• 제목/요약/키워드: Rainfall-runoff characteristics

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SWMM을 이용한 조만강 유역 강우-오염물 유출모델링시스템 구축 (Establishment of Rainfall and Contaminants Runoff Modeling System for the Joman River Watershed Using SWMM)

  • 이용진;윤영삼;이남주
    • 한국환경과학회지
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    • 제18권9호
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    • pp.983-992
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    • 2009
  • The purpose of the present study is to analyze pollutant runoff characteristics from non-point sources in Joman River basin. The present study contains analyzed results of rainfall and SS, BOD, COD, TN, TP runoff from Joman River basin. This study contains a sensitivity analysis of parameters that affect the simulation results of rainfall and pollutants runoff. Result of the sensitivity analysis shows that proportion of watershed and impervious areas is the most sensitive to peak discharge and total flowrate for rainfall runoff and that WASHPO is the most sensitive parameter for pollutants runoff. For parameter estimation and verification, flowrate and water quality is measured at the Kangdong Bridge in Haeban stream. A single rainfall event is use to perform parameter estimation and verification. Results of the present study show that total pollutant loads of Joman River basin is 11,600 ton of SS, 452 ton of BOD, 1,084 ton of COD, 515 ton of TN, and 49 ton of TP, respectively. In addition, it is found that contribution ratio of non point source and total source is 89% of SS, 63% of BOD, 61% of COD, 21% of TN, and 32% of TP, respectively.

도시유출 모형을 이용한 도시화 유역의 유출 해석 (Urban Watershed Runoff Analysis Using Urban Runoff Models)

  • 정동국;이범희
    • 한국수자원학회논문집
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    • 제36권1호
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    • pp.75-85
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    • 2003
  • 시가지의 확장과 개발 등으로 인한 도시에서의 강우-유출현상은 자연하천유역에 비하여 더욱 복잡한 양상을 가지며, 실제 유역의 변화로 인하여 모형의 적용이 매우 어려운 편이다. 본 연구에서는 SW 모형과 전문가 시스템을 적용하여 도시화 유역에서의 유출 특성을 파악하였다. 연구 유역으로는 대전광역시에서 노은지역을 선정하였으며, 실제 유역 및 시설자료, 강우, 유출자료와 다양한 강우강도식을 사용하였다. 매개변수의 추정 과정을 위하여 전문가시스템을 사용하였으며, 본 결과들을 통하여 설계 강우의 시간 분포 및 도시화에 따른 도시 유역의 반응 경향을 해석할 수 있었다.

도시지역 비점오염물질의 유출특성에 관한 연구 - 달서천 및 대명천을 중심으로 (A Study on the Runoff Characteristics of Non-point Source in Urban Watershed - Case Study on the Dalseo and Daemyung Watershed)

  • 장성호;박진식
    • 한국환경과학회지
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    • 제14권12호
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    • pp.1171-1176
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    • 2005
  • This study was conducted to identify the runoff characteristics of non-point source according to rainfall in Dalseo and Daemyung watershed. Land-uses of the Dalseo and Daemyung watershed were surveyed to urban $72.1\%$ and mountainous $6.7\%$, and urban $49.3\%$ and mountainous $20.5\%$, respectively Mean runoff coefficients in each area were estimated to Dalseo watershed 0.49 and Daemyung watershed 0.16. In the relationship between the rainfall and peak-flow correlation coefficients(r) were determined to Dalseo watershed 0.9060 and Daemyung watershed 0.5620. In the relationship between the antecedent dry period and flrst flow runoff correlation coefficients(r) were determined to Dalseo watershed 0.7217 and Daemyung watershed 0.2464. In the relationship between the rainfall and watershed loading, exponent values of SS in Dalseo and Daemyung watershed were estimated to 0.54 and 0.496, respectively.

