• 제목/요약/키워드: Runoff rate

검색결과 442건 처리시간 0.023초

삼각도형에 의한 단위도의 유도에 관한 연구 (A Study on the Unit Hydrograph Derivation by the Triangular Form)

  • 윤학기;김시원;서승덕
    • 한국농공학회지
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    • 제19권2호
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    • pp.4377-4384
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    • 1977
  • The curvilinear hydrograph can be replaced by an equivalent triangular hydrograph which is more easily constructed and, for routing through reservoirs or stream channels, gives results about as accurate as those obtained using the curvilinear hydrograph. A synthetic hydrograph is prepared using the data from a number of watersheds to develop a dimensionless unit hydrograph applicable to ungauged watersheds. The dimensionless unit hydrograph for the NakDong River Basin was prepared from the unit hydrographs of a variety of nine subwatersheds. The equation for the peak rate of flow (unit volume of runoff in 1.0mm) was derived as {{{{ { q}_{p } = { 0.21AR} over { {T }_{p } } }}}} The results summarized in this study are as follows: 1) It found that the watershed lag time (Lg, hrs) could be expressed by Lg=0.253(L.Lca)0.4171 The product L.Lca is a measure of the size and shape of the watershed. Correlation coefficient for Lg was 0.97 which defined with high significance. 2) The base length of the unitgraph, in hours, was adopted as Tb=17.51+2.073Lg with high significant correlation coefficient, 0.92. 3) Time in hour from start of rise to peak rate (TP) generally occured at the position of 0.289 Tb with some indication of higher values for larger watershed. 4) Triangular hydrograph is a dimensionless unitgraph prepared from the 40 unitgraphs. The equation is shown as {{{{ { q}_{p } = { K.A.R} over { { T}_{p } } }}}}. The constant K=0.21 is defined to NakDong River basin. 5) In the light of the results analyzed in this study, average errors in the peak discharge of the Trjangular unitgraph was estimated as 5.34 percent to the peak of observed average unitgraph. Each ordinate of the Triangular unitgraph was approached closely to the observed one.

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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.

기후변화에 따른 도당천 유역 미래 물순환율 평가 (Assessment of Future Water Circulation Rate in Dodang Watershed under Climate Change)

  • 곽지혜;황순호;전상민;김석현;최순군;강문성
    • 한국농공학회논문집
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    • 제62권4호
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    • pp.99-110
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    • 2020
  • The objective of this study is to analyze the trend of changes in the water circulation rates under climate change by adopting the concept of WCR defined by the Ministry of Environment. With the need for sound water circulation recovery, the MOE proposed the idea of WCR as (1-direct flow/precipitation). The guideline for calculating WCR suggests the SCS method, which is only suitable for short term rainfall events. However, climate change, which affects WCR significantly, is a global phenomenon and happens gradually over a long period. Therefore, long-term trends in WCRs should also be considered when analyzing changes in WCR due to climate change. RCP (Representative Concentration Pathway) 4.5 and 8.5 scenarios were used to simulate future runoff. SWAT (Soil and Water Assessment Tool) was run under the future daily data from GCMs (General Circulation Models) after the calibration. In 2085s, monthly WCR decreased by 4.2-9.9% and 3.3-8.7% in April and October. However, the WCR in the winter increased as the precipitation during the winter decreased compared to the baseline. In the aspect of yearly WCR, the value showed a decrease in most GCMs in the mid-long future. In particular, in the case of the RCP 8.5 scenario, the WCR reduced 2-3 times rapidly than the RCP 4.5 scenario. The WCR of 2055s did not significantly differ from the 2025s, but the value declined by 0.6-2.8% at 2085s.

