• Title/Summary/Keyword: 부정류 계산모형

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Unsteady Flow Analysis by the Looped Network Channel Model (폐합형수계 모형에 의한 부정류 해석)

  • Park, Bong-Jin;Lee, Hwan-Ki;Jung, Kwan-Sue
    • Water for future
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    • v.29 no.5
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    • pp.129-138
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    • 1996
  • Loopnet model was developed to simulate unsteady flow in the looped network channel, considering change of the time and space. In this study, the looped solution algorithm was derived and the accuracy and stability of the model was tested. The Gulpo river system was used to calculate the flood water levels considering the hydraulic structures, tidal effect and inflow hydrographs. The result of the simulation showed that the accuracy and stability of this model was reliable. The change of flood water level of the Gulpo River system and the spillway section were not greatly affected by the operation water level of the navigation channel. But this analysis showed that roughness was one of the very important physical factor in changing flood water level.

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Numerical Simulation for Flood Inundation according to Overflow and Break at Vulnerable Levee in the Han River (월류 및 파제에 따른 한강제방 취약지역의 홍수범람모의)

  • Park, Sung Woo;Lee, Jin Woo;Cho, Yong-Sik
    • 한국방재학회:학술대회논문집
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    • 2011.02a
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    • pp.43-43
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    • 2011
  • 본 연구에서는 한강제방 취약구간인 성산대교와 잠실철교 부근 지역에 대한 홍수범람을 수치모의 하였다. 사용된 수치모형은 스위스의 Beffa에 의해 개발된 FLUMEN(FLUvial Modeling ENgine)으로서 스위스, 독일, 오스트리아 등에서 홍수범람해석에 사용된 바 있는 모형이다. 제방 취약지역은 한강 하천정비기본계획(2002)과 대학과 연계한 하천관리에 관한 연구용역(2단계 4차년)에 제시된 HEC-RAS 부등류 해석에 의해 계산된 홍수위와 기존 제방의 높이를 비교하여 산정하였다. 범람모의를 위해 HEC-RAS 부정류 해석을 통해 경계조건을 산정하고, FLUMEN을 이용하여 한강제방의 취약지역에 대한 범람모의와 파제 시나리오를 작성하여 파제에 따른 범람모의를 실시하고 적용성을 검토하였다. 제방 취약지역에서 월류로 인한 범람이 발생하였고, 이로 인해 일부 주거지역이 침수되었다. 가상 파제시나리오를 통한 수치모의 결과에서 여의도에서 $2.179km^2$의 넓은 지역에 침수현상이 계산되었으며, 최대 침수심은 5.054m로 성산대교 남단의 가상 파제 시나리오에서 계산되었다. 수치모의 결과 FLUMEN은 한강유역의 범람모의에 적합하다고 판단되며, 본 연구는 홍수 방어대책을 수립함에 있어 홍수 취약지역의 선정과 수공구조물의 설치 방향을 결정하는데 기초자료로 활용이 기대 된다. 정확도를 높이려면 보다 정밀한 제내지, 제외지의 측량자료의 적용, 내수 침수모형과의 연계, 조밀한 불규칙 삼각망의 작성이 필요하며, 국내실정에 맞는 정확한 적용기준마련과 유역의 수리학적 특성이 고려된 홍수해석 모형의 개발이 필요하고 보다 정확한 조도계수의 산정을 위한 지속적인 연구가 필요하다.

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Application of Hermite-Collocation Method for Unsteady Flow Analysis (부정류 해석을 위한 Hermite-Collocation 기법의 적용)

  • Han, Geon-Yeon;Lee, Eul-Rae;Park, Jae-Hong
    • Journal of Korea Water Resources Association
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    • v.32 no.3
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    • pp.237-246
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    • 1999
  • A finite element model is studied to simulate unsteady free surface flow based on dynamic wave equation and collocation method. The collocation method is used in conjunction with Hermite polynomials, and resulting matrix equations are solved by skyline method. The model is verified by applying to hydraulic jump, nonlinear disturbance propagation and dam-break flow in a horizontal frictionless channel. The computed results are compared with those by Bubnov-Galerkin and Petrov-Galerkin methods. It is also applied to the North Han River to simulate the floodwave propagation. The computed results have good agreements with those of DWOPER model in terms of discharge hydrographs. The suggested model has proven to be one of the promising scheme for simulating the gradually and rapidly varied unsteady flow in open channels.

