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논문 기본 정보

자료유형
학술대회자료
저자정보
서미진 (농촌진흥청) Fouad Jaber (Texas A&M University) 한경화 (농촌진흥청) 정강호 (농촌진흥청) 장용선 (농촌진흥청) 조희래 (농촌진흥청)
저널정보
한국토양비료학회 한국토양비료학회 학술발표회 초록집 2015년 한국토양비료학회 대한민국 흙의날 제정 기념행사 및 춘계학술대회 논문 초록집
발행연도
2015.5
수록면
42 - 50 (9page)

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Negative effects of urban stormwater runoff on water environment have been a growing concern in the United States. Drastic change in land uses to urban communities with pavements from natural land uses can destroy the already established eco-hydrologic system prior to the land conversion. Low Impact Development practices (LIDs) have been used as an alternative stormwater management approach in urban areas. The effects of LIDs on hydrology and water quality have been widely accepted to be positive through research. However, LIDs can have varying effectiveness under different conditions. In this research, the effectiveness of LIDs was assessed under three urban land uses (Compact high-density; UHD, Conventional medium-density; UMD, and Conservational medium-density; UMC) and under various configurations of LIDs factors (types, locations, and percent allocations) for surface runoff, nitrate, and total phosphorus in order to identify their performance on improving stormwater runoff and water quality under such conditions.
Rain gardens, rainwater harvesting systems, and permeable pavements were selected, and the Soil and Water Assessment Tool (SWAT) was modified to implement the LIDs simulations at a watershed scale. A manual optimization was attempted to identify the LIDs configurations that meet targeted reduction amounts in a cost-effective manner.
The research indicates that the effectiveness of LIDs varies under various conditions examined. Under urban development land uses with LIDs, the UHD scenario resulted in low amounts in surface runoff and nitrate while the UMD scenario predicted low TP yields. Under LIDs factors through the optimization, the various configurations of type, location, and percent allocation changed the effectiveness of LIDs and/or caused the same effectiveness of LIDs for each variable. This research is useful in that it can ultimately suggest proper strategies in urban watersheds to effectively control stormwater and help regulators establish effective LID policies based on the results.

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UCI(KEPA) : I410-ECN-0101-2016-521-001398888