• 제목/요약/키워드: Tidal Flow

검색결과 486건 처리시간 0.087초

가막만의 해수교환 (Tidal Exchange Of Sea Water In Gamag Bay)

  • 이명철;장선덕
    • 한국해양학회지
    • /
    • 제17권1호
    • /
    • pp.12-18
    • /
    • 1982
  • 여수반도의 남단과 돌산도에 의해 둘러싸인 가막만은 면적 112$\textrm{km}^2$, 용적 7.09 $10^{8}$㎥, 남북방향의 길이 약 15km, 평균수심 약 6.3mdls 천해이다. 대조차는 약 3m이며 만내해수는 조류에 의하여 2개의 수로를 통해 외해수와 교류 교환된다. 밀물 때 만의 북쪽에 있는 여수항수로와 남쪽의 만구를 통하여 서로 다른 방향으로 유입된 해수는 만내에서 만나고, 썰물 때 다시 이들 만구를 통하여 유출한다. 이 해역은 여수항에 인접한 굴 주산지로서 생산성이 매우 높은 곳이며 도시 및 산업폐수가 날로 늘어날 것으로 예상되는 곳이다.

  • PDF

Three-dimensional Numerical Modelling of Seawater Circulation of Semi-enclosed Bay with the Flow-control Structures

  • JONG-KYU KIM;TAE-SOON KANG;HEON-TAE KIM
    • 한국해양공학회지
    • /
    • 제15권3호
    • /
    • pp.35-42
    • /
    • 2001
  • The characteristics of tidal circulation with the flow-control structures using the three-dimensional numerical model (POM, Princeton Ocean Model) of Chinhae Bay, Korea were investigated. To confirm th efficiencies of flow-control structures, the training wall and submerged training wall were constructed at the mouth and narrow channel in Chinhae Bay. On the basis of the present investigation, the tidal circulation induced by the construction of flow-control structures could enhance the water exchange improvement appropriately. And, th training wall at the central is more dominated than the other structures for the efficient of water exchange. The sites and types of structure and flow patterns seem to be very sensitive in tidal simulation and changes in flow fields.

  • PDF

도류제에 의한 항만내 조류제어 연구 (Flow-Guider Applied to Controlling Current in a Bay)

  • 양찬규;홍기용
    • 한국해양공학회지
    • /
    • 제11권4호
    • /
    • pp.141-151
    • /
    • 1997
  • This paper deals with a numerical study of flow-guider applied to controlling current in a bay. Two dimensional numerical model for tidal currents based on the depth averaged equation is developed and standard k-.epsilon. model is adopted to determine the turbulence diffusion. Equations are described in a generalized coordinate system to be implemented by non-staggered grid system and discretized by using finite volume method. Unsteady flow is simulated by fully implicit scheme. Hybrid scheme and central differencing are used to compute the convective terms and source terms, respectively. The tidal current in a rectangular bay is simulated and it gives satisfactory results. The realistic and distinct models of a large structure placed in bay are also exemplified with or without flow-guiders. The simulation results show that the flow-guider gives the residual tidal current in the bay by the different flux with respect to the direction of tidal current.

  • PDF

Characteristics of tidal turbulence near the bottom at a coastal trench in Tongyoung, Korea

  • Kim, Yonghae;Hong, Chul-Hoon
    • 수산해양기술연구
    • /
    • 제50권4호
    • /
    • pp.435-446
    • /
    • 2014
  • Tidal turbulence was examined using three-dimensional tidal velocity data observed at a trench offshore of Tongyoung, Korea. The kinetic energy and intensity, including the variation period of the flow velocity and direction, were used to investigate the relationships between tidal turbulence and fishing gear dynamics, including the effects of swimming fish during fishing operations. As the resultant velocity increased from 0.2 to 0.9 m/s, the kinetic energy also significantly increased, while the turbulence intensity decreased from 50 to 10%. Tidal flow in strong flow fields displayed shorter periods of between 4 and 10 s, as determined by fast Fourier transform, the global wavelet method, and peak event analysis, and the periods were compared with the period of response to swimming fish and to oscillation of fishing gear. As mean velocity increased, velocity amplitude also increased from 0.1 to 0.6 m/s, and its directional amplitude changed markedly from 20 and $90^{\circ}$. Our study suggests that tidal turbulence can influence fish behavior or fishing gear geometry during fishing operations, although our analysis considered only a limited area. In future work, observations should be carried out over a more extensive depth and area.

