• Title/Summary/Keyword: Runoff capture curve

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Runoff Capture Curve for Non-Point Source Management (비점오염원 관리를 위한 유출포착곡선)

  • Kim, Sangdan;Jo, Deok Jun
    • Journal of Korean Society on Water Environment
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    • v.23 no.6
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    • pp.829-836
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    • 2007
  • For the purpose of managing non-point sources, water quality control basins (WQCBs) are often designed to capture rainfall events smaller than extreme events. The design rainfall statistics and runoff capture rates for sizing a WQCB should be derived from the local long-term continuous rainfall record. In this study, the 31-year continuous rainfall data recorded in Busan is analyzed to derive the synthesized runoff capture curve incorporated with SCS curve number.

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

  • Choi, Daegyu;Kim, Jin Kwan;Lee, Jae Kwan;Kim, Sangdan
    • Journal of Korean Society on Water Environment
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    • v.27 no.1
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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 the Risk - based Local Normal CSOs Curve Designs (위험도 기반 지역별 정규 CSOs 곡선 설계에 관한 연구)

  • Jo Deok-Jun
    • Journal of Korea Water Resources Association
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    • v.39 no.7 s.168
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    • pp.575-581
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    • 2006
  • This paper presents a systematic approach for the economical design of stormwater quality control systems. For the design of runoff quality control system (RQCS), the rainfall-runoff process requires the local rainfall data recorded continuously. In this study the rainfall probability distribution is assumed to follow an exponential decay function. Applying the exponential decay function, the normalized curves are derived to explain the non-exceedance probability distributions. The optimal curves for the determination of the RQCS size are derived based on the overflow risk. Comparison of the optimal capture volume and peak runoff rate to those computed by an urban rainfall-runoff model(ILLUDAS) demonstrates that the optimal CSOs(Combined Sewer Overflows) curves derived in this study can be utilized for the design of stormwater quality control systems in Korea avoiding an excessive computational effort based on over flow risks.

Runoff Capture Curve for Water Quality Control Basins Design (저류형 비점저감시설 설계를 위한 유출포착곡선)

  • Kim, Sang-Dan;Kim, Jae-Cheol;Han, Su-Hui;Kim, Mun-Seong;Choe, Dae-Gyu
    • Proceedings of the Korea Water Resources Association Conference
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    • 2008.05a
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    • pp.1133-1136
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    • 2008
  • 본 연구에서는 또한 지역별로 평균적인 강우사상의 강우량과 해당 지역의 유역수문상황을 대변할 수 있는 두 가지 매개변수(지면 저류고 및 CN값)을 이용하여 유출포착곡선을 직접 합성할 수 있는 방법론을 제공하고 있다. 본 연구에서는 제안한 방법은 강우-유출 관계를 국내에서 가장 일반적으로 적용되고 있는 SCS 유출곡선법을 고려함과 동시에 복잡한 토지이용특성을 가진 우리나라의 도시배수분구에의 적용 시 보다 객관적인 설계가 이루어질 수 있도록 하였다.

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