• 제목/요약/키워드: runoff-water

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CN 분포를 고려한 총 유출량 산정기법 (Runoff Volume Estimation Technique with Consideration of CN Distribution)

  • 윤라영;손광익;신승철;노진욱;심재호
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2007년도 학술발표회 논문집
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    • pp.1880-1884
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    • 2007
  • The Natural Resource Conservation Service Curve Number(NRCS-CN) method is one of the widely used methods for computation of runoff from a basin. However, NRCS-CN method has weak point in that the spatial land use distribution characteristics are ignored by using area weighted CN value. This study developed a program which can estimate runoff by considering spatial distribution of CN and flow accumulation at the outlet of the watershed by appling Moglen's method. Comparisons between the results from NRCS-CN method and this study showed good agreement with measured data of experimental watersheds. The developed program predicted lower runoff than the conventional NRCS-CN method. As a conclusion, this study proposes a new design direction which can simulate real runoff phenomena. And the developed program could be applied into runoff minimization design for a basin development.

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수자원의 이용계획을 위한 장기유출모형의 개발에 관한 연구 (A Study on Development of Long-Term Runoff Model for Water Resources Planning and Management)

  • 조현경
    • 한국산업융합학회 논문집
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    • 제16권3호
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    • pp.61-68
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    • 2013
  • Long-term runoff model can be used to establish the effective plan of water reources allocation and the determination of the storage capacity of reservoir. So this study aims at the development of monthly runoff model using artificial neural network technique. For this, it was selected multi-layer neural network(MLN) and radial basis function neural network(RFN) model. In this study, it was applied model to analysis monthly runoff process at the Wi stream basin in Nakdong river which is representative experimental river basin of IHP. For this, multi-layer neural network model tried to construct input 3, hidden 7, and output 1 for each number of layer. As the result of analysis of monthly runoff process using models connected with artificial neural network technique, it showed that these models were effective in the simulation of monthly runoff.

계절유역 모형을 사용한 유량의 공간적분포 결정 (Areal Distribution of Runoff Volume by Seasonal Watershed Model)

  • 선우중
    • 물과 미래
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    • 제17권2호
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    • pp.125-131
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    • 1984
  • watershed Model by mathematical formulation is one of the powerful tool to analyze the hydrologic process in a watershed. The seasonal watershed model is one of the mathematial model from which the monthly streamflow can be simulated and forcasted for given precipitaion data. This model also enables us to compute the monthly runoff at each subbgasin when the basin is subdivided into several small subbasins. The computation of runoff volume makes a Prediction of the areal distirbution of runoff volume for a given precipitation data. Several basins in Han River basin were chosen to simulate the monthly runoff and compute the runoff at each subbasin. A simple logarithmic regression were conducted between runoff ratio and area ratio. The correlation was very high and the equation can be used for prediciting flood volume when flood at downstream gaging station is know.

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오염저감 기법개발을 위한 유출수내 고형물질 특성 규명 (Analysis of Solids in Runoff to Prevent Solids Pollution)

  • 이영수
    • 상하수도학회지
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    • 제18권1호
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    • pp.22-28
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    • 2004
  • The fate and transport mechanism of pollutants which have affinities to particles, such as trace metals and some petroleum product based compounds, can be effectively explained by the movement of sediment. The sediment release from lands to adjacent water bodies due to rainfall events was investigated in an effort to predict the total suspended solids (TSS) concentrations in runoff. The contribution of sediment from land origin to the river TSS can be better understood by the relationship between TSS concentration and particle size in runoff. The sieve analysis was used to determine the particle size distribution and these results were incorporated into statistical models. The critical size of particles was set to $74{\mu}m$ which contributes to the river TSS concentration since fine particles (wash load) of the sediment in the runoff play the key role in constituting TSS in a water column of the river. Empirical relationships were developed to predict TSS in runoff from the percentage of the critical particle size and were proven statistically to be valid.

