• 제목/요약/키워드: Reservoir modeling

검색결과 237건 처리시간 0.031초

간편법에 의한 소규모저수지의 수문학적 안전성 평가 (Hydrologic Safety Evaluation of Small Scale Reservoir by Simplified Assesment Method)

  • 이주헌;양승만;김성준;강부식
    • 한국농공학회논문집
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    • 제53권2호
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    • pp.9-17
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    • 2011
  • Based on the statistical annual report, there are 17,649 reservoirs are operating for the purpose of agricultural water supply in Korea. 58 % of entire agricultural reservoirs had been constructed before 1948 which indicate the termination of required service life and rest of those reservoirs have also exposed to the dam break risk by extreme flood event caused by current ongoing climate change. To prevent damages from dam failure accident of these risky small size dams, it is necessary to evaluate and manage the structural and hydrological safety of the reservoirs. In this study, a simplified evaluation method for hydrologic safety of dam is suggested by using Rational and Creager formula. Hydrologic safety of small scale dams has evaluated by calculating flood discharge capacity of the spillway and compares the results with design frequency of each reservoir. Applicability and stability of suggested simplified method have examined and reviewd by comparing the results from rainfall-runoff modeling with dam break simulation using HEC-HMS. Application results of developed methodology for three sample reservoirs show that simplified assessment method tends to calculate greater inflow to the reservoirs then HEC-HMS model which lead lowered hydrologic safety of reservoirs. Based on the results of application, it is expected that the developed methodology can be adapted as useful tool for small scale reservoir's hydrologic safety evaluation.

ELCOM-CAEDYM을 이용한 용담호 3차원 수리-수질 연동 모델링 (A Coupled Three-Dimensional Hydrodynamic and Water Quality Modeling of Yongdam Reservoir using ELCOM-CAEDYM)

  • 정세웅;이정현;류인구
    • 한국물환경학회지
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    • 제27권4호
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    • pp.413-424
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    • 2011
  • The study was aimed to evaluate the applicability of a three-dimensional (3D) hydrodynamic and water quality model, ELCOM-CAEDYM for Yongdam Reservoir, Korea. The model was applied for the simulations of hydrodynamics, thermal stratification processes, stream density flow propagation, and water quality parameters including dissolved oxygen, nutrients, organic materials, and algal biomass (chl-a) for the period of June to December, 2006. The field data observed at four monitoring stations (ST1~ST4) within the reservoir were used to validate the models performance. The model showed reasonable performance nevertheless low frequency boundary forcing data were provided, and well replicated the physical, chemical, and biological processes of the system. Simulated spatial and temporal variations of water temperature, nutrients, and chl-a concentrations were moderately consistent with the field observations. In particular, the model rationally reproduced the succession of different algal species; i.e., diatom dominant during spring and early summer, after then cyanobacteria dominant under warm and stratified conditions. ELCOM-CAEDYM is recommendable as a suitable coupled 3D hydrodynamic and water quality model that can be effectively used for the advanced water quality management of large stratified reservoirs in Korea.

물리탐사 기법들의 화학공법 모니터링 적용성 분석 (An Analysis on Applicability of Geophysical Exploration Methods to Monitoring Polymer-flooding)