송야천 유역의 비점오염물질 유출 특성 및 오염기여율 분석 (Analysis of Characteristics of NPS Runoff and Pollution Contribution Rate in Songya-stream Watershed)

  • 강태성;유나영;신민환;임경재;박민지;박배경;김종건
    • 한국물환경학회지
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    • 제39권4호
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    • pp.316-328
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    • 2023
  • In this study, the characteristics of nonpoint pollutant outflow and contribution rate of pollution in Songya-stream mainstream and tributaries were analyzed. Further, water pollution management and improvement measures for pollution-oriented rivers were proposed. An on-site investigation was conducted to determine the inflow of major pollutants into the basin, and it was found that pollutants generated from agricultural land and livestock facilities flowed into the river, resulting in a high concentration of turbid water. Based on the analysis results of the pollution load data calculated through actual measurement monitoring (flow and water quality) and the occurrence and emission load data calculated using the national pollution source survey data, the S3 and S6 were selected as the concerned pollution tributaries in the Songya-stream basin. Results of cluster analysis using Pearson correlation coefficient evaluation and Density based spatial clustering of applications with noise (DBSCAN) technique showed that the S3 and S6 were most consistent with the C2 cluster (a cluster of Songya-stream mainstream owned area) corresponding to the mainstream of Songya-stream. The analysis results of the major pollutants in the concerned pollution tributaries showed that livestock and land pollutants were the major pollutants. Consequently, optimal management techniques such as fertilizer management, water gate management in paddy, vegetated filter strip and livestock manure public treatment were proposed to reduce livestock and land pollutants.

다목적 댐 및 다기능 보 운영을 고려한 대유역 SWAT 모형 구축기법 연구 - 남한강 유역을 대상으로 - (Large Scale SWAT Watershed Modeling Considering Multi-purpose Dams and Multi-function Weirs Operation - For Namhan River Basin -)

  • 안소라;이지완;장선숙;김성준
    • 한국농공학회논문집
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    • 제58권4호
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    • pp.21-35
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    • 2016
  • This study is to evaluate the applicability of SWAT (Soil and Water Assessment Tool) model for multi-purpose dams and multi-function weirs operation in Namhan river basin ($12,577km^2$) of South Korea. The SWAT was calibrated (2005 ~ 2009) and validated (2010 ~ 2014) considering of 4 multi-purpose dams and 3 multi-function weirs using daily observed dam inflow and storage, evapotranspiration, soil moisture, and groundwater level data. Firstly, the dam inflow was calibrated by the five steps; (step 1) the physical rate between total runoff and evapotranspiration was controlled by ESCO, (step 2) the peak runoff was calibrated by CN, OV_N, and CH_N, (step 3) the baseflow was calibrated by GW_DELAY, (step 4) the recession curve of baseflow was calibrated by ALPHA_BF, (step 5) the flux between lateral flow and return flow was controlled by SOL_AWC and SOL_K, and (step 6) the flux between reevaporation and return flow was controlled by REVAPMN and GW_REVAP. Secondly, for the storage water level calibration, the SWAT emergency and principle spillway were applied for water level from design flood level to restricted water level for dam and from maximum to management water level for weir respectively. Finally, the parameters for evapotranspiration (ESCO), soil water (SOL_AWC) and groundwater level fluctuation (GWQMN, ALPHA_BF) were repeatedly adjusted by trial error method. For the dam inflow, the determination coefficient $R^2$ was above 0.80. The average Nash-Sutcliffe efficiency (NSE) was from 0.59 to 0.88 and the RMSE was from 3.3 mm/day to 8.6 mm/day respectively. For the water balance performance, the PBIAS was between 9.4 and 21.4 %. For the dam storage volume, the $R^2$ was above 0.63 and the PBIAS was between 6.3 and 13.5 % respectively. The average $R^2$ for evapotranspiration and soil moisture at CM (Cheongmicheon) site was 0.72 and 0.78, and the average $R^2$ for groundwater level was 0.59 and 0.60 at 2 YP (Yangpyeong) sites.

건축물에 적용된 우수침투시설의 유출저감효과에 관한 실험적 연구 (An Experimental Study of Runoff Reduction Using Infiltration Facility)