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Unsteady Flow Analysis in the Youngsan River Using Explicit and Implicit Finite Difference Methods (양해법과 음해법을 이용한 영산강에서의 부정류해석)

  • Choi, Sung-Uk;Yeo, Woon-Kwang;Choo, Cheol;Kim, Chang-Wan;O, Yu-Chang
    • Water for future
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    • v.24 no.4
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    • pp.49-58
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    • 1991
  • Flood routing in the Youngsan River was performed for the flood event of July, 1989 by two finite difference methods. The Saint Venant eq., a kind of hyperbolic partial differential equation is employed as governing equation and the explicit scheme (Leap Frog) and implicit scheme (Preissmann) are used to discretize the GE. As for the external boundary conditions, discharge and tidal elevation are upstream and downstream BC, respectively and estuary dam is included in internal BC. Lateral inflows and upstream discharges are the hourly results from storage function method, At Naju station, a Relatively upstream points in this river, the outputs are interpreted as good ones by comparing two numerical results of FDMs with the observed data and the calibrated results by storage function method. and two computational results are compared at the other sites, from middle stream and downstream points, and thus are considered reliable. Therefore, we can conclude from this research that these numerical models are adaptable in simulating and forecasting the flood in natural channels in Korea as well as existing hydrologic models. And the study about optimal gate control at the flood time is expected as further study using these models.

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Computational Model for Flow in River Systems Including Storage Pockets with Side Weirs (횡월류형 강변저류지를 포함하는 하천수계에 대한 수리학적 계산모형)

  • Jun, Kyung-Soo;Kim, Jin-Soo;Kim, Won;Yoon, Byung-Man
    • Journal of Korea Water Resources Association
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    • v.43 no.2
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    • pp.139-151
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    • 2010
  • A quasi-two-dimensional unsteady flow model was developed for simulating the flow in a river system including artificial storage pockets with side weirs. It is a multiply-connected network which combines channels and storage pockets. The channel flow is described by the one-dimensional Saint Venant equations, and the weir overflow flow by the cell continuity and stage-discharge relations. The model was applied to the Imjin river system including six artificial storage pockets. Design flood peak reduction due to storage pockets is not sensitive to the side weir discharge coefficient. Storage pockets downstream are less effective than upstream ones in reducing peak stage as the backwater effect becomes more dominant. Simulated flood control effect is highly sensitive to the roughness coefficient. The uncertainty due to the roughness coefficient increases as the weir crest elevation gets higher. Because the best design alternative varies with the roughness coefficient, proper estimation of it is essential to the design of side weirs. Moreover, uncertainty of the estimation needs to be considered in the design process.

The Development of Dynamic Model for Long-Term Simulation in Water Distribution Systems (상수관망시스템에서의 장기간 모의를 위한 동역학적 모형의 개발)

  • Park, Jae-Hong
    • Journal of Korea Water Resources Association
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    • v.40 no.4
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    • pp.325-334
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    • 2007
  • In this study, a long-term unsteady simulation model has been developed using rigid water column theory which is more accurate than Extended-period model and more efficient comparing with water-hammer simulation model. The developed model is applied to 24-hours unsteady simulation considering daily water-demand and water-hammer analysis caused by closing a valve. For the case of 24-hours daily simulation, the pressure of each node decreases as the water demand increase, and when the water demand decrease, the pressure increases. During the simulation, the amplitudes of flow and pressure variation are different in each node and the pattern of flow variation as well as water demand is quite different than that of KYPIPE2. Such discrepancy necessitates the development of unsteady flow analysis model in water distribution network system. When the model is applied to water-hammer analysis, the pressure and flow variation occurred simultaneously through the entire network system by neglecting the compressibility of water. Although water-hammer model shows the lag of travel time due to fluid elasticity, in the aspect of pressure and flow fluctuation, the trend of overall variation and quantity of the result are similar to that of water-hammer model. This model is expected for the analysis of gradual long-term unsteady flow variations providing computational accuracy and efficiency as well as identifying pollutant dispersion, pressure control, leakage reduction corresponding to flow-demand pattern, and management of long-term pipeline net work systems related with flowrate and pressure variation in pipeline network systems

Application of HEC-RAS and K-River for River Bed Change Prediction (하상변동예측을 위한 HEC-RAS와 K-River의 적용)