분포형 수문모형을 이용한 유역기반의 PMF 및 유사-유출량 산정 (Watershed-based PMF and Sediment-runoff Estimation Using Distributed Hydrological Model)

  • 유완식;이기하;김영규;정관수
    • 한국농공학회논문집
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    • 제60권2호
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    • pp.1-11
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    • 2018
  • Probable Maximum Flood (PMF) is mostly applied for the designs of large-scale hydraulic structures and it is estimated by computing the runoff hydrograph where Probable Maximum Precipitation (PMP) is inserted as design rainfall. The existing PMP is estimated by transferring the heavy rainfall from all watersheds of korea to the design watershed, however, in this study, PMP was analyzed by selecting only rainfall events occurred in the design watershed. And then, Catchment-scale Soil Erosion Model (CSEM) was used to estimate the PMF and sediment-runoff yield according to the watershed-based estimated PMP. Although the PMF estimated in this study was lower than the existing estimated PMF in the Yongdam-dam basin, it was estimated to be higher than the 200-year frequency design flood discharge. In addition, sediment-runoff yield was estimated with a 0.05 cm of the maximum erosion and a 0.06 cm of the maximum deposition, and a total sediment-runoff yield of 168,391 tons according to 24-hour PMP duration.

End-Member Mixing Analysis를 이용한 산림 소유역의 임상별 유출분리 비교 (Comparing of Hydrograph Separation in deciduous and coniferous catchments using the End-Member Mixing Analysis)

  • 김수진;최형태
    • 한국지형학회지
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    • 제23권1호
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    • pp.77-85
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    • 2016
  • To understand the difference of runoff discharge processes between Gwangneung deciduous and coniferous forest catchments, we collected hydrological data (e.g., precipitation, soil moisture, runoff discharge) and conducted hydrochemical analyses in the deciduous and coniferous forest catchments in Gwangneung National Arboretum in the northwest part of South Korea. Based on the end-member mixing analysis of the three storm events during the summer monsoon in 2005, the hillslope runoff in the deciduous forest catchment was higher 20% than the coniferousforest catchment during the firststorm event. Howerver, hillslope runoff increased from the second storm event in the coniferous catchment. We conclude that low soil water contents and topographical gradient characteristics highly influence runoff in the coniferous forest catchment during the first storm events. In general, coniferous forests are shown high interception loss and low soil moisture compared to the deciduous forests. It may also be more likely to be a reduction in soil porosity development when artificial coniferous forests reduced soil biodiversity. The forest soil porosity is an important indicator to determine the water recharge of the forest. Therefore, in order to secure the water resources, it should be managed coniferous forests for improving soil biodiversity and porosity.

농업유역에서의 유출 오염부하량 조사 (Runoff Pollutant Load of Agricultural Watershed)

  • 손재권;최진규
    • 농촌계획
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    • 제9권1호
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    • pp.77-83
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    • 2003
  • This study was carried out to provide the basic information for the water quality management of the Sumjin River Basin. The Chooryeongchon stream watershed was selected and the parameters representing water quality were investigated from May 1999 to September 2002, periodically. Yearly mean runoff ratio to the rainfall amount of the watershed was analysed as $26.6{\sim}58.8%$. Temporal variation of water quality constituents such as water temperature, pH, EC, total nitrogen, total phosphorus were analysed. The result showed that pH ranged $5.7{\sim}7.7$, EC $54{\sim}167\;{\mu}S/cm$, COD $0.8{\sim}18.1\;mg/L$, respectively. Total-N and total-P concentration ranged from 0.89 to 5.19 mg/L and from 0.0004 to 0.030 mg/L, respectively. The relationships between runoff and mass load were derived and showed high linear relationships.

