• 제목/요약/키워드: catchment

검색결과 703건 처리시간 0.026초

도시소유역의 유출해석을 위한 수문모형의 개발과 응용 - Development and Applications of Hydrologic Model of Strom Sewer runoff at Small Urban Area

  • 이영대;박승우
    • 물과 미래
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    • 제23권3호
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    • pp.329-340
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    • 1990
  • 도시화한 소유역에서 배수조직의 물리적 특성 변화에 의한 유출현상과 침수상황을 정성적으로 평가할 수 있는 도시유역에서의 유출해석모형(URAM)을 개발하여 시험유역에서의 실측치와 본 모형을 이용한 모의발생치를 비교하여 모형을 검증한 후 실유역에 적용하여 응용성을 평가하였다. URAM을 이용 시험유역의 유출현상을 모의발생한 결과 실측치와 잘 일치함을 보여 주었으며, 또한 상습침수지역에 대하여 침수현상을 모의발생시킨 결과 계산된 침수특성은 실제 현황과 정성적으로 잘 일치하여 본 모형은 도시소유역 유출해석에 이용가치가 높은 것으로 판단되었다.

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Modeling the Relationship between Land Cover and River Water Quality in the Yamaguchi Prefecture of Japan

  • Amiri, Bahman Jabbarian;Nakane, Kaneyuki
    • Journal of Ecology and Environment
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    • 제29권4호
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    • pp.343-352
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    • 2006
  • This study investigated the relationship between land cover and the water quality variables in the rivers, which are located in the Yamaguchi prefecture of West Japan. The study area included 12 catchments covering $5,809\;Km^2$. pH, dissolved oxygen, suspended solid, E. coli, total nitrogen and total phosphorus were considered as river water quality variables. Satellite data was applied to generate land cover map. For linking alterations in land cover (at whole catchment and buffer zone levels) and the river water quality variables, multiple regression modeling was applied. The results indicated that non-spatial attribute (%) of land cover types (at whole catchment level) consistently explained high amounts of variation in biological oxygen demand (72%), suspended solid (72%) and total nitrogen (87%). At buffer zone-scale, multiple regression models that were developed to represent the linkage between the alterations of land cover and the river water quality variables could also explain high level of total variations in suspended solid (86%) and total nitrogen (91%).

A Study on the Hydrologic Design of Detention Storage Ponds in Urbanized Area

  • Lee, Jung-Sik;Lee, Jae-Joon;Kim, Kyu-Ho
    • Korean Journal of Hydrosciences
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    • 제7권
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    • pp.21-35
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    • 1996
  • This Study is to develop the suitable hydrologic models for determination of the size and location of detention storage facilities to restrain stormwater runoff in urban areas. Hypothetical areas of two levels are considered to seize the hydrologic response characteristics. A one-square-kilometer ares is selected for the catchment level, and a 10-square-kilometer area consisting of 10 catchments is adapted at the watershed level as representative of urban drainage area. In this analysis, different rainfall freqyencies, land uses, drainage patte군, basin shates and detention storage policies are considered. Folw reduction effect of detention storage facilities is deduced from storage ratio and detention basin factor. A substantial saving in detention storage volumes is achieved 노두 the detention storage is planned at the watershed level rather than the catchment level. For the application of real watersheds, two watersheds in Seoul metropolitan area-Jamshil 2 and Seongnae 1-are selected on the basis of hydrologic response charactaristics. Through the regression analysis between dimensionless deterntion storage volume, dimensionless upstream area ratio and reduction rate of storage ratio, the regression equations to determine the size and location of detention storage faclities are presented.

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이동강우에 의한 유출영향분석 (Runoff Analysis due to the Moving Storm)

  • 한건연;전민우;최규현
    • 한국수자원학회논문집
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    • 제37권10호
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    • pp.823-836
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    • 2004
  • 두개의 지표면과 그 사이에 있는 하도로 이루어진 유역을 가정하여 이동강우에 대한 유출을 운동파 이론을 적용하므로서 해석하여 다양한 강우이동속도의 경우를 비교 분석하였다. 이동강우는 하천의 상류방향, 하류방향, 횡방향으로 0.25∼2.0m/s의 속도로 이동시켰으며, 이때 강우분포형은 균등분포형, 전진형, 지연형, 중앙집중형을 적용하였다. 횡방향 이동강우의 경우에 첨두유량이 가장 크게 나타났고, 상류방향의 이동강우에 대한 첨두유량이 가장 작게 나타났다. 강우분포형에 대한 유출의 민감도는 강우이동속도가 빠를수록 감소하였다. 강우이동속도가 빠를수록 첨두시간이 빨라지며, 수문곡선은 급격히 얇아짐을 알 수 있다.