  • Byun, Jisun;Noh, Junwoo;Hur, Youngtek;Kim, Yeonsu;An, Hyunuk
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.240-240
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    • 2022
  • 하천을 안전하고 효율적으로 관리하기 위해서는 하상재료, 하천형태, 하천유황 등 자연적 또는 인위적 변화에 의한 하상변동의 해석과 예측이 수행되어야 한다. 하상변동은 하천의 일정구간을 기준으로 상류단면으로부터 유입되는 유입 유사량과 하류단면을 통해 유출되는 유사량의 차이에 의해 구간 내에서 발생하는 하상의 상승 또는 저하가 발생하는 현상을 말한다. 이러한 하상변동은 하천의 이수와 치수, 환경변화에 복합적으로 영향을 미치게 된다. 이에 본 연구에서는 댐 직하류를 대상으로 K-River 모형과 HEC-RAS 모형을 이용하여 하상변동을 계산하고, 각 모형으로부터 얻어진 모의 결과를 비교 분석하였다. K-River 모형의 하상변동 모의를 위한 경계조건을 구성하기 위해 하상토의 입도분포를 입력하고, 유역의 월별 평균 강수량과 댐 유입량을 이용하여 비유량법을 이용하였으며, 산출된 유입량을 바탕으로 댐방류량을 결정하였다. 유사량 공식의 선정은 하천 및 하상토의 특성에 맞추어 적절히 활용하여야 하나, 본 연구에서는 테스트를 목적으로 Engelund-Hansen 공식, Yang 공식, Laursen 공식 등 5가지의 유사량 공식을 선정하였다. HEC-RAS 모형의 경우 최근 유사 부정류모의 기능이 개발되었으나, 테스트 결과 안정적으로 모의가 수행되지 않아 준정류 조건을 적용하여 수행하였다. HEC-RAS와 K-River의 모의 결과를 비교한 바에 따르면 정량적인 차이가 나타나지만, 하상고의 상승 및 하강 경향은 대체로 일치하는 것으로 확인되었다.

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Hydraulic Flood Routing using Linear Reservoir Model (선형저수지모형을 적용한 수리학적 홍수추적)

  • Jeon, Min-Woo;Cho, Young-Soo
    • Journal of Korea Water Resources Association
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    • v.35 no.6
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    • pp.787-796
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    • 2002
  • Hydraulic flood routing was performed for unsteady flow in a natural river using Preissmann scheme. A Log-Pearson Type-Ⅲ hydrograph is chosen arbitrarily as the upstream boundary condition and lateral inflow hydrographs for sensitivity analysis. For the application with an actual river system, upstream and lateral inflow hydrographs were estimated by the linear reservoir model and the Manning's equation was used as the downstream boundary condition. The unsteady flow model using the linear reservoir model as the inflow hydrographs was applied to Bochung stream basin and gives good results, and is approved to be used for the runoff prediction. As results of the sensitivity analysis, the proposed model may help to estimate the roughness coefficients when using the unsteady flow model with lateral inflow combined with the linear reservoir model.

An Implicit Method to Analysis Unsteady Flow (부정류의 IMPLICIT 수치해석)

  • 이종태
    • Journal of the Korean Society of Fisheries and Ocean Technology
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    • v.17 no.2
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    • pp.71-76
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    • 1981
  • In order to make a numerical modeling for the one dimensional unsteady flow which expressed by Saint Venant partial differential equations, Preissmann's implicit scheme was used, and it's stability and accuracy was mentioned. By introducing recurrence relations make it possible to use double sweep algorithm. Effective parameters to the result were the values of the $\Delta$t/$\Delta$x, $\theta$ and the chezy coefficient. In oder to get numerical solutions with enough accuracy, $\Delta$t/$\Delta$x should not be far from the value of 1, and the criteria of the $\theta$ was 0.6<$\theta$<1.0 for the stability without condition. This model should be calibrated by real field data, and expected to be developed for the simulation of the river system and to the long wave analysis for one dimensional coastal zone problem.

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Accuracy Analysis of HEC-RAS for Unsteady Flow Simulation considering the Flow Pattern Variations over the Side-weir of Side-Weir Detention Basin (강변저류지 횡월류부의 흐름 형태 변화를 고려한 HEC-RAS의 하도 내 부정류 모의 정확도 분석)

  • Kim, Sanghyuk;Yoon, Byungman;Kim, Dongsu;Kim, Seojun
    • Journal of Korea Water Resources Association
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    • v.49 no.1
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    • pp.29-39
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    • 2016
  • Accurate quantitative assessment of flood control effect of side-weir detention basin as a flood countermeasure was highly required, in which one-dimensional HEC-RAS model has been widely utilized in practice. When the submerged overflow occurred particularly driven by limited storage capacity of a given detention basin, HEC-RAS model could not be sufficiently applicable by guaranteeing acceptable accuracy without reliable benchmark dataset. From this perspective, a dedicated unsteady experiment was planned and carried out to physically realize such submerged overflow for accommodating better accuracy. Subsequently, the experimental results were applied to validate and calibrate HEC-RAS unsteady modeling to provide flood control effect of the detention basin for various inflow scenarios. After following this procedure, the modelled results indicated that there appeared within -5% of difference in stage height and maximum 2.4% accuracy to assess the flood control effect, thereby ensuring the calibrated HEC-RAS unsteady model to be accurate with practically acceptable error range.