• 제목/요약/키워드: amount of runoff

검색결과 410건 처리시간 0.039초

WEPP Watershed Version을 이용한 홍천군 자운리 농경지의 경사도에 따른 토양유실량 평가 (Evaluation and Estimation of Sediment Yield under Various Slope Scenarios at Jawoon-ri using WEPP Watershed Model)

  • 최재완;이재운;이열재;현근우;임경제
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2009년도 학술발표회 초록집
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    • pp.693-697
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    • 2009
  • Physically-based WEPP watershed version was applied to a watershed, located at Jawoon-ri, Gangwon with very detailed rainfall data, rather than daily rainfall data. Then it was validated with measured sediment data collected at the sediment settling ponds and through overland flow. The $R^2$ and the EI for runoff comparisons were 0.88 and 0.91, respectively. For sediment comparisons, the $R^2$ and the EI values were 0.95 and 0.91. Since the WEPP provides higher accuracies in predicting runoff and sediment yield from the study watershed, various slope scenarios (2%, 3%, 5.5%, 8%, 10%, 13%, 15%, 18%, 20%, 23%, 25%, 28%, 30%) were made and simulated sediment yield values were analyzed to develop appropriate soil erosion management practices. It was found that soil erosion increase linearly with increase in slope of the field in the watershed. However, the soil erosion increases dramatically with the slope of 20% or higher. Therefore special care should be taken for the agricultural field with higher slope of 20% or higher. As shown in this study, the WEPP watershed version is suitable model to predict soil erosion where torrential rainfall events are causing significant amount of soil loss from the field and it can also be used to develop site-specific best management practices.

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경사지 토양에서 강우량과 토성에 따른 물 유출 및 침투 특성 (Characteristics of Soil Water Runoff and Percolation in Sloped Land with Different Soil Textures)

  • 이현행;하상건;허승오;정강호;김원태;김계훈
    • 한국토양비료학회지
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    • 제39권5호
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    • pp.268-273
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    • 2006
  • 우리나라 밭토양은 70% 이상이 경사지에 위치하고 있기 때문에 침식에 의한 토양유실이 매우 심각한 실정이다. 따라서 본 연구에서는 토성 간 강우량 및 $EI_{30}$에 따른 토양 유실량과 유출수량 및 지하침투수량을 비교함으로써 토성 및 강우형태에 따른 물 흐름양상을 파악하여 토양유실을 방지하는데 이용하고자 하였다. 본 연구에는 우리나라 밭토양의 중간 경사도 15%의 조건으로하여 라이시미터 토양에서 실험을 실시하였고 강우량과 $EI_{30}$, 토양 유실량과 유출수량, 지하침투수량을 조사하여 강우량과 토성에 따라 침투수량과 유출량과의 관계를 보았다. 강우량에 따른 유출수량 및 지하침투수량은 모두 강우량이 증가함에 따라 증가하는 정의 상관관계를 보였고 토성에 따라 강우량이 증가함에 따른 유출수의 상대적인 증가비율과 유출이 발생되는 최소 강우량은 다소 일률적인 양상을 보이지 않았다. 본 시험 기간동안 강우량 단위 증가에 따른 침투수량의 증분량은 식양토가 0.57으로 가장 높았으며, 다음으로 사양토와 양토가 각각 0.52, 0.36 순으로 나타났다. 지하침투수가 발생되기 시작하는 강우량은 식양토에서 12.86 mm으로 가장 높았고, 양토는 680 mm, 사양토는 5.73 mm로 나타났다. 토성별 강우량 단위 증가에 따른 유출수의 증분량은 토성에 따라 큰 차이는 없었으나 양토에서 0.48로 가장 높았고 식양토, 사양토는 0.46, 0.42 순이었고 유출발생 최소강우량도 양토가 17.4 mm로 가장 높았으며 사양토는 10.5 mm, 식양토는 7.76 mm 순으로 나타내었다.