Streamflow sensitivity to land cover changes: Akaki River, Ethiopia

  • Mitiku, Dereje Birhanu;Kim, Hyeon Jun;Jang, Cheol Hee;Park, Sanghyun;Choi, Shin Woo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2016년도 학술발표회
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    • pp.49-49
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    • 2016
  • The impact of land cover changes on streamflow of the Akaki catchment will be assessed using Soil and Water Assessment Tool (SWAT) model. The study will analyze the historical land cover changes (1993 to 2016) that have taken place in the catchment and its effect on the streamflow of the study area. Arc GIS will be used to analysis the satellite images obtained from the United States Geological Survey (USGS). To investigate the impact of land cover change on streamflow the model set up will be done using readily available spatial and temporal data, and calibrated against measured discharge. Two third of the data will be used for model calibration (1993?2000) and the remaining one-third for model validation (2001?2004). Model performance will be evaluated by using Nash and Sutcliff efficiency (NS) and coefficient of determination (R2). The calibrated model will be used to assess two land cover change (2002 and 2016) scenarios and its likely impacts of land use changes on the runoff will be quantified. The evaluation of the model response to these changes on streamflow will be presented properly. The study will contribute a lot to understand land use and land cover change on streamflow. This enhances the ability of stakeholder to implement sound policies to minimize undesirable future impacts and management alternatives which have a significant role in future flood control of the study area.

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용담댐 유역에서 식생 이질성이 FLO-2D 유량 산정에 미치는 영향 (Impact of Vegetation Heterogeneity on Rainfall Excess in FLO-2D Model : Yongdam Catchment)

  • 송호준;이길하
    • 한국환경과학회지
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    • 제28권2호
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    • pp.259-266
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    • 2019
  • Two main sources of data, meteorological data and land surface characteristics, are essential to effectively run a distributed rainfall-runoff model. The specification and averaging of the land surface characteristics in a suitable way is crucial to obtaining accurate runoff output. Recent advances in remote sensing techniques are often being used to derive better representations of these land surface characteristics. Due to the mismatch in scale between digital land cover maps and numerical grid sizes, issues related to upscaling or downscaling occur regularly. A specific method is typically selected to average and represent the land surface characteristics. This paper examines the amount of flooding by applying the FLO-2D routing model, where vegetation heterogeneity is manipulated using the Manning's roughness coefficient. Three different upscaling methods, arithmetic, dominant, and aggregation, were tested. To investigate further, the rainfall-runoff model with FLO-2D was facilitated in Yongdam catchment and heavy rainfall events during wet season were selected. The results show aggregation method provides better results, in terms of the amount of peak flow and the relative time taken to achieve it. These rwsults suggest that the aggregation method, which is a reasonably realistic description of area-averaged vegetation nature and characteristics, is more likely to occur in reality.

지표면의 시공간적 변화를 고려한 비점오염원 저감 저류지 최적용량산정 (Optimal Volume Estimation for Non-point Source Control Retention Considering Spatio-Temporal Variation of Land Surface)

  • 최대규;김진관;이재관;김상단
    • 한국물환경학회지
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    • 제27권1호
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    • pp.9-18
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    • 2011
  • In this study the optimal volume for non-point source control retention is estimated considering spatio-temporal variation of land surface. The 3-parameter mixed exponential probability density function is used to represent the statistical properties of rainfall events, and NRCS-CN method is applied as rainfall-runoff transformation. The catchment drainage area is divided into individual $30m{\times}30m$ cells, and runoff curve number is estimated at each cell. Using the derived probability density function theory, the stormwater probability density function at each cell is derived from the rainfall probability density function and NRCS-CN rainfall-runoff transformation. Considering the antecedent soil moisture condition at each cell and the spatial variation of CN value at the whole catchment drainage area, the ensemble stormwater capture curve is established to estimate the optimal volume for an non-point source control retention. The comparison between spatio-temporally varied land surface and constant land surface is presented as a case study for a urban drainage area.