강우유출수 영향에 따른 시화호 소유역별 유입하천의 오염물질 초기유출현상 분석 (An Analysis of First Flush Phenomenon of 3 Catchment area in Lake Sihwa Watershed during Rainfall-Runoff Events)

  • 김세원;오종민
    • 한국물환경학회지
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    • 제27권4호
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    • pp.475-485
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    • 2011
  • Lake Sihwa has a very unique watershed environment, surrounded by industrial, urban and rural catchment area with different land use. The first flush phenomenon was investigated in 3 catchment area. 4TG, representing the industrial area, shows rapid discharges of highly concentrated pollutants during the early stages of a storm and it is indicating a strong first flush effect. At AS, representing the urban area, the pollutant concentration reached its peak approximately 2~3 hours after the start of storm, which is a strong first flush effect did not appear. JJB and MS represent the rural areas, the PEMC analysis results suggest that highly concentrated pollutants were discharged during the middle and latter stages of a storm, instead of early pollutant runoff due to the effects of rainwater runoff.

수위 변화에 따른 비점오염의 상수원 수질 영향 분석 (Impact of Non-point Source Runoff on Water Resource Quality according to Water-Level Changes)

  • 최미진;이상현
    • 한국환경과학회지
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    • 제24권8호
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    • pp.1045-1053
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    • 2015
  • This study evaluated the effect of water level of water resources on water quality in Ulsan. Two reservoirs, Sayeon Dam and Hoeya Dam, were selected and water quality of chemical oxygen demand (COD), total nitrogen (TN) and total phosphorus (TP) were analyzed from 2012 to 2014. And the characteristics of precipitation were also analyzed for 70 years (1945~2014) because runoff of non-point pollutant was strongly affected by precipitation. As a result, water deterioration of Sayeon Dam and Hoeya Dam were affected in accordance with lowering water level. For example, the concentrations of COD and TN was negatively correlated with the water level when the water level of Sayeon Dam was gradually decreased in 2013. The TN concentration was increased to 1.432 mg/L from 0.875 mg/L while the lowest water level of Sayeon Dam was recorded 45 m in 2014. Additionally the concentration of COD and TN was sensitively increased with 0.213 mg/L/m and 0.058 mg/L/m on account of non-point pollutant runoff. It is indicated that hereafter a control of non-point pollutant runoff is the critical factors to maintain water resources because the contribution of non-point pollutant is expected to increase due to the frequent heavy rain events. Therefore, it is necessary to map out a specific plan for non-point pollutant control based on analyses of runoff characteristics, water pollution sources and reduction plans in water pollutants and to establish a water modelling and database system as a preventive action plan.

댐 하류 지점에 대한 분포형 모형의 적용성 평가 (Evaluation of the Applicability of a Distributed Model at the Downstream of Dam)

  • 최윤석;김경탁;심명필
    • 한국수자원학회논문집
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    • 제42권9호
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    • pp.703-713
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    • 2009
  • 유역에서의 댐은 이수와 치수 측면에서 매우 큰 역할을 담당하고 있으며, 특히 집중호우 기간 동안의 댐 방류는 강우에 의해서 발생되는 유출과 더불어 댐 하류의 홍수조절에 직접적인 영향을 미치고 있다. 본 연구에서는 댐 방류와 강우에 의한 유출의 영향을 동시에 받는 댐 하류 지점에 대한 유출모의를 위해서 HyGIS (Hydro Geographic Information System) 환경에서 운영되는 분포형 강우-유출 모형인 GRM (Grid based Rainfall-runoff Model)을 적용하고 이에 대한 적용성을 평가하고자 한다. 대상 유역은 한강 수계의 여주 수위관측소 상류로 선정하였으며, 충주 조정지댐과 횡성댐의 방류량 및 강우의 영향을 반영하여 유출모의를 수행하고, 이를 여주 수위관측소에 대해서 검증 하였다. 모형의 적용결과 모의된 유출 수문곡선은 관측 수문곡선을 잘 재현하였으며, 이를 통해서 GRM 모형은 댐방류와 강우가 유역유출에 미치는 영향을 적절히 모의할 수 있는 것으로 나타났다.