• 제목/요약/키워드: Velocity Coefficient

검색결과 1,747건 처리시간 0.025초

편평한 암석절리면의 속도 의존적 전단거동 특성 (Characteristics of velocity-dependent shear behavior of saw-cut rock joints at different shear velocities)

  • 박병기;이창수;전석원
    • 한국터널지하공간학회 논문집
    • /
    • 제9권2호
    • /
    • pp.121-131
    • /
    • 2007
  • 최근 암반구조물의 규모가 점차 대형.대단면화됨에 따라 암반 절리면이 자유면에 노출되는 경우가 빈번하게 발생할 수 있으며 지진, 발파와 같은 외부 동적 하중의 영향을 받을 가능성이 커지고 있으므로 다양한 동적 하중조건 하에서 암반 불연속면의 거동 특성 파악을 위한 연구의 필요성이 증대되고 있다. 본 연구에서는 전단속도의 변화에 따른 편평한 화강암 전단면의 마찰특성 변화를 알아보고자 다양한 조건하에서 직접전단시험을 수행하였다. 수행한 직접전단시험은 크게 두 가지로 나눌 수 있는데 첫 번째 시험에서는 시험이 수행되는 동안 각각 7가지의 일정한 전단속도로 전단변위가 발생되도록 하여 전단속도에 따른 마찰계수의 변화를 살펴보았으며, 두 번째 시험에서는 전단변위가 발생되는 중간에3가지 형태의 순간적인 전단속도 변화가 마찰특성에 미치는 영향을 살펴보았다. 수직응력과 전단속도의 변화에 따른 편평한 화강암의 마찰계수 변화는 가해진 수직응력 수준에 영향을 받는 것으로 나타났으며, 전단속도의 변화가 마찰거동에 영향을 미치기 시작하는 전이속도는 수직응력이 증가함에 따라 낮아지는 것으로 나타났다. 또한 전단속도가 느릴수록 stick-slip 거동에서의 응력 저하 폭이 커지는 경향을 보였다. 순간적인 전단속도 변화에 따른 정상 상태에서의 마찰계수 변화를 살펴본 결과 순간적인 속도의 증가에 따라 마찰계수가 감소하는 속도 연화 현상이 나타났으며, 느린 전단속도에서 전단속도의 변화에 따른 마찰계수의 감소폭이 빠른 전단속도에서의 변화에 따른 감소폭보다 더 큰 경향을 보였다.

  • PDF

여자 세단뛰기 운동수행의 일관성과 속도전환계수에 의한 최적의 국면비 (The Velocity Conversion Coefficient and Consistency for the Optimal Phase Ratio on the Performance of the Women's Triple Jump)

  • 류재균;장재관
    • 한국운동역학회지
    • /
    • 제25권1호
    • /
    • pp.39-47
    • /
    • 2015
  • Objective : The purpose of this study was to investigate the velocity conversion coefficient and invariance for the optimal phase ratio on the performance of the women's triple jump. Methods : Three-dimensional kinematic data were obtained from the three finalists of the women's triple jumper competition at the 2011 Daegu IAAF World Championships. Computer simulations were performed using the biomechanical model of the triple jump to optimize the phase ratio for the longest actual distance for all athletes with altered velocity conversion coefficients. Results : Top elite triple jumpers showed better technical consistency at the phase ratio. Also, no consistent relationship was observed between the loss in horizontal velocity and the gain in vertical velocity across supporting the three phase. In addition, regardless of the magnitude A1, all athletes were optimized with jump-dominated technique. Finally, as the magnitude of A1 increased, the athletes showed better performance. The obtained overall distance jumped showed the longest actual distance when the optimal phase ratio was transferred from hop-dominated to jump-dominated(the step ratio was 30%~31%), and when the optimal phase ratio was transferred from balanced to jump-dominated(the step ratio was 27%~29%). Conclusion : Future studies need to be conducted in order to explore the active landing motion and the inclination angle of the body with the velocity conversion coefficient simultaneously at each supporting phase.

Heat and mass transfer analysis in air gap membrane distillation process for desalination

  • Pangarkar, Bhausaheb L.;Sane, Mukund G.
    • Membrane and Water Treatment
    • /
    • 제2권3호
    • /
    • pp.159-173
    • /
    • 2011
  • The air gap membrane distillation (AGMD) process was applied for water desalination. The main objective of the present work was to study the heat and mass transfer mechanism of the process. The experiments were performed on a flat sheet module using aqueous NaCl solutions as a feed. The membrane employed was hydrophobic PTFE of pore size 0.22 ${\mu}m$. A mathematical model is proposed to evaluate the membrane mass transfer coefficient, thermal boundary layers' heat transfer coefficients, membrane / liquid interface temperatures and the temperature polarization coefficients. The mass transfer model was validated by the experimentally and fitted well with the combined Knudsen and molecular diffusion mechanism. The mass transfer coefficient increased with an increase in feed bulk temperature. The experimental parameters such as, feed temperature, 313 to 333 K, feed velocity, 0.8 to 1.8 m/s (turbulent flow region) were analyzed. The permeation fluxes increased with feed temperature and velocity. The effect of feed bulk temperature on the boundary layers' heat transfer coefficients was shown and fairly discussed. The temperature polarization coefficient increased with feed velocity and decreased with temperature. The values obtained were 0.56 to 0.82, indicating the effective heat transfer of the system. The fouling was observed during the 90 h experimental run in the application of natural ground water and seawater. The time dependent fouling resistance can be added in the total transport resistance.