  • 박재로;권혁
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제10권5호
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    • pp.37-44
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    • 2005
  • 본 연구의 목적은 운동장, 주차장, 도로측면, 보도, 기타 주거시설 등의 우수 차집시설에 사용되는 콘크리트 구조물 의 침투능 확보를 위한 투수성 차집 구조물 개발에 관한 것이다. 본 연구결과 우수침투시설의 침투방식은 투수콘크리트를 이용한 방법과 투수공을 이용한 방법, 쇄석을 충진한 방법 모두 유사한 침투능을 확보할 수 있는 것으로 나타났으며, 침투시설의 현장설치시 지반의 조건, 지하수위, 주변 건축물의 영향, 과거의 침수이력, 적용 기능한 침투 시설 등에 대하여 종합적인 검토가 필요함을 알 수 있었다. 침투시설의 유출저감효과를 검증하기 위하여 실험 대상 지역내에 현장 설치하였으며, 침투통과 침투트렌치를 연계한 현장적용 결과 강우량 24 mm 일 경우 89%, 12 mm 일 경우 93%, 140 mm 일 경우 51%, 64 mm 열 경우 75%, 54 mm 일 경우 80%의 유출저감효과가 있는 것으로 나타났다. 일정 강우까지는 강우량이 증가할수록 침투량이 증가하였으며, 일정 강우량 도달시 침투량이 급격히 줄어드는 것을 확인하였다. 침투량은 지반조건, 시공조건, 이전 강우간격 등과 밀접한 관계가 있으며, 향후 장기간의 모니터링을 통하여 정량화 하고자 한다.

고랭지 밭 밀집지역 다단계 침사지의 강우-유출 오염물질 제거 효율 - 소양호 상류의 자운지구를 중심으로 - (Pollutants Removal Efficiency of Rainfall-runoff from Dense Highland Field Areas in Multistage Sedimentation Basins - Focused on Jaun Area in Upstream Watershed of Lake Soyang -)

  • 조재현
    • 환경영향평가
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    • 제27권2호
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    • pp.170-180
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    • 2018
  • 홍천군 내면 자운지구에는 고랭지 채소밭이 밀집되어 있어서 우기에는 고랭지 밭에서 많은 토사가 유출되어 소양호 탁도와 수질에 큰 영향을 미치고, 하류의 수도권 상수원에도 악영향을 준다. 본 연구에서는 고랭지밭 지역의 토사유출 저감을 위한 여러 BMPs 시설 중에서 많은 비용이 들지만 우리나라에서의 실측 조사 결과가 거의 없는 다단계 침사지에 대해서 강우시 유출입수를 실측 조사하고, 비점원오염물질 삭감효율을 분석하였다. 자운지구의 자운리 786번지와 자운리 628-2번지 다단계 침사지에서 2차례 강우에 대해서 침사지의 SS 제거효율을 분석한 결과 35%~62%의 삭감율을 보였다. BOD는 약 24%~55%, TP는 약 35%~58%의 오염부하가 삭감되었다. 이 지역 다단계 침사지의 실측 효율은 이론적인 효율보다 다소 낮지만 현재 설치되어 있는 침사지를 적절하게 관리하면 효율을 더 높일 수 있고, 추가적인 침사지 설치를 통해 흙탕물 관리를 효과적으로 할 수 있다.

격자기반의 토양물수지방법에 의한 지하수함양의 공간분포 추정 (Estimation of the Spatial Distribution of Groundwater Recharge by Grid-based Soil Water Balance Method)

  • 안중기;이용두;황종환
    • 한국지하수토양환경학회지:지하수토양환경
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    • 제11권1호
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    • pp.65-76
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    • 2006
  • 본 논문은 지하수함양의 공간분포를 분석할 수 있는 격자기반의 토양물수지방법을 제시하고, 제주도의 외도천유역에 적용하였다. 유역을 격자로 분할하고, 각 격자의 5년 동안의 물수지를 일단위로 계산하였으며, 격자의 일별 강수량은 10개 지점의 강수량자료로 보간법에 의해 산정하였다. SCS유출곡선지수, 토양수분보유능, 작물계수 등 매개변수의 분포는 토양과 토지이용특성에 대한 GIS분석으로 부터 구하였다. 유출곡선지수는 하천유출량 관측자료로 보정하였다. 사례유역에 대한 분석결과 강수량은 표고가 증가함에 따라 1,665 mm/년부터 3,382 mm/년까지 증가하며 지하수함양량은 강수량이 증가함에 따라 372 mm/년부터 2,576 mm/년까지 증가한다. 강수량이 상대적으로 적은 지역에서 유출율과 증발산율이 다른 지역보다 더 크기 때문에 지하수함양이 강수, 직접유출, 증발산, 지하수함양과 같은 물수지 성분 중에서 공간적인 변이가 가장 큰 것으로 나타나고 있다.