A Study on Competition Analysis in Retail Distribution Industry Using GIS in Seoul

  • YOO, Byong-Kook;KIM, Soon-Hong
    • 유통과학연구
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    • 제19권3호
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    • pp.49-60
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    • 2021
  • Purpose: This study aims to utilize geographic data to analyze how various retail formats of large-scale stores around the traditional market affect the performance of the traditional market in Seoul, Korea. Research design, data, and methodology: The two types of catchment areas were demarcated (circle of 1km radius and Thiessen polygon) for each traditional market, and the large-scale stores located within each catchment area were identified for 153 traditional markets in Seoul, Korea. Additionally, multiple regression analysis was utilized. Results: The results revealed that the influence on the performance of the traditional markets were different depending on the retail format of the large-scale stores. Large discount stores were found to have a negative effect on the sales and the visitors of traditional markets, whereas complex shopping malls and department stores had a positive effect on the traditional markets. Conclusions: As a result of the differences in the retail format such as product categories and leisure functions, the impact of some large-scale stores on the traditional market may have a greater agglomeration effect than the consumer churn effect. Therefore, it is suggested that in the regulation of these large-scale stores, the differences in retail format should be considered for the future.

Radar Quantitative Precipitation Estimation using Long Short-Term Memory Networks

  • Thi, Linh Dinh;Yoon, Seong-Sim;Bae, Deg-Hyo
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2020년도 학술발표회
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    • pp.183-183
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    • 2020
  • Accurate quantitative precipitation estimation plays an important role in hydrological modelling and prediction. Instantaneous quantitative precipitation estimation (QPE) by utilizing the weather radar data is a great applicability for operational hydrology in a catchment. Previously, regression technique performed between reflectivity (Z) and rain intensity (R) is used commonly to obtain radar QPEs. A novel, recent approaching method which might be applied in hydrological area for QPE is Long Short-Term Memory (LSTM) Networks. LSTM networks is a development and evolution of Recurrent Neuron Networks (RNNs) method that overcomes the limited memory capacity of RNNs and allows learning of long-term input-output dependencies. The advantages of LSTM compare to RNN technique is proven by previous works. In this study, LSTM networks is used to estimate the quantitative precipitation from weather radar for an urban catchment in South Korea. Radar information and rain-gauge data are used to evaluate and verify the estimation. The estimation results figure out that LSTM approaching method shows the accuracy and outperformance compared to Z-R relationship method. This study gives us the high potential of LSTM and its applications in urban hydrology.

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기상청 동네예보의 영농활용도 증진을 위한 방안: V. 하늘상태 기반 기온감률 추정기법의 실용성 평가 (Improving the Usage of the Korea Meteorological Administration's Digital Forecasts in Agriculture: V. Field Validation of the Sky-condition based Lapse Rate Estimation Scheme)

  • 김수옥;윤진일
    • 한국농림기상학회지
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    • 제18권3호
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    • pp.135-142
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    • 2016
  • 운량 기반 기온감률 추정모형을 이용하여 0600과 1500의 기온감률을 모의하고, 최저 및 최고기온 추정과정에 활용되었던 기존의 단일 기온감률($-6.5^{\circ}C/km$, $-9^{\circ}C/km$)에 비해 추정 기온감률이 0600, 1500 기온의 추정오차를 개선할 수 있는지 확인하였다. 경남 하동과 전남 구례, 광양 지역의 '하동 2 수위표' 집수역을 기온감률 추정기법의 실용성 평가 지역으로 선정하고, 이 집수역 내 기상관측지점 12곳의 0600, 1500 기온자료를 2015년 한 해에 대해 수집하였다. 또한 2015년의 기상청 하늘상태 초단기예보 5km 격자자료를 이용, 대상 집수역의 0600, 1500 운량(0~10) 공간평균값을 계산하여 기온감률을 추정하였다. 검증지점의 0600 기온 추정오차는 기존 기온감률을 적용한 경우 평균 ME $-0.39^{\circ}C$, RMSE $1.45^{\circ}C$ 였으나, 새로운 기온감률로 변경한 결과 ME $-0.19^{\circ}C$, RMSE $1.32^{\circ}C$로 개선되었으며, 맑은 날은 ME $-0.8^{\circ}C$에서 $-0.57^{\circ}C$로, RMSE는 $1.72^{\circ}C$에서 $1.42^{\circ}C$로 감소되었고 흐린 날은 ME $-0.17^{\circ}C$에서 $-0.06^{\circ}C$, RMSE $1.16^{\circ}C$에서 $1.01^{\circ}C$로 줄어들었다. 또한 1500 기온에서 기존의 단일 기온감률과 추정 기온감률의 적용결과를 비교하면 맑은 날은 기온 추정오차에 거의 차이가 없었지만, 흐린 날은 기존 ME $-0.69^{\circ}C$, RMSE $1.54^{\circ}C$에서 ME $-0.51^{\circ}C$, RMSE $1.19^{\circ}C$로 개선되었다.