  • 천세욱;박찬호;구본진;남명진;손정술
    • 지구물리와물리탐사
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    • 제18권3호
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    • pp.143-153
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    • 2015
  • 탄화수소 생산에서 화학공법은 폴리머 용액을 저류층에 주입함으로써 탄화수소의 생산량을 증대시키는 방법이다. 화학공법의 유용성을 파악하기 위해서는 저류층 내 폴리머 용액의 거동 양상을 모니터링하는 것이 매우 중요하다. 저류층 내 폴리머 용액과 유체 변화에 대한 모니터링의 가능성을 확인하기 위해, 저류층을 구성하고 있는 암석 및 유체의 종류, 포화도 등의 매개변수에 따른 탄성파 및 전기비저항 암석물리모델을 구성하고, 폴리머 주입에 따른 탄성파 및 EM 토모그래피의 반응을 계산하였다. 특히 전기비저항 암석물리모델 구성에서는 순수사암, 셰일질 사암, 사암셰일박리층 3가지의 서로 다른 저류층 암석을 고려하였다. 폴리머 용액의 농도는 가장 일반적으로 이용되는 2 wt%로 하고 담수를 이용한 경우와 염수를 이용한 경우로 나누어 분석하였다. 더 나아가, 화학공법에 대한 중성자검층 민감도 분석을 수행하였다. 이 논문에서 다루는 기법들은 탄화수소 저류층뿐만 아니라 지열 저류층 등의 모니터링에 있어서도 중요하게 적용될 것이다.

Application of CE-QUAL-W2 [v3.2] to Andong Reservoir: Part II: Simulations of Chlorophyll a and Total Phosphorus Dynamics

  • Ram, Bhattarai Prasid;Kim, Yoon-Hee;Kim, Bom-Chul;Heo, Woo-Myung
    • 생태와환경
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    • 제41권4호
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    • pp.472-484
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    • 2008
  • The calibrated Andong Reservoir hydro-dynamic module (PART I) of the 2-dimensional hydrodynamic and water quality model, CE-QUAL-W2 [v3.2], was applied to examine the dynamics of total phosphorus, and chlorophyll $\alpha$ concentration within Andong Reservoir. The modeling effort was supported with the data collected in the field for a five year period. In general, the model achieved a good accuracy throughout the calibration period for both chlorophyll ${\alpha}$ and total phosphorus concentration. The greatest deviation in algal concentration occurred on $10^{th}$ October, starting at the layer just beneath the surface layer and extending up to the depth of 35 m. This deviation is principally attributed to the effect of temperature on the algal growth rate. Also, on the same date, the model over-predicts hypolimnion and epilimnion total phosphorus concentration but under-predicts the high concentrated plume in the metalimnion. The large amount of upwelling of finer suspended solid particles, and re-suspension of the sediments laden with phosphorus, are thought to have caused high concentration in the epilimnion and hypolimnion, respectively. Nevertheless, the model well reproduced the seasonal dynamics of both chlorophyll a and total phosphorus concentration. Also, the model tracked the interflow of high phosphorus concentration plume brought by the turbid discharge during the Asian summer monsoon season. Two different hypothetical discharge scenarios (discharge from epilimnetic, and hypolimnetic layers) were analyzed to understand the response of total phosphorus interflow plume on the basis of differential discharge gate location. The simulated results showed that the hypolimnetic discharge gate operation ($103{\sim}113\;m$) was the most effective reservoir structural control method in quickly discharging the total phosphorus plume (decrease of in-reservoir concentration by 219% than present level).

기후변화에 따른 소양호의 수온 장기 모의 및 불확실성 정량화 (Long-term Simulation and Uncertainty Quantification of Water Temperature in Soyanggang Reservoir due to Climate Change)

  • 윤여정;박형석;정세웅;김용대;온일상;이서로
    • 한국물환경학회지
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    • 제36권1호
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    • pp.14-28
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    • 2020
  • Future climate change may affect the hydro-thermal and biogeochemical characteristics of dam reservoirs, the most important water resources in Korea. Thus, scientific projection of the impact of climate change on the reservoir environment, factoring uncertainties, is crucial for sustainable water use. The purpose of this study was to predict the future water temperature and stratification structure of the Soyanggang Reservoir in response to a total of 42 scenarios, combining two climate scenarios, seven GCM models, one surface runoff model, and three wind scenarios of hydrodynamic model, and to quantify the uncertainty of each modeling step and scenario. Although there are differences depending on the scenarios, the annual reservoir water temperature tended to rise steadily. In the RCP 4.5 and 8.5 scenarios, the upper water temperature is expected to rise by 0.029 ℃ (±0.012)/year and 0.048 ℃ (±0.014)/year, respectively. These rise rates are correspond to 88.1 % and 85.7 % of the air temperature rise rate. Meanwhile, the lower water temperature is expected to rise by 0.016 ℃ (±0.009)/year and 0.027 ℃ (±0.010)/year, respectively, which is approximately 48.6 % and 46.3 % of the air temperature rise rate. Additionally, as the water temperatures rises, the stratification strength of the reservoir is expected to be stronger, and the number of days when the temperature difference between the upper and lower layers exceeds 5 ℃ increases in the future. As a result of uncertainty quantification, the uncertainty of the GCM models showed the highest contribution with 55.8 %, followed by 30.8 % RCP scenario, and 12.8 % W2 model.