수치모의를 이용한 원형위어의 월류흐름 특성 해석 (Analysis of Overflow Characteristics around a Circular-Crested Weir by Using Numerical Model)

  • 김대근
    • 상하수도학회지
    • /
    • 제30권2호
    • /
    • pp.147-154
    • /
    • 2016
  • The present study used the hydrodynamic numerical model, with the Reynolds-averaged Navier-Stokes equations (RANS) as its governing equations, to analyze overflow characteristics such as the discharge coefficient of circular-crested weir and the flow velocity and pressure distribution of weir crest. The simulation results well reproduced the overflow characteristics of the overfall of circular-crested weir both qualitatively and quantitatively. As for the discharge coefficient, rational results were yielded by the discharge coefficient equation proposed by Hager(1985) in the $H_1/R_b<0.58$ and by the discharge coefficient equation proposed by Samani and Bagheri(2014) in the $H_1/R_b>0.58$, respectively. Because most existing discharge coefficient equations were developed by disregarding the effects of the approach velocity, when they are applied, it is necessary to evaluate the effects of the approach velocity on the overflow head beforehand.

수면 위 자유 낙하 및 충돌하는 강체 구의 수치해석 연구 (Numerical study of a freely falling rigid sphere on water surface)

  • 구본헌;판디 디팍 쿠마르;임희창
    • 한국가시화정보학회지
    • /
    • 제19권2호
    • /
    • pp.15-25
    • /
    • 2021
  • Numerical studies on the hydrodynamics of a freely falling rigid sphere in bounded and unbounded water domains are presented having investigation on the drag coefficient, normalized velocity, surface pressure and skin friction coefficient as a function of time. Two different conditions of the bounded and unbounded domains have been simulated by setting the blockage ratio. Four cases of bounded domains (B.R. = 1%, 25%, 45%, 55%, 65% and 75%) have been taken, whereas the unbounded domain has been considered with 0.01%. In the case of the bounded domain (higher values of B.R.), a substantial reduction in normalized velocity and increase in the drag coefficient have been found in presence of the bounded domain. Moreover, bounded domains also yield a significant increase in the pressure coefficient when the sphere is partially submerged, but the insignificant effect is found on the skin friction coefficient. In the case of the unbounded domain, a significant reduction in normalized velocity occurs with a decrease in Reynolds number (Re) and also increase in the drag coefficient.

유수대류계수에 관한 실험적 연구 (Experimental Study on Coefficient of Flow Convection)

  • 정상은;오태근;양주경;김진근
    • 한국콘크리트학회:학술대회논문집
    • /
    • 한국콘크리트학회 2000년도 봄 학술발표회 논문집
    • /
    • pp.297-302
    • /
    • 2000
  • Pipe cooling method is widely used for reduction of hydration heat and control of cracking in mass concrete structures. However, in order to effectively apply pipe cooling systems to concrete structure, the coefficient of flow convection relating the thermal transfer between inner stream of pipe and concrete must be estimated. In this study, a device measuring the coefficient of flow convection is developed. Since a variation of thermal distribution caused by pipe cooling has a direct effect in internal forced flows, the developed testing device is based on the internal forced flow concept. Influencing factors on the coefficient of flow convection are mainly flow velocity, pipe diameter and thickness, and pipe material. finally a prediction model of the coefficient of flow convection is proposed using experimental results from the developed device. According to the proposed prediction model, the coefficient of flow convection increases with increase in flow velocity and decreases with increase in pipe diameter and thickness. Also, the coefficient of flow convection is largely affected by the type of pipe materials.

  • PDF

해면질골에서 위상속도 및 감쇠계수 측정에 의한 구조적 특성 평가 (Estimation of Structural Properties from the Measurements of Phase Velocity and Attenuation Coefficient in Trabecular Bone)

