• Title/Summary/Keyword: 강우 침투 및 유출

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Study on Rainfall infiltration Characteristics for Weathered Soils: Analysis of Soil Volumetric Water Content and Its Application (국내 풍화토의 강우 침투특성 분석을 위한 실험연구: 토양 체적함수비 분석 및 적용성 평가)

  • Kim, Man-Il;Chae, Byung-Gon;Cho, Yong-Chan;Seo, Yong-Seok
    • The Journal of Engineering Geology
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    • v.18 no.1
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    • pp.83-92
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    • 2008
  • In order to analyze infiltration characteristics of rainfall in soil, two laboratory experiments were conducted using an amplitude domain reflectometry (ADR) sensor and a pore water pressure meter (PWP) in this study. The first experiment is to understand the dependency of volumetric water content and temperature for standard sand and weathered granite soil. The second experiment is a laboratory flume test with changes of rainfall condition. As the results of the dependency experiment, the volumetric water content is increased with increase of the output voltage measured by the ADR sensor in both the standard sands and weathered granite soil. Furthermore, the results also indicate necessity of consideration of the temperature dependency under the condition of high volumetric water contents from 0.15 to 0.45. In the flume test, two measurement devices are detected to the variation of volumetric water content and pore water pressure at the installation point of the flume. In especial, the measured values of ADR4 and PWP3 installed on the lower part of slope are higher than those of the others. It means that the lower part of slope plays a role of a runoff face and a beginning point of slope failure.

Trend Analysis of Groundwater Level in Nakdong River Watersheds (낙동강유역의 지하수위 경향성 분석)

  • Yang, Jeong-Seok;Kim, Nam-Ki;Nam, Jae-Joon;Lee, Myung-Eun;Chung, Eun-Sung
    • Proceedings of the Korea Water Resources Association Conference
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    • 2011.05a
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    • pp.234-234
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    • 2011
  • 기후변화로 인한 수문사상의 특성이 급격하게 변동되는 것은 이미 많은 연구로 인해 밝혀졌다. 이중, 강우사상의 경우 연강우량의 증가에도 불구하고, 일최대강우량 또는 강우강도나 강우집중률이 비교적 더 크게 증가하면서 직접유출 부분이 증가하고 침투량이 감소하면서, 즉 총강우의 유역출구로 나가는 부분이 증가하면서, 갈수기의 지하 및 하천수위는 예년에 비해 더욱 하강하고 있는 실정이 국가지하수관측망이나 하천수위 자료로서 관측되고 있다. 이는 지하수위의 변동특성이 강우패턴의 변화로 인해 분명히 영향을 받고 있다는 사실을 자료로서 입증하고 있다고 할 수 있다. 본 연구는 국가지하수 관측망 중 낙동강유역에 위치한 관측소를 대상으로 관측자료를 검토한 결과 총 43개의 관측소를 선정하여 암반층 36개, 충적층 19개로 관측정별 자료 수집을 하였으며, 연최대, 연평균, 연최저 지하수위에 대한 경향성 및 유의성 검정을 실시하였다. 유의성 검정은 t-test를 실시하였다. 연 평균지하수위를 기준으로 암반층은 27개 관측소가 하강하였고, 이 중 유의수준 5% 이내에 유의하며 하강하는 지점은 9개로 나타났다. 충적층은 16개 관측소가 하강하는 경향을 나타냈으며, 이 중 12개 관측소가 유의수준 5% 이내에 유의하는 것으로 나타났다. 지하수위의 하강하는 경향성이 뚜렷한 지역은 지하수의 고갈과 함께 인근하천의 건천화 그리고 지반침하나 해안지방인 경우는 염수침입이 일어날 가능성이 큰 지역이므로 향후 이에 대한 대책이 세워져야 할 것이다.

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Development and Evaluation of Bioretention Treating Stormwater Runoff from a Parking Lot (주차장 비점오염원 관리를 위한 식생체류지 개발 및 평가)

  • Yu, Gigyung;Choi, Jiyeon;Hong, Jungsun;Moon, Soyeon;Kim, Lee Hyung
    • Journal of Wetlands Research
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    • v.17 no.3
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    • pp.221-227
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    • 2015
  • Urbanization increases the impervious cover, which affects the discharge of stormwater runoff and non-point source pollutants to the waterbodies. In order to improve the water quality and restore the aqua-ecosystem, the Ministry of Environment (MOE), Korea MOE introduced the Low Impact Development(LID) techniques on development projects. Therefore, research was performed to develop the bioretention technology for managing the stormwater runoff from urban areas. The test-bed was established on 2013 up to evaluate the performance of pollutant and runoff reduction. A total of 11 storm events have been monitored from November 2013 to present. Even though the SA/CA (surface area of bioretention/catchment area) is approximately 2.2%, the facility shows high pollutant and runoff reduction during storm events by increasing retention and infiltration capacities. The bioretention shows a 100% total runoff reduction at 0mm < R < 10mm rainfall range and more than 90% of runoff reduction at a rainfall range of 10mm < R < 20mm. Due to runoff volume reduction, more than 90% of nonpoint source pollutant were also removed by the bioretention.