인공강우와 콩재배 포장 라이시메타를 이용한 endosulfan의 유출량 평가 (Runoff of Endosulfan by Rainfall Simulation and from Soybean-grown Field Lysimeter)

  • 김찬섭;이희동;임양빈;임건재
    • 한국환경농학회지
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    • 제26권4호
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    • pp.343-350
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    • 2007
  • 강우에 의한 경사지 토양으로부터의 농약 유출양상을 파악하고 그에 대한 농약의 특성, 환경적 요인 및 영농방법 등의 영향 정도를 평가하기 위하여 토양흡착실험과 인공강우유출 실험 및 콩 재배 lysimeter 포장에서 유출실험을 수행하였다. Endosulfan의 흡착법에 의한 흡착계수 (K)는 $77{\sim}131$이었으며, 탈착법에 의한K값이 흡착법으로 구한 값보다 높았다. 영국 SSLRC의 이동성 분류기준에 의하면 endosulfan은 Koc 4,000을 초과하여 non-mobile 등급에 속하였다. 인공강우 처리구의 유출수 및 유실토양에 의한 endosulfan의 유실율은 $3.4{\sim}5.6%$$4.4{\sim}15.6%$이었다. 인공강우실험 후 토심별 분포를 살펴 본 결과 대부분의 endosulfan 잔류분은 토심 5 cm 이내에 잔류하였다. 경사도 30%의 경우가 10%에 비하여 각 농약의 유실량이 $0.6{\sim}0.9$배 많았는데 유출수에 의한 농약의 유실량 차이는 유출수 중 농도 차이로 볼 수 있으며, 유실토양에 의한 농약 유실량 차이는 토양 유실량과 관계되는 것으로 생각되었다. Lysimeter 포장유출실험 결과 경사도 및 경사장별 endo-sulfan 유실량은 살포량 대비 $5{\sim}35%$ 수준이었다. 콩재배구의 유실율은 나지구의 유실율에 비하여 평균 66% 수준이었다. 경사조건의 영향을 살펴보면 유출수의 경우에는 그 차이가 크지 않았으나 유실토양에 의한 유실율은 경사도와 경사장 증가에 따라 $4{\sim}12$배까지 증가하는 것으로 나타났다. 한편 유출수 중 농약성분의 최고농도는 콩재배구 및 나지구 각각 $8{\sim}10{\mu}gL^{-1}$$7{\sim}9{\mu}gL^{-1}$ 수준으로 작물 재배 여부에 따른 유출수 중 농도의 차이는 크지 않은 것으로 나타났다.

Quantifying the effects of climate variability and human activities on runoff for Vugia - Thu Bon River Basin in Central of Viet Nam

  • Lan, Pham Thi Huong;Thai, Nguyen Canh;Quang, Tran Viet;Long, Ngo Le
    • 한국수자원학회:학술대회논문집
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    • 한국수자원학회 2015년도 학술발표회
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    • pp.233-233
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    • 2015
  • Vu Gia - Thu Bon basin is located in central Vietnam between Truong Son mountain range on the border with Lao in the west and the East Sea in the east. The basin occupies about 10,350 km2 or roughly 90% of the Quang Nam Province and includes Da Nang, a very large city with about 876,000 inhabitants. Total annual rainfall ranges from about 2,000 mm in central and downstream areas to more than 4,000 mm in southern mountainous areas. Rainfall during the monsoon season accounts for 65 to 80% of total annual rainfall. The highest amount of rainfall occurs in October and November which accounts for 40 to 50% of the annual rainfall. Rainfall in the dry season represents about 20 to 35% of the total annual rainfall. The low rainfall season usually occurs from February to April, accounting for only 3 to 5% of the total annual rainfall. The mean annual flow volume in the basin is $19.1{\times}109m 3$. Similar to the distribution of rainfall, annual flows are distinguished by two distinct seasons (the flood season and the low-flow season). The flood season commonly starts in the mid-September and ends in early January. Flows during the flood season account for 62 to 69% of the total annual water volume, while flows in the dry season comprise 22 to 38% of total annual run-off. The water volume gauged in November, the highest flow month, accounts for 26 to 31% of the total annual run-off while the driest period is April with flows of 2 to 3% of the total annual run-off. There are some hydropower projects in the Vu Gia - Thu Bon basin as the cascade of Song Bung 2, Song Bung 4, and Song Bung 5, the A Vuong project currently under construction, the Dak Mi 1 and Dak Mi 4 projects on the Khai tributary, and the Song Con project on the Con River. Both the Khai tributary and the Song Con join the Bung River downstream of SB5, although the Dak Mi 4 project involves an inter-basin diversion to Thu Bon. Much attention has recently been focused on the effects that climate variability and human activities have had on runoff. In this study, data from the Vu Gia - Thu Bon River Basin in the central of Viet Nam were analyzed to investigate changes in annual runoff during the period of 1977-2010. The nonparametric Mann-Kendall test and the Mann-Kendall-Sneyers test were used to identify trend and step change point in the annual runoff. It was found that the basin had a significant increasing trend in annual runoff. The hydrologic sensitivity analysis method was employed to evaluate the effects of climate variability and human activities on mean annual runoff for the human-induced period based on precipitation and potential evapotranspiration. This study quantitatively distinguishes the effects between climate variability and human activities on runoff, which can do duty for a reference for regional water resources assessment and management.