수치실험을 통한 금오열도 해역의 해수유동 특성 (Flow characteristics of Geumo Islands Sea area by numerical model experiments)

  • 추효상
    • 수산해양기술연구
    • /
    • 제58권2호
    • /
    • pp.159-174
    • /
    • 2022
  • Flow prediction was carried out through observational survey and three dimensional multi-layered numerical diagnostic model experiment to clarify the time and spatial structure of tidal current and residual flow dominant in the sea exchange and material circulation of the waters around Geumo Islands in the southern waters of Korea. The horizontal variation of tidal current is so large that it causes asymmetric tidal mixing due to horizontal eddies and the topographical effect creating convergence and dispersion of flow direction and velocity. Due to strong tidal currents flowing northwest-southeast, counterclockwise and clockwise eddies are formed on the left and right sides of the south of Sori Island. These topographical eddies are created by horizontal turbulence and bottom friction causing nonlinear effects. Baroclinic density flows are less than 5 cm/s at coastal area in summer and the entire sea area in winter. The wind driven currents assuming summer and winter seasonal winds are also less than 5 cm/s and the current flow rate is high in winter. Density current in summer and wind driven current in winter have a relatively greater effect on the net residual flows (tidal residual current + density current + density driven current) around Geumo Islands Sea area.

유한요소법을 이용한 해수유동 해석 (I) (Analysis of Tidal Flow Using the Frequency Domain Finite Element Method (I))

  • 권순국;고덕구;조국광;김준현
    • 한국농공학회지
    • /
    • 제33권4호
    • /
    • pp.73-83
    • /
    • 1991
  • A numerical simulation of a 2-dimensional tidal flow in a shallow sea was performed using the frequency domain finite element method. In this study, to overcome the inherent problems of a time domain model which requires high eddy viscosity and small time steps to insure numerical stability, the harmonic function incorporated with the linearized function of governing equations was applied. Calculations were carried out using the developed tidal model(TIDE) in a rectangular channel of lOm(depth) X 4km (width) X 25km(length) under the condition of tidal waves entering the channel closed at one end for both with and without bottom friction damping. The predicted velocities and water levels at different points of the channel were in close agreement with less than 1 % error between the numerical and analytical solutions. The results showed that the characteristics of the tidal flow were greatly affected by the magnitude of tidal elevation forcing, and not by on surface friction, wind, or the linear bottom friction when the value was less than 0.01. For the optimum size of grid to obtain a consistent solution, the ratio between the length of the maximum grid and the tidal wave length should be less than 0.0018. It was concluded that the finite element tidal model(TIDE) developed in this study could handle the numerical simulation of tidal flows for more complex geometrical conditions.

  • PDF

해안 매립에 따른 항내 조류변화 예측 (Prediction of Tidal Flow Changes Caused by Coastal Reclamation in Harbor System)

  • 박석순;박재우
    • 환경영향평가
    • /
    • 제5권1호
    • /
    • pp.31-45
    • /
    • 1996
  • This paper presents the results from a hydrodynamic model study to predict the impacts of coastal reclamation in Pusan harbor system using RMA2 which is a tidal flow model of the US Army Corps of Engineers' TABS-2 system. A finite element mesh was constructed and refined to cover the complicated geometry of Pusan harbor system and the proposed reclamation area. The model was calibrated to tidal elevations and currents measured during spring fall syzygys. Under the three different tidal conditions including summer winter syzygys, spring fall quarters, and summer winter quarters, the model predictions were compared with the field measurements both in tidal elevation and current. In all cases, there were excellent agreements between the model predictions and the field measurements. The validated model was then used to predict the changes in tidal current and elevation that might occur due to the coastal reclamation. It was predicted that there would be no change in tidal elevation of this system after the reclamation. In tidal current, however, discernible changes were predicted near the proposed reclamation area both in magnitude and direction.

  • PDF

Determination of Design Flood Levels for the Tidal Reach of the Han River

  • Jun, Kyungsoo;Li, Li
    • 한국수자원학회:학술대회논문집
    • /
    • 한국수자원학회 2015년도 학술발표회
    • /
    • pp.173-173
    • /
    • 2015
  • The flood water level in tidal river is determined by the joint effects of flood discharge and tidal water levels at downstream boundary. Due to the variable tidal boundary conditions, the evaluated design water levels associated with a certain flood event can be significantly different. To avoid determining of design water levels just by a certain tidal boundary condition and remove the influence of variability in boundary condition from the evaluation of design water levels, a probabilistic approach is considered in this study. This study focuses on the development of a method to evaluate the realistic design water levels in tidal river with taking into account the combined effects of river discharge and tidal level. The flood water levels are described by the joint probability of two driving forces, river discharge and tidal water levels. The developed method is applied to determine design water levels for the tidal reach of the Han River. An unsteady flow model is used to simulate the flow in the reach. To determine design water levels associated with a certain flood event, first, possible boundary conditions are obtained by sampling starting times of tidal level time series; then for each tidal boundary condition, corresponding peak water levels along the channel are computed; and finally, design water levels are determined by computing the expectations of the peak water levels. Two types of tides which are composed by different constituents are assumed (one is composed by $M_2$, and the other one is composed by $M_2$ and $M_2$) at downstream boundary, and two flood events with different maximum flood discharges are considered in this study. It is found that (a) the computed design water levels with two assumed tides have no significant difference for a certain flood event, though variability of peak water levels due to the tidal effect is considerably different; (b) tidal effect can reach to the Jamsil submerged weir and the effect is obvious in the downstream reach of the Singok submerged weir; (c) in the tidally affected reach, the variability of peak water levels due to the tidal effect is greater if the maximum flood discharge is smaller.