저수지 제체월류 및 내부침식 보호기술 모형실험 연구 (An Experimental Study on Overflow and Internal Erosion Protection Technology of a Reservoir)

  • 김기환;이태호;유전용;임은상;이승주;김용성
    • 한국지반신소재학회논문집
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    • 제18권4호
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    • pp.181-191
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    • 2019
  • 국내 저수지는 대부분 필댐으로 구성되고 있고, 필댐의 붕괴는 월류와 파이핑이 주된 원인으로 분석되고 있다. 본 연구에서는 원심모형실험기를 이용하여 실제 운영 중인 공주시 ◯◯ 저수지 축조 모형에 대하여 수위승강 시 및 월류 시 저수지의 거동 특성을 고찰하였다. 실제 저수지의 침투 및 월류 모사를 위해서 1/50로 축소한 모형에 파손 및 보강된 복통을 설치하고 제정 보강 및 미보강의 조건을 부여한 후 LVDT, 간극수압계를 설치하고 수위승강시험 및 월류시험을 수행하여 보강방법에 따른 제체의 거동 특성을 검토하였다. 원심모형실험 결과, 수위승강 시험에서 파손된 복통이 제체의 안정에 영향을 미칠 수 있는 것으로 나타났고 반전공법과 보강공법을 병행한 경우 제체의 침투 안정성을 확보할 수 있는 것으로 나타났다. 또한, 월류시험에서 월류유도 수로 설치 시 제체의 세굴과 토사의 유출을 방지할 수 있다는 것을 확인하였다. 본 연구를 통해 저수지 월류유도 수로 및 복통 보강공법 적용에 필요한 기초자료를 제공할 수 있을 것으로 판단된다.

GIS를 이용한 저수지의 수질관리시스템 구축 (Development of Water Quality Management System in Daecheong Reservoir Using Geographic Information System)

  • 한건연;백창현
    • Spatial Information Research
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    • 제12권1호
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    • pp.13-27
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    • 2004
  • 금강의 중ㆍ상류부에 위치한 인공호수인 대청호 유역의 경우, 최근 급격한 인구증가와 물자생산, 그리고 이들의 결과로 인한 각종 오염물질의 증가로 수질보전과 관리에 심각한 문제가 야기되고 있으므로, 이에 대한 집중적인 수질관리가 요구된다. 이들 문제를 해결하기 위하여 지난 수년간 많은 연구가 수행되었지만 근본적인 해결의 실마리를 찾지 못하고 있다. 뿐만 아니라, 현재 수행되고 있는 수질관리가 미흡한 것으로 나타나고 있어 이를 보완할 새로운 관리기법의 도입이 시급히 요구되고 있지만 이에 대한 체계적인 기술축적과 자료 및 경험의 부족으로 많은 어려움을 겪고 있는 실정이다. 본 연구는 WASP5 모형을 이용하여 대청호의 수질을 해석하고 GIS와 연계시켜 수질관리시스템을 구축함으로서 효율적이고 과학적인 수질관리가 이루어지도록 하는데 그 목적이 있다. WASP5 모형을 대청호의 실측치와 비교하여 모형의 보정과 검증을 수행하였고, 수질관리시스템 구축을 위한 GIS와의 연계는 ArcView의 Avenue를 이용하여 구성하였다. Avenue를 통한 다양한 메뉴 구성 및 이를 통한 모의수행은 사용자 요구나 편의에 맞게 손쉽게 처리할 수 있도록 구성하였다. 따라서, GIS 환경하에서 실제적이고 효율적인 수질관리 뿐만 아니라 장래수질의 예측도 가능하기 때문에 대청호 이외에 다른 유역에 대한 활용성도 매우 높을 것으로 판단된다.

