• Title/Summary/Keyword: 이송확산 거동

Search Result 58, Processing Time 0.035 seconds

Behavior of Bearing Capacity for Shallow Foundation on a Sand overlying Clay Depending on Bearing Capacity Ratio (점토층 위 모래지반의 지지력비에 따른 얕은 기초의 지지력 거동)

  • Jung, Min Hyung;Shin, Hyo Hee;Lee, Song
    • Journal of the Korea institute for structural maintenance and inspection
    • /
    • v.15 no.1
    • /
    • pp.198-208
    • /
    • 2011
  • When a structure which has relatively low load constructs on soft clay, the bearing capacity of the ground will be improved by sand overlying clay. In this condition, verifying the bearing capacity is difficult from the P.B.T etcetera in the in-situ. So, it is needed to estimate precise bearing capacity in the design process. In this study, 2-dimensional chamber tests and FEM analyses are conducted to evaluate behavior of bearing capacity for shallow foundations on a sand overlying clay. Because depth ratio H/B and bearing capacity ratio $q_c/q_s$ are selected as main factors, height of a sand, undrained shear strength of a clay and width of a loading are designated as variables. Results from chamber tests are very similar with those of FEM analyses. And it shows that punching shear mechanism is more suitable than the equation of Okamura et al.(1998). To make continual application of load spread mechanism, the equivalent load spread angle is proposed for H/B and $q_c/q_s$. Also, the linear regression equation of critical depth ratio Hf is suggested for $q_c/q_s$.

A Study on Physical Characteristics and Mixing Behavior of Turbid Water from Imha Reservoir (임하호 탁수의 물리적 특성 및 혼합거동 연구)

  • Kim, Young-Do;Lee, Nam-Joo;Heo, Seong-Nam;Shin, Chan-Ki
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2006.05a
    • /
    • pp.441-446
    • /
    • 2006
  • 유역에서 발생한 고탁수가 저수지내에서 장기화하는 현상에 관한 대책은 장기간이 소요되는 유역관리 대책과 탁수저감일수를 최소화하는 선택취수 개념의 우선 방류기법 등이 있다. 하류하천으로의 탁수 우선배제를 실시하기 위해서는 댐 방류탁수가 하류에 미치는 영향을 정확히 예측할 수 있는 하천탁도 예측 및 관리시스템 구축이 필요하다. 최근 고탁수현상을 경험한 낙동강 수계에서는 본류의 탁도 관리를 위해 임하댐 및 안동댐의 연직 탁도 분포 변화에 따라 댐 방류탁수에 의한 영향을 최소 또는 기준치 이하로 할 수 있는 댐 연계운영에 관한 조건 도출이 필요하다. 선택취수에 관한 수치모의 결과를 이용하여 저수지내 온도 및 탁도 분포 변화와 취수탑의 수문운영에 따른 방류수의 온도 및 탁도를 예측할 수 있다. 본 연구에서는 이와 같은 결과를 이용하여 안동댐과 임하댐의 방류조건에 대한 하류하천 합류부에서의 2차원 이송 확산 수치모의를 수행하고자 하였다. 이와 같은 연구를 성공적으로 수행하기 위해서는 지속적인 현장조사를 통한 지점별 탁도-SS 상관관계 도출, 비정상 흐름 및 수질모의 검 보정, 탁도예측 결과 검증이 필요하다. 평면 2차원 흐름 및 수질 모의 결과에 의하면, 임하댐 방류 탁도로 인한 반변천의 고탁수는 안동댐 방류 수에 지배를 받는 낙동강 본류와 합류되는 지점에서부터 약 5 km 떨어진 지점에서 횡방향 완전혼합이 이루어지는 것으로 나타났다. 이와 같은 모의결과는 완전혼합을 가정하는 1차원 수질모델링의 초기 입력자료에 사용됨으로써 1차원 탁도 모의결과의 정확성을 높이는 데 사용될 수 있다. 이를 이용하여 낙동강 수계 댐 연계운영에 따른 낙동강 탁도 예측모의를 수행하고, 이 결과를 이용하여 낙동강 탁도 예경보 시스템을 구축해야 할 것이다. 또한 선택취수 등을 통해 저수지 관리를 효과적으로 수행하기 위해서는 저수지 내부의 탁도 거동을 정확히 예측할 수 있어야 한다. 따라서 추후 동수역학 및 열역학에 기초한 3차원 수치모형 연구와 성층흐름에 정밀한 밀도류 실험연구 및 이에 대한 적용이 필요할 것으로 판단된다.