섬유필터를 사용한 강우유출수의 부유물질 제거 방법의 개발 (Removal of Suspended Solids from Stormwater Runoff Using a Fabric Filter System)

  • 구영민;김재영;김병로;서동일
    • 대한환경공학회지
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    • 제37권3호
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    • pp.165-174
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    • 2015
  • 강우시 표면유출에 의해 지표수에 유입되는 우수에는 토사를 포함한 각종 비점오염 물질이 다량 포함되어 있으며 이는 지표수의 수질관리에 부정적인 영향을 미치고 있다. 유역의 오염물질이 수계에 도달하기 전에 처리하는 것이 바람직하며 따라서 강우유출수를 처리하는 다양한 방법들이 시도되고 있다. 그러나 일반적인 빗물오염 제어시설 및 장치들은 설치 및 유지관리를 위해 많은 노력과 비용을 요구하는 문제점 가지고 있다. 본 연구에서는 유역의 초기우수에 의한 오염을 제어하기 위해 경제적으로 타당하고 설치 및 관리가 용이한 섬유 필터를 이용하여 부유물질을 제거할 수 있는 방법을 개발하였다. 여재는 경제적이면서 내구성이 우수한 폴리에스터계열의 섬유 필터를 사용하였으며, 연구 대상지역 강우유출수의 입도분석 결과에 따라 $20{\mu}m{\sim}94{\mu}m$ 범위에서 다양한 공극의 여재에 대한 성능을 실험을 통해 분석하였다. 수두별 여과성능을 분석하기 위한 실험 장치를 고안 제작하여 필터 공극에 따른 섬유 필터의 TSS 제거 효율을 평가 하였다. 수두가 높을수록 여과속도가 증가하는 것을 확인하였으며 공극별 여과 속도를 측정하여 분석하였다. 섬유 필터의 공극 크기가 작을수록 TSS 제거효율이 증가되었으나, 공극별 TSS 제거 효율은 대체적으로 양호하나 유사한 편으로서 TSS의 대부분의 질량은 입자의 크기가 큰 부분에 치중되어 있는 것이 주요 원인으로 분석된다.

다양한 첨단 유량 계측기기를 활용한 제주도 하천 유출 비교 분석 (Analysis and Comparison of Stream Discharge Measurements in Jeju Island Using Various Recent Monitoring Techniques)

  • 양성기;김동수;정우열;류권규
    • 한국환경과학회지
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    • 제20권6호
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    • pp.783-788
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    • 2011
  • Different from the main land of South Korea, Jeju Island has been in difficulties for measuring discharge. Due to high infiltration rate, most of streams in Jeju Island are usually in the dried state except six streams with the steady base flow, and the unique geological characteristics such as steep slope and short traveling distance of runoff have forced rainfall runoff usually to occur during very short period of time like one or two days. While discharge observations in Jeju Island have been conducted only for 16 sites with fixed electromagnetic surface velocimetry, effective analysis and validation of observed discharge data and operation of the monitoring sites still have been limited due to very few professions to maintain such jobs. This research is sponsored by Ministry of Land, Transport and Maritime Affairs to build water cycle monitoring and management system of Jeju Island. Specifically, the research focuses on optimizing discharge measurement techniques adjusted for Jeju Island, expanding the monitoring sites, and validating the existing discharge data. First of all, we attempted to conduct discharge measurements in streams with steady base flow, by utilizing various recent discharge monitoring techniques, such as ADCP, LSPIV, Magnetic Velocimetry, and Electromagnetic Wave Surface Velocimetry. ADCP has been known to be the most accurate in terms of discharge measurement compared with other techniques, thus that the discharge measurement taken by ADCP could be used as a benchmark data for validation of others. However, there are still concerns of using ADCP in flood seasons; thereby LSPIV would be able to be applied for replacing ADCP in such flooded situation in the stream. In addition, sort of practical approaches such as Magnetic Velocimetry, and Electromagnetic Wave Surface Velocimetry would also be validated, which usually measure velocity in the designated parts of stream and assume the measured velocity to be representative for whole cross-section or profile at any specified location. The result of the comparison and analysis will be used for correcting existing discharge measurement by Electromagnetic Wave Surface Velocimetry and finding the most optimized discharge techniques in the future.