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GIS based Non-Point Source Pollution Assessment

  • Sadeghi-Niaraki, Abolghasem;Kim, Kye-Hyun;Lee, Chol-Young
    • 대한원격탐사학회:학술대회논문집
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    • 대한원격탐사학회 2008년도 International Symposium on Remote Sensing
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    • pp.437-440
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    • 2008
  • In recent years, pollution load calculation has become a topic for research that resulted in the development of numerous GIS modeling methods. The existing pollution method for nonpoint source (NPS) can not be indentified and calculated the amount of the pollution precisely. This research shows that the association of typical pollutant concentrations with land uses in a watershed can provide a reasonably accurate characterization of nonpoint source pollution in the watershed using Expected Mean Concentrations (EMC). The GIS based pollution assessment method is performed for three pollutant constituents: BOD, TN, and TP. First, the runoff grid by means of the precipitation grid and runoff coefficient is estimated. Then, the NPS pollution loads are calculated by grid based method. Finally, the final outputs are evaluated by statistical technique. The results illustrate the merits of the approach. This model verified that GIS based method of estimating spatially distributed NPS pollution loads can lead to more accurate representation of the real world.

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조경기술기반 LID 시스템 적용을 통한 선릉·정릉 권역의 첨두유출량 분석 (A Study on the Peak Runoff Reduction Effect of Seolleung·Jeongneung Zone by Applying LID(Low Impact Development) System based on the Landscape Architectural Technology)

  • 김태한;최종희
    • 한국전통조경학회지
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    • 제35권4호
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    • pp.126-133
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    • 2017
  • 본 연구는 조경기술기반 LID 시스템 적용에 따른 선릉 정릉 권역의 우수유출변화를 수문학적 관점에서 분석하였으며, 연구결과를 다음과 같이 정리할 수 있다. 첫째, 광화문 침수가 발생한 2011년 7월 27일 기준 최대순간강우량은 27일 10시에 기록된 183mm/hr로 시간당 최대강우량 57.5mm/hr에 비해 3배 이상의 강우강도가 10분간 집중된 것으로 확인되었다. 둘째, 토심기준 시나리오에서 담심 1,500mm의 경우 첨두유출량 제어가 가능하여 해당 조경기술기반 LID 시스템 적용 시 선릉 정릉 권역의 수해취약성을 개선할 수 있을 것으로 판단된다. 셋째, 담심 기준 시나리오에서 모든 토심 모형에서 첨두유출량 제어가 이루어지지 않았으나, 최초 우수유출을 토심 기준 시나리오에 비해 4시간 10분의 추가적인 지연효과를 기록하였다. 초기 우수유출저감에는 토심, 첨두유출량에는 담심이 상대적으로 중요한 지표로 해석되었다. 이를 통해 문화재 보호권역 내 경관친화적인 생태적 요소를 시스템화하여 적용할 경우 예상되는 수해방재효과를 이론적으로 확인할 수 있었다.

밭에서의 유효우량 산정모형 개발 (Modeling Effective Rainfall for Upland Crops)

  • 정하우;김성준
    • 한국농공학회지
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    • 제35권1호
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    • pp.29-39
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    • 1993
  • A model for estimating daily effective rainfall of upland crops was developed. The infiltration process was described by Green-Ampt infiltration model developed by Chu(1978). The model considers delayed surface ponding and surface detention storage under a uniform soil profile. The Green-Ampt parameters, that is, average hydraulic conductivity and average capillary pressure head on a sandy loam soil were determined from field experiment using Air-entry permeameter developed by Bouwer(1966). The model was verified by comparing measured and simulated surface runoff. The ratios of effective rainfall to total rainfall for red pepper, soybean, sesame and Chinese cabbage were evaluated using Borg's root growth model( 1986) respectively. The followings are a summary of this study results; 1.In a sandy loam soil average hydraulic conductivity was 3.28cm/hr and average capillary pressure head was 3.00cm. 2.The root growth of upland crops could be expressed by Borg's root growth model successively. 3.The measured and simulated surface runoff was agreed well with each other. 4.As the rainfall amount was increased, the ratio of effective rainfall to total rainfall was decreased exponentially till a certain growing period.