  • PDF

A Study of Estuarine Flow using the Roving ADCP Data

  • Kang, Ki-Ryong;Iorio, Daniela Di
    • Ocean Science Journal
    • /
    • 제43권2호
    • /
    • pp.81-90
    • /
    • 2008
  • A study of estuarine flows during a neap tide was performed using 13-hour roving acoustic Doppler current profiles (ADCP) and conductivity-temperature-depth (CTD) profiles in the Altamaha River estuary, Georgia, U.S.A. The least-squared harmonic analysis method was used to fit the tidal ($M_2$) component and separate the flow into two components: the tidal and residual ($M_2$-removed) flows. We applied this method to depth-averaged data. Results show that the $M_2$ component demonstrates over 95% of the variability of observation data. As the flow was dominated by the $M_2$ tidal component in a narrow channel, the tidal ellipse distribution was essentially a back-and-forth motion. The amplitude of $M_2$ velocity component increased slightly from the river mouth (0.45 m/sec) to land (0.6 m/sec) and the phase showed fairly constant values in the center of the channel and rapidly decreasing values near the northern and southern shoaling areas. The residual flow and transport calculated from depth-averaged flow shows temporal variability over the tidal time scale. Strong landward flows appeared during slack waters which may be attributed to increased baroclinic forcing when turbulent mixing decreases.

경기만 조석 잔차류 산정 및 변동성 (Estimation of Tidal Residual Flow and Its Variability in Kyunggi Bay of Korea)

  • 김창식;임학수;김진아;김선정;박광순;정경태
    • 한국해안·해양공학회논문집
    • /
    • 제22권6호
    • /
    • pp.353-360
    • /
    • 2010
  • 경기만은 한강과 임진강 수계의 하구역을 중심으로 황해의 중부해역을 잇는 매우 중요한 해역이다. 특히 경기만 해역의 연안개발로 인한 하구습지와 연안습지의 훼손이 가속화되고 있다. 이러한 갯벌과 해저 퇴적체의 변화에 대한 이해와 원인 규명을 위해서는 조석 잔차류의 역할이 중요함을 제시하였다(Kim et al., 2009). 하지만 경기만에서의 조석 잔차류에 대한 정량적 연구는 잘 이루어져 있지 못하며, 연간 변동성에 대한 연구도 흔하지 않다. 본 연구에서는 경기만 주수로인 석모수로와 장봉수로에서 1년간 연속 관측한 수층별 조류를 이용하여, 조석 잔차류의 특성과 조류분조의 특성을 정밀하게 분석하였다. Kim et al.(2009)이 제안한 이동평균(Moving average) 기법을 이용하여 연간 월별 그리고 수층별 자료로 확대하여 분석하였다. 또한 조류조화분해를 실시하여 이동평균 기법의 잔차류 특성과 비교하였으며 계절별 수층별 조류분조의 특성을 제시하였다. 비조석성분인 잔차류 산정에는 이동평균 기법과 조류조화분해법이 동일한 결과를 보였으나 단주기 변동성 분석에는 이동평균기법이 장점을 가진 것으로 보인다. 석모수로의 잔차류는 연간 낙조류 방향이며, 표층에서 20-40 cm/s, 저층에서 10 cm/s 미만으로 분석되었다. 장봉수로에서는 연간 창조류 방향의 잔차류는 표층에서 15-30 cm/s, 저층에서 20 cm/s 안팎으로써 여름철에는 강한 경압형 구조를 보인다. 본 연구에서는 해저면에 설치된 음파식 유속계 자료의 처리, 조석잔차류의 산정과 경기만 수로에서의 연간 잔차류 수직 구조와 변동성에 대한 결과를 제시함으로써, 경기 일대의 물질이동과 퇴적체 변동성 연구에 기본적 자료로 활용될 것으로 판단된다.