  • PDF

Erosion-Corrosion Behavior of Power Plant Pipe Caused by Hot Feed Water (고온 급수에 의한 파워 플랜트 배관 침식-부식 거동)

  • Bang, Sung-Ho;Lee, Jin-Won;Kim, Tae-Won
    • Transactions of the Korean Society of Mechanical Engineers A
    • /
    • v.37 no.6
    • /
    • pp.739-745
    • /
    • 2013
  • In this study, we tried to define the erosion-corrosion behavior together with the resulting effects on a pipe that is a part of a feed water circulation system according to the pipe size and hot feed water environment. An erosioncorrosion analysis was performed through the Hayduk and Minhas model based on the chemical reaction between iron and oxygen, an essential corrosive factor. The erosion-corrosion rate against the pipe diameter and feed water temperature was then evaluated by means of finite element analysis using ABAQUS. As shown in the results, the feed water temperature was the main factor influencing the erosion-corrosion rate; in particular, it was expected that the thickness of 316 stainless steel would decrease by $2.59{\mu}m$ every year in a hot water environment at $290^{\circ}C$.

Improvement of Reservoir Turbidity Prediction Model with Considering Particle Sizes of Suspended Sediments (부유물질 크기분포를 고려한 저수지 탁도 예측 모델 개선)

  • Lee, Heung-Soo;Chung, Se-Woong;Liu, Huan;Jeong, Hee-Young
    • Proceedings of the Korea Water Resources Association Conference
    • /
    • 2008.05a
    • /
    • pp.1378-1383
    • /
    • 2008
  • 댐 저수지에서 지속적인 탁도를 유발하는 물질은 쉽게 침강되지 않는 $20{\mu}m$이하의 작은 부유물질(SS)이며, 가을 수직혼합 시기까지 침강되지 않은 부유물질은 다시 재부상하는 경우도 발생한다. 저수지내 탁수의 장기 체류는 수자원 이용과 하류하천의 수생태계에 다양한 문제를 야기하고 있어 일부 댐에서는 실시간 탁도 감시 장치를 설치하고 취수설비를 개선하는 등의 탁수저감 대책의 노력을 기울이고 있으나, 시설의 최적 운영을 지원할 수 있는 탁수 거동 및 탁도 예측에 관한 연구는 아직 부족한 실정이다. 특히, 탁도는 물 속에 존재하는 부유물질의 광학적 특성(light attenuation)을 나타내는 지표로써 SS와는 물리적인 물성이 달라 실시간 계측자료(탁도)와 모델의 모의 변수(SS)가 다른 문제점 때문에 모델링에 어려움이 있었다. 지금까지 탁도 모델링은 대부분 탁도와 SS의 상관관계를 이용하는 방법을 사용하였다. 그러나 이 방법은 탁도-SS 관계가 실측지점과 입자크기분포에 따라 달라지는 특성 때문에 변환과정에 예측결과의 불확실성이 내재한다는 지적을 받아왔다. 본 연구의 목적은 저수지로 유입한 탁수의 보다 과학적이고 정확한 탁도 예측을 위해 탁도를 유발하는 부유물질의 입자크기 분포와 공간적으로 변하는 탁도-SS의 상관관계를 고려할 수 있는 표준화된 탁도 모델링 방법을 개발하고, 실측자료를 사용하여 제시된 탁도 모델링 방법의 예측 성능을 평가하는데 있다. 부유물질의 이송-확산-침강 모델은 2차원 횡방향 평균 수리 모델과 연결(coupling)되어 수행되며, 저수지 수면을 통한 열 교환, 바람과 바닥 조도에 의한 난류혼합과 성층해석, 하천 유입수의 저수지내 밀도류 유동, 그리고 입자 크기별 부유물질의 독립침강을 해석한다. 부유입자의 크기분포와 공간적으로 서로 다른 탁도-SS 관계를 고려한 탁도 예측모델은 기존의 탁도를 종속변수로 사용한 예측 방법 또는 단일 입자크기를 사용한 모델보다 개선된 모의결과를 보여주었다. 본 연구에서 제시된 탁도 예측 알고리즘은 실시간 탁수감시와 예측 모델링, 그리고 댐 방류수 탁도 관리를 위한 선택취수 설비의 운영을 위한 의사결정지원시스템에 적용 가능할 것으로 사료된다.