수원시 비점오염물질의 유출 특성 (Runoff Characteristics of Non-point Pollutants Source in Suwon City)

  • 지홍진;이상은;이재동
    • 한국환경과학회지
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    • 제22권4호
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    • pp.493-505
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    • 2013
  • This study was to investigate the runoff characteristics of non-point pollutants source at the urban area in Suwon city. The highest T-N and T-P concentration of rainfall runoff observed in agricultural area. In residential area, the highest $BOD_5$ and SS concentration of rainfall runoff was investigated. During rainfall events, the peak concentrations of SS and $BOD_5$ were observed after 1~2 hours of rainfall in urban area. Whereas, the peak concentrations occurred within 1~2 hours after rainfall and then the highest concentrations of SS and $BOD_5$ sharply decreased, showing strong first flush effect in urban area. The EMC results indicated that the highest value of T-N and T-P in agricultural area was observed. While residential area was shown the lowest EMC value as T-N and T-P. Non-point pollutant loads on the land use types in urban area were investigated in the order of residential>industrial>agricultural>highway. $BOD_5$ and SS loads on urban watershed were investigated in the order of Suwon>Hwangguji>Seoho>Wonchunri. Whereas, T-N and T-P loads on urban watershed were investigated in the order of Hwangguji>Suwon>Wonchunri>Seho.

유역특성 변화에 따른 도시유출모형의 매개변수 민감도분석(I) -민감도분석방법의 개발- (The Sensitivity Analysis of Parameters of Urban Runoff Models due to Variations of Basin Characteristics (I) - Development of Sensitivity Analysis Method -)

  • 서규우;조원철
    • 한국수자원학회논문집
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    • 제31권3호
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    • pp.243-252
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    • 1998
  • 본 연구에서는 새로운 무차원값을 제시하여 도시유출모형의 매개변수결정을 위한 상대적인 민감도분석을 실시하여 매개변수별 민감도특성을 구명하였다. 민감도분석을 위한 무차원값으로 총유출량비,첨두유출량비, 유출민감도비, 민감도비율을 다음과 같이 개발하였다. $$ 유역면적의 크기와 강우분포형과 강우지속기간별로 각 적용단계별 총유출량비, 첨두유출량비, 유출민감도를 산정하기 위해 ILLUDAS모형과 SWMM모형의 매개변수를 선저하고 적정 적용범위를 결정하였다.

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유역특성을 고려한 적정 강우-유출모형의 제시에 관한 연구 (A Study on Proposal of Appropriate Rainfall-Runoff Model With Watershed Characteristics)

  • 최한규;백경원;최용묵
    • 산업기술연구
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    • 제19권
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    • pp.379-390
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    • 1999
  • The purpose of this study is to investigate the applicability of Nakayasu & SCS method and Clark method to the computation of runoff from the river basin in Soyang watershed. As the result, each runoff was conducted to compare and analyze existing established peak flow model, and to propose a pertinent model.

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도암호 유역에서 비점오염물질의 유출부하 특성 (Characteristics of Runoff Load from Nonpoint Source Pollutants in the Lake Doam Watershed)

  • 곽성진;발데브;김기영;강필구;허우명
    • 생태와환경
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    • 제51권1호
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    • pp.135-147
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    • 2018
  • In order to investigate the runoff characteristics of nonpoint source pollutants in the Lake Doam watershed, water quality and flow rate were monitored for 38-rainfall events from 2009 to 2016. The EMC values of SS, COD, TN and TP were in the range of 33~2,169, 3.5~56.9, 0.09~7.65 and $0.06{\sim}2.21mg\;L^{-1}$, respectively. As a result of analyzing the effect of rainfall factor on the nonpoint source pollutant load, EMCs of SS, COD and TP showed a statistically significant correlation with rainfall (RA) (p<0.01) and SS showed highly significant correlation with maximum rainfall intensity (MRI, R=0.48). The load ranges of SS, COD, TN and TP were 10.4~11,984.6, 1.1~724.4, 0.6~51.6 and $0.03{\sim}22.85ton\;event^{-1}$, respectively, showing large variation depending on the characteristics of rainfall events. The effect of rainfall on the load was analyzed. SS, COD and TP showed a positive correlation, but TN did not show any significant correlation. The annual load of SS was the highest with $88,645tons\;year^{-1}$ in 2011 when rainfall was the highest with 1,669 mm. The result of impact analysis of nonpoint source pollution reduction project and land-use change on runoff load showed that pollutant load significantly reduced from 2009 to 2014 but SS and TP loads were increased from 2014 to 2016 due to increase in construction area. Therefore, we suggested that nonpoint source pollution abatement plan should be continued to reduce the soil loss and pollutants during rainfall, and countermeasures to reduce nonpoint source pollution due to construction need to be established.