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순환형 도시계획에 따른 LID기술의 물수지 분석 (Water Balance Estimate of LID Technique for Circulating Urban Design)

  • 강승희;허우명;강상혁
    • 한국환경과학회지
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    • 제24권8호
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    • pp.1065-1073
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    • 2015
  • Urbanization can be significantly affected the hydrologic cycle by increasing flood discharge and heat flux. In order to mitigate these modifications in urban areas, Low Impact Development (LID) technique has been designed and applied in Korea. In order to estimate runoff reduction rate using SWMM LID model, the characteristics of five LID techniques was firstly analyzed for water balance. Vegetated swale and green roof were not reduce flood discharge nor infiltration amount. On the other hand, porous pavement and infiltration trench were captured by infiltration function. The flood reduction rate with LID is substantially affected by their structures and properties, e.g., the percentage of the area installed with LID components and the percentage of the drainage area of the LID components.

시설재배지 토양의 유거수에 의한 염류의 이동 (Salt Movement of Soils by Runoff in Green House Area)

  • 강보구;김현주;이경자;김재정;홍순달
    • 한국환경농학회지
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    • 제20권2호
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    • pp.112-115
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    • 2001
  • 염류가 집적된 시설재배지 토양에 대한 유거수에 의한 염류의 이동을 조사하여 농업환경보전자료로 활용하고자 충북 청주지역 시설재배농가 포장에 유거수를 수거할 수 있는 lysimeter를 설치하여 시험을 수행한 결과 다음과 같다. 본 시험중에 내린 강우량의 유거수율은 $38{\sim}77%$의 범위로 평균 58% 이었고 유거수중의 양이온 평균 함량은 $Ca^{2+}(27.12\;mg/L)$ > $K^-(9.18\;mg/L)$ > $Mg^{2+}(2.53\;mg/L)$ > $Na^+(1.89\;mg/L)$의 순이었으며 음이온들의 평균 함량은 $SO_4\;^{2-}(63.38\;mg/L)$ > $NO_3\;^-(25.40\;mg/L)$ > $Cl^-(4.19\;mg/L)$ > $PO_4\;^{3-}(3.18\;mg/L)$의 순이었다. 조사기간중에 내린 강우량의 유거수에 의한 용탈량은 농도가 가장 높았던 $SO_4\;^{2-}$가 140.1 kg/ha 로 가장 많았으며 그 다음은 $Ca^{2+}:$ 59.9 kg/ha, $NO_3\;^-:$ 56.1 kg/ha, $K^+:$ 20.3 kg/ha, $Cl^-:$ 9.3 kg/ha, $PO_4\;^{3-}:$ 7.0 kg/ha, $Mg^{2+}:$ 5.6 kg/ha, $Na^+:$ 4.2 kg/ha 순이었다. 유거수의 $PO_4\;^{3-}$의 함량 및 용탈량은 토양에 집적된 함량에 비하여 낮았다.

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주거단지의 친환경적 우수처리 실태에 관한 연구 -베를린의 현행 계획 및 사례를 중심으로- (A Study on the Management of Precipitation for the Environmental Friendly Housing Complex -focused on the Contemporary Planning and Example Performed by Berlin-)

  • 이태구
    • 한국주거학회논문집
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    • 제11권2호
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    • pp.117-127
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    • 2000
  • As urbanization proceeds and therefore impervious surface coverage increases, the amount of runoff goes up and the hydrological cycle is also changed. The surface retention and interception of precipitation in the urban area are reduced because the surface area is now slick and solid. Increasing runoff in building areas of the city causes flood damage, water pollution, reduction of ground water recharge, and the other environmental problems. This paper investigates various techniques of increasing rates in a site development performed by Berlin. The techniques offered in this paper improve sit water balance, and thus keep the site ecosystem much healthier.

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