  • PDF

A Numerical Study on Characteristics of Solute Transport in a Rough Single Fracture with Spatial Correlation Length and Effect of Effective Normal Stress (공간적 상관길이와 유효수직응력의 효과에 따른 거친 단일 균열내의 용질이동특성에 관한 수치적 연구)

  • Jeong, Woochang
    • Journal of the Korean GEO-environmental Society
    • /
    • v.10 no.1
    • /
    • pp.5-14
    • /
    • 2009
  • This study is to analyze numerically the spatial behaviors of the solute transport in a spatially correlated variable-aperture fracture under the effective normal stress conditions. Numerical results show that the solute transport in a fracture is strongly affected by the spatial correlation length of apertures and applied effective normal stress. According to increasing spatial correlation length, the mean residence time of solute is decreased and the tortuosity and Peclet number (is a dimensionless number relating the rate of advection of a flow to its rate of diffusion) is also decreased. These results mean that the geometry of the aperture distribution is favorable to the solute transport as the spatial correlation length is increased. However, according to the applied effective normal stress is increased, the mean residence time and tortuosity have a tendency to increase but the Peclet number is decreased. The main reason that the Peclet number is decreased, is that the solute is displaced by one or two channels with relatively higher local flow rate due to the increment of contact areas by increasing effective normal stress. Moreover, based on numerical results of the solute transport in this study, the exponential-type correlation formulae between the mean residence time and the effective normal stress are proposed.

  • PDF

Measurement of Velocity-Lag of Suspended-Sediment Particles in Turbulent Open-Channel Flows (난류 중 부유사의 속도 지체 측정)

  • Yu, Kwon-Kyu;Marian Muste;Robert Ettema;Yoon, Byung-Man
    • Journal of Korea Water Resources Association
    • /
    • v.39 no.2 s.163
    • /
    • pp.99-108
    • /
    • 2006
  • To describe the behavior of suspended-sediment particles in turbulent open-channel flows, the advection-diffusion equation or its simplified form has been used. Though this equation was derived upon several assumptions, only a few studies tried to evaluate the limit of the assumptions. The reason is that it is very difficult to measure turbulence in open-channel flows and to discriminate the velocities of water and sediment particles. The present study aims to measure the velocity profiles of water and sediment particles in open-channel flows by using PTV (Particle Tracking Velocimetry), a kind of PIV (Particle Image Velocimetry). The measured results showed that sediment particles moved slower than water tracers did in the outer region. In the present study, the amount of velocity-lag reached about $5\%$ of the mom flow velocity and the position of the maximum velocity-lag was $g/h\approx0.05\;(g^{+}=30\~50)$ The main cause of the velocity-lag of sediment particles seems that the sediment particles have larger density than water has. On the other hand, in the viscous sublayer, sediment particle has a larger velocity than water tracers. The reason of the inversion of velocity-lag may be due to the no-sleep condition of water at the solid boundaries.

