussian stochastic processes, which can be simulated by a spectral representation method. A nonlinear finite-element model set forepart and the Newmark integration method was used to calculate the wind-induced buffeting responses. The results confirm that the turbulent character of wind has little influence on the stability of the catwalk.

종류식 환기 시스템에서 임계속도 도달 전 스모크 확산 영역에 관한 실험적 연구 (An experimental study on the smoke-spread region before reaching the critical velocity for the case of fires in tunnels employing longitudinal ventilation system)

  • 김영민;윤성욱;윤찬훈;김진
    • 터널과지하공간
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    • 제16권6호
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    • pp.526-535
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    • 2006
  • 본 연구에서는 장대터널 화재 시 발생하는 스모크의 거동특성을 파악하기 위해 축소모형실험을 실시하였다. Froude 상사를 기초로 실제 터널을 1/50로 축소한 20 m 의 아크릴 터널 모형을 제작하였으며, 파라핀 기체로 만든 스모크를 터널 내부에 주입시킴으로써 20MW의 실제 화재를 모사하였다. 실험에서 화재 발생 약 2분 후에 스모크는 부력효과의 감소로 아래로 하강하였으며, 제트팬 가동 전까지 4분 동안 스모크는 약 90 m를 이동하였다. 제트팬이 가동되고 기류속도가 임계속도 (도로터널 화재 중 발생하는 스모크의 역기류를 제압하기 위한 최소 공기속도)에 가까워질수록 스모크의 제어가 효율적으로 이루어지며, 스모크의 분포는 화원에서 약 3 m 정도로 더 이상 탈출 방향으로의 스모크 전파가 이루어지지 않았다. 하지만, 제트팬 가동 초기에 스모크의 제어가 거의 이루어지지 않음을 보였고 오히려 이 단계에서 탈출자의 호흡선 차단 등의 위험요소가 내재되어 있음을 알 수 있었다.

Smooth Background Model(SBM)을 이용한 가중 키리히호프 중합전 심도구조보정 (Weighted Kirchhoff Prestack Depth Migration using Smooth Background Model)

  • 고승원;양승진;신창수
    • 지구물리와물리탐사
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    • 제4권3호
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    • pp.84-88
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    • 2001
  • 탄성파 구조보정에서 초기속도모델과 실제지층속도와의 오차는 심각한 이미지 왜곡을 초래할 수 있다. 따라서, 초기속도 모델의 설정은 성공적인 구조보정을 위한 중요한 요소 중의 하나이다. 초기속도모델로서 단순지층 모델을 적용할 경우, 속도 차가 큰 지층경계면에서는 기존의 주시계산 방법으로는 정확한 주시를 계산할 수 없다. 또한 실제 지하내부가 갖는 선형적 속도변화를 적절히 표현할 수 없다. 본 연구에서 초기모델로 적용한 Smooth Background Model(이하 SBM)은 깊이에 따라 지층속도가 선형적으로 변화하는 모델로서 지하내부의 특성을 적절히 표현할 수 있고, Vidale 방법과 같은 주시계산 알고리즘을 적절히 적용할 수 있다. 본 연구에서는 중합전 구조보정을 위해 키리히호프 연산자를 사용하였으며 모델링을 통해 얻은 절대 진폭값을 가중치로 적용하므로써 초기 모델에 대한 진진폭을 고려하였다. 구조보정을 위한 초기모델은 중합속도를 이용하여 결정하였고, 이를 실제자료에 적용하여 보았다.

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