  • 이강일
    • 한국음향학회지
    • /
    • 제28권7호
    • /
    • pp.661-667
    • /
    • 2009
  • 해면질골에서 위상속도 및 감쇠계수와 구조적 특성 사이의 상관관계를 고찰하기 위하여 나일론 줄을 평행하게 배열하여 제작된 해면질골 팬텀이 이용되었다. 7개의 해면질골 팬텀의 골소주 간격 (trabecular separation; Tb.SP)은 $300\;{\mu}m$부터 $900\;{\mu}m$까지 분포하였으며, 골용량 비율 (volume fraction: VF)은 1.6%부터 8.7%까지 분포하였다. 해면질골 팬팀의 위상속도 및 감쇠계수는 12.7 mm의 직경 및 1 MHz의 중심 주파수를 갖는 한 쌍의 광대역, 비집속형 초음파 변환기와 함께 수중에서 투과법을 이용하여 측정되었다. 1 MHz에서 측정된 위상속도 및 감쇠계수는 Tb.Sp이 증가함에 따라 거의 선형적으로 감소하였으며, VF이 증가함에 따라 거의 선형적으로 증가하였다. 위상속도 및 감쇠계수를 독립변수로 하고 Tb.Sp 및 VF을 종속변수로 하는 단순 및 다중선형회귀모델로부터 VF 예측을 위한 결정계수가 Tb.Sp 예측을 위한 결정계수에 비하여 높게 나타나는 것을 알 수 있었다. 이와 같이 나일론 줄을 평행하게 배열하여 제작된 해면질골 팬텀에서 나타나는 결과는 사람의 해면질골에서 나타나는 결과와 잘 일치하였으며, 해면질골에서 위상속도 및 감쇠계수 측정으로부터 구조적 특성 평가가 가능하다는 것을 알 수 있었다.

입사각의 변화에 따른 터빈 캐스케이드에서 손실계수에 관한 실험적 연구 (An Experimental Study on Loss Coefficient of Turbine Cascade with Incidence Angles)

  • 이주형;허원회;전창수
    • 한국유체기계학회 논문집
    • /
    • 제2권4호
    • /
    • pp.48-56
    • /
    • 1999
  • For the study on loss coefficients of turbine cascade with variation of incidence angle, the wind-tunnel tests were performed under the ranges in velocity of 10 m/s, 15 m/s, 20 m/s and incidence angles from $-20^{\circ}\;to\;20^{\circ}$ by intervals of $5^{\circ}$. Comparing our results with Soderberg's prediction, differences in loss coefficient were $2.5\%\;and\;2.8\%$ each for 10 m/s and 15 m/s. A large disagreement of $30.3\%$ was showed at 20 m/s freestream velocity. The comparisons of these test results with Ainley's prediction showed an $8\%$ difference in the case of 20 m/s freestream velocity. Test results were approximately comparable with Ainley's loss prediction's in incidence angles. Generally, averaged total pressure loss seemed to be decreased as Reynolds number increased. The total pressure loss coefficients were increased parabolically, as incidence angles were increased negatively and positively from $0^{\circ}$, in all speed ranges. At the far low freestream velocities, minimum loss accurred between $-5^{\circ}\;and\;+5^{\circ}$. But this minimum range narrowed the location of this range by shifting to the direction of the angle as freestream velocity was increased.

  • PDF

Ultrasonic Phase Velocity and Attenuation Coefficient Predicted by Biot's Theory and the MBA Model in Cancellous Bone

  • Lee Kang Il;Yoon Suk Wang
    • 한국음향학회:학술대회논문집
    • /
    • 한국음향학회 2004년도 추계학술발표대회논문집 제23권 2호
    • /
    • pp.183-186
    • /
    • 2004
  • Biot's theory and a modified Biot-Attenborough (MBA) model are applied to predict the dependences of acoustic characteristics on frequency and porosity in cancellous bone. The phase velocity and the attenuation coefficient predicted by both theories are compared with previous in vitro experimental measurements in terms of the mixed, the fast, and the slow waves. Biot's theory successfully predicts the dependences of phase velocity on frequency and porosity in cancellous bone, whereas a significant discrepancy is observed between predicted and measured attenuation coefficients. The MBA model is consistent with reported measurements for both dependences of phase velocity and attenuation coefficient on frequency and porosity. Based on the theoretical predictions from the MBA model, it is suggested that the attenuation coefficient of the mixed wave is dominated by the fast wave in the low-porosity region while it is dominated by the slow wave in the high-porosity region. This provides a qualitative explanation for the nonlinear relationship of attenuation of the mixed wave with porosity in cancellous bone.

  • PDF

Numerical Analysis of Convective Heat and Mass Transfer around Human Body under Strong Wind

  • Li, Cong;Ito, Kazuhide
    • 국제초고층학회논문집
    • /
    • 제1권2호
    • /
    • pp.107-116
    • /
    • 2012
  • The overarching objective of this study is to predict the convective heat transfer around a human body under forced strong airflow conditions assuming a strong wind blowing through high-rise buildings or an air shower system in an enclosed space. In this study, computational fluid dynamics (CFD) analyses of the flow field and temperature distributions around a human body were carried out to estimate the convective heat transfer coefficient for a whole human body assuming adult male geometry under forced convective airflow conditions between 15 m/s and 25 m/s. A total of 45 CFD analyses were analyzed with boundary conditions that included differences in the air velocity, wind direction and turbulence intensity. In the case of approach air velocity $U_{in}=25m/s$ and turbulent intensity TI = 10%, average convective heat transfer coefficient was estimated at approximately $100W/m^2/K$ for the whole body, and strong dependence on air velocity and turbulence intensity was confirmed. Finally, the formula for the mean convective heat transfer coefficient as a function of approaching average velocity and turbulence intensity was approximated by using the concept of equivalent steady wind speed ($U_{eq}$).