Variation of Inflow Density Currents with Different Flood Magnitude in Daecheong Reservoir (홍수 규모별 대청호에 유입하는 하천 밀도류의 특성 변화)

  • Yoon, Sung-Wan;Chung, Se-Woong;Choi, Jung-Kyu
    • Journal of Korea Water Resources Association
    • /
    • v.41 no.12
    • /
    • pp.1219-1230
    • /
    • 2008
  • Stream inflows induced by flood runoffs have a higher density than the ambient reservoir water because of a lower water temperature and elevated suspended sediment(SS) concentration. As the propagation of density currents that formed by density difference between inflow and ambient water affects reservoir water quality and ecosystem, an understanding of reservoir density current is essential for an optimization of filed monitoring, analysis and forecast of SS and nutrient transport, and their proper management and control. This study was aimed to quantify the characteristics of inflow density current including plunge depth($d_p$) and distance($X_p$), separation depth($d_s$), interflow thickness($h_i$), arrival time to dam($t_a$), reduction ratio(${\beta}$) of SS contained stream inflow for different flood magnitude in Daecheong Reservoir with a validated two-dimensional(2D) numerical model. 10 different flood scenarios corresponding to inflow densimetric Froude number($Fr_i$) range from 0.920 to 9.205 were set up based on the hydrograph obtained from June 13 to July 3, 2004. A fully developed stratification condition was assumed as an initial water temperature profile. Higher $Fr_i$(inertia-to-buoyancy ratio) resulted in a greater $d_p,\;X_p,\;d_s,\;h_i$, and faster propagation of interflow, while the effect of reservoir geometry on these characteristics was significant. The Hebbert equation that estimates $d_p$ assuming steady-state flow condition with triangular cross section substantially over-estimated the $d_p$ because it does not consider the spatial variation of reservoir geometry and water surface changes during flood events. The ${\beta}$ values between inflow and dam sites were decreased as $Fr_i$ increased, but reversed after $Fr_i$>9.0 because of turbulent mixing effect. The results provides a practical and effective prediction measures for reservoir operators to first capture the behavior of turbidity inflow.

Development of an anisotropic spatial interpolation method for velocity in meandering river channel (비등방성을 고려한 사행하천의 유속 공간보간기법 개발)

  • You, Hojun;Kim, Dongsu
    • Journal of Korea Water Resources Association
    • /
    • v.50 no.7
    • /
    • pp.455-465
    • /
    • 2017
  • Understanding of the two-dimensional velocity field is crucial in terms of analyzing various hydrodynamic and fluvial processes in the riverine environments. Until recently, many numerical models have played major roles of providing such velocity field instead of in-situ flow measurements, because there were limitations in instruments and methodologies suitable for efficiently measuring in the broad range of river reaches. In the last decades, however, the advent of modernized instrumentations started to revolutionize the flow measurements. Among others, acoustic Doppler current profilers (ADCPs) became very promising especially for accurately assessing streamflow discharge, and they are also able to provide the detailed velocity field very efficiently. Thus it became possible to capture the velocity field only with field observations. Since most of ADCPs measurements have been mostly conducted in the cross-sectional lines despite their capabilities, it is still required to apply appropriate interpolation methods to obtain dense velocity field as likely as results from numerical simulations. However, anisotropic nature of the meandering river channel could have brought in the difficulties for applying simple spatial interpolation methods for handling dynamic flow velocity vector, since the flow direction continuously changes over the curvature of the channel shape. Without considering anisotropic characteristics in terms of the meandering, therefore, conventional interpolation methods such as IDW and Kriging possibly lead to erroneous results, when they dealt with velocity vectors in the meandering channel. Based on the consecutive ADCP cross-sectional measurements in the meandering river channel. For this purpose, the geographic coordinate with the measured ADCP velocity was converted from the conventional Cartesian coordinate (x, y) to a curvilinear coordinate (s, n). The results from application of A-VIM showed significant improvement in accuracy as much as 41.5% in RMSE.