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Comparison of flood inundation simulation between one- and two-dimensional numerical models for an emergency action plan of agricultural reservoirs

  • Kim, Jae Young;Jung, Sung Ho;Yeon, Min Ho;Lee, Gi Ha;Lee, Dae Eop
    • 농업과학연구
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    • 제48권3호
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    • pp.515-526
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    • 2021
  • The frequency of typhoons and torrential rainfalls has increased due to climate change, and the concurrent risk of breakage of dams and reservoirs has increased due to structural aging. To cope with the risk of dam breakage, a more accurate emergency action plan (EAP) must be established, and more advanced technology must be developed for the prediction of flooding. Hence, the present study proposes a method for establishing a more effective EAP by performing flood and inundation analyses using one- and two-dimensional models. The probable maximum flood (PMF) under the condition of probable maximum precipitation (PMP) was calculated for the target area, namely the Gyeong-cheon reservoir watershed. The breakage scenario of the Gyeong-cheon reservoir was then built up, and breakage simulations were conducted using the dam-break flood forecasting (DAMBRK) model. The results of the outflow analysis at the main locations were used as the basis for the one-dimensional (1D) and two-dimensional (2D) flood inundation analyses using the watershed modeling system (WMS) and the FLUvial Modeling ENgine (FLUMEN), respectively. The maximum inundation area between the Daehari-cheon confluence and the Naeseong-cheon location was compared for each model. The 1D flood inundation analysis gave an area of 21.3 km2, and the 2D flood inundation analysis gave an area of 21.9 km2. Although these results indicate an insignificant difference of 0.6 km2 in the inundation area between the two models, it should be noted that one of the main locations (namely, the Yonggung-myeon Administrative and Welfare Center) was not inundated in the 1D (WMS) model but inundated in the 2D (FLUMEN) model.

부상웨어 설치에 따른 대청호 조류 성장 억제 효과 수치모의 (Numerical Modeling Effects of a Skimmer Weir Method on the Control of Algal Growth in Daecheong Reservoir)

  • 김유경;정세웅;이흥수;정용락
    • 한국물환경학회지
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    • 제23권5호
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    • pp.581-590
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    • 2007
  • A float-type weir has been proposed for the control of algal blooms in some of eutrophic reservoirs recently. It is known as a costly and ecologically sound method, but there is little understanding about the sustainability of this low-cost technology for reservoirs that are located in monsoon climate areas where large flood events during the summer cause high water surface fluctuations. The objective of this study was to assess the effectiveness of a skimmer weir aimed at controlling algal blooms in the lacustrine zone and near the drinking water withdrawal structures of Daecheong Reservoir under various hydrodynamic flow conditions. The effect of weir on the control of algal blooms was simulated using a laterally averaged two-dimensional hydrodynamic and eutrophication model that can accommodate vertical displacement of the weir following the water surface fluctuations. Numerical simulations were performed for two different hydrological conditions, 2001 and 2004 for representing drought year and normal year, respectively. The results showed that the weir is very effective method to control algal blooms in the reservoir by curtailing the transport of phosphorus and algae from contaminated inflow to the downstream lacustrine epilimnion during the draught year. However, large flood events occurred in 2004 transported nutrients and algae built upstream of the weir into the downstream euphotic zone by strong entrainments.