제주도 도심하천 유역의 유출특성 해석 (Characteristics of Runoff on Urban Watershed in Jeju island, Korea)

  • 정우열;양성기;이준호
    • 한국환경과학회지
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    • 제22권5호
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    • pp.555-562
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    • 2013
  • Jeju Island, the heaviest raining area in Korea, is a volcanic Island located at the southernmost of Korea, but most streams are of the dry due to its hydrological/geological characteristics different from those of inland areas. Therefore, there are limitations in applying the results from the mainland to the studies on stream run-off characteristics analysis and water resource analysis of Jeju Island. In this study, the SWAT(soil & water assessment tool) model is used for the Hwabuk stream watershed located east of the downtown to calculate the long-term stream run-off rate, and WMS(watershed modeling system) and HEC-HMS(hydrologic modeling system) models are used to figure out the stream run-off characteristics due to short-term heavy rainfall. As the result of SWAT modelling for the long-term rainfall-runoff model for Hwabuk stream watershed in 2008, 5.66% of the average precipitation of the entire basin was run off, with 3.47% in 2009, 8.12% in 2010, and root mean square error(RMSE) and determination coefficient($R^2$) was 496.9 and 0.87, respectively, with model efficient(ME) of 0.72. From the results of WMS and HEC-HMS models which are short-term rainfall-runoff models, unless there was a preceding rainfall, the runoff occurred only for rainfall of 40mm or greater, and the run-off duration averaged 10~14 hours.

무제치늪 지역의 지하수위 변동과 강우의 유출 특성 (The Characteristics on the Groundwater Level Change and Rainfall-Runoff in Moojechi Bog)

  • 이헌호;김재훈
    • 한국환경생태학회지
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    • 제16권3호
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    • pp.239-248
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    • 2002
  • 울산시 정족산 산정상 부근에 위치하고 있는 무제치늪의 수문학적 특성을 구명하고자 유역 환경과 몇 가지 기초 수문조사를 실시하여 늪의 강우유출 특성과 지하수위 변동 특성을 파악하였다. 늪 지역의 평균 유출률은 0.58로 일반 산지유역과 비슷하였다. 단기유출 수문곡선에서 유량상승부가 완만하게 증가하여 첨두유량이 출현할 때까지 많은 시간이 걸리며, 그 이후에도 유량의 감소형태가 일반 산지유역에 비해 천천히 감소하였다. 늪지역의 유출 성분 구성은 기저유출량이 풍부하고, 무강우 기간에도 유출량이 크게 감소하지 않고 지속적으로 유출하였다. 지하수위는 강우 직후에 피크에 도달하고 그 후 강우가 멈추면 다음 강우기간까지 지하수위의 감소가 아주 완만하게 일어나고 있었다. 강우강도가 클수록 지하수위의 감수곡선 기울기가 완만하였으며 지속시간이 길수록 피크부분이 오래 지속되었다. 장기 지하수위의 변화 경향은 강우와 유출 수위의 변화 경향과 거의 일치하였다. 향후의 늪지역의 물환경은 항상 일정한 지하수위를 유지할 것으로 평가되었다.

유출곡선지수 회귀식을 이용한 보청천유역의 직접유출 모의연구 (Direct Runoff Simulation using CN Regression Equation for Bocheong Stream)

  • 곽재원;김수전;윤선화;김형수
    • 한국물환경학회지
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    • 제26권4호
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    • pp.590-597
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    • 2010
  • NRCS Curve Number (CN) method is widely used for practical purposes in the field by engineers and researchers to calculate direct runoff from total rainfall. However, CN is obtained from antecedent moisture condition and soil characteristics and so it has some problems due to its uncertainty. Therefore this study estimated CN of a watershed using asymptotic CN method which can estimate CN by rainfall and runoff data and compared the result with representative CN given by WAMIS. And we performed runoff simulation for rainy season of Bocheong stream by CN regression equation. From the result, we showed that it could be more reasonable to simulate direct runoff using watershed CN regression equation than WAMIS CN. Furthermore, we knew that the equation is more sensitive to small rainfall event.