Analysis of Rainfall Infiltration Velocity in Unsaturated Soils Under Both Continuous and Repeated Rainfall Conditions by an Unsaturated Soil Column Test (불포화토 칼럼시험을 통한 연속강우와 반복강우의 강우침투속도 분석)

  • Park, Kyu-Bo;Chae, Byung-Gon;Park, Hyuck-Jin
    • The Journal of Engineering Geology
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    • v.21 no.2
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    • pp.133-145
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    • 2011
  • Unsaturated soil column tests were performed for weathered gneiss soil and weathered granite soil to assess the relationship between infiltration velocity and rainfall condition for different rainfall durations and for multiple rainfall events separated by dry periods of various lengths (herein, 'rainfall break duration'). The volumetric water content was measured using TDR (Time Domain Reflectometry) sensors at regular time intervals. For the column tests, rainfall intensity was 20 mm/h and we varied the rainfall duration and rainfall break duration. The unit weight of weathered gneiss soil was designed 1.21 $g/cm^3$, which is lower than the in situ unit weight without overflow in the column. The in situ unit weight for weathered granite soil was designed 1.35 $g/cm^3$. The initial infiltration velocity of precipitation for the two weathered soils under total amount of rainfall as much as 200 mm conditions was $2.090{\times}10^{-3}$ to $2.854{\times}10^{-3}$ cm/s and $1.692{\times}10^{-3}$ to $2.012{\times}10^{-3}$ cm/s, respectively. These rates are higher than the repeated-infiltration velocities of precipitation under total amount of rainfall as much as 100 mm conditions ($1.309{\times}10^{-3}$ to $1.871{\times}10^{-3}$ cm/s and $1.175{\times}10^{-3}$ to $1.581{\times}10^{-3}$ cm/s, respectively), because the amount of precipitation under 200 mm conditions is more than that under 100 mm conditions. The repeated-infiltration velocities of weathered gneiss soil and weathered granite soil were $1.309{\times}10^{-3}$ to $2.854{\times}10^{-3}$ cm/s and $1.175{\times}10^{-3}$ to $2.012{\times}10^{-3}$ cm/s, respectively, being higher than the first-infiltration velocities ($1.307{\times}10^{-2}$ to $1.718{\times}10^{-2}$ cm/s and $1.789{\times}10^{-2}$ to $2.070{\times}10^{-2}$ cm/s, respectively). The results reflect the effect of reduced matric suction due to a reduction in the amount of air in the soil.

Development of Grid Based Distributed Rainfall-Runoff Model with Finite Volume Method (유한체적법을 이용한 격자기반의 분포형 강우-유출 모형 개발)

  • Choi, Yun-Seok;Kim, Kyung-Tak;Lee, Jin-Hee
    • Journal of Korea Water Resources Association
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    • v.41 no.9
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    • pp.895-905
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    • 2008
  • To analyze hydrologic processes in a watershed requires both various geographical data and hydrological time series data. Recently, not only geographical data such as DEM(Digital Elevation Model) and hydrologic thematic map but also hydrological time series from numerical weather prediction and rainfall radar have been provided as grid data, and there are studies on hydrologic analysis using these grid data. In this study, GRM(Grid based Rainfall-runoff Model) which is physically-based distributed rainfall-runoff model has been developed to simulate short term rainfall-runoff process effectively using these grid data. Kinematic wave equation is used to simulate overland flow and channel flow, and Green-Ampt model is used to simulate infiltration process. Governing equation is discretized by finite volume method. TDMA(TriDiagonal Matrix Algorithm) is applied to solve systems of linear equations, and Newton-Raphson iteration method is applied to solve non-linear term. Developed model was applied to simplified hypothetical watersheds to examine model reasonability with the results from $Vflo^{TM}$. It was applied to Wicheon watershed for verification, and the applicability to real site was examined, and simulation results showed good agreement with measured hydrographs.

Improvement on L-THIA ACN-WQ model for expanded application to the watersheds (유역 확대 적용을 위한 L-THIA ACN-WQ 모형의 개선)

  • Kum, Donghyuk;Park, Youn Shik;Ryu, Jichul;Jeon, Ji-Hong;Lim, Kyoung Jae
    • Proceedings of the Korea Water Resources Association Conference
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    • 2018.05a
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    • pp.315-315
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    • 2018
  • L-THIA ACN-WQ 2016 모형 개선 연구에서는 침투량 산정, 다중 기상지점 등 유역 규모 확대를 목적으로 엔진 개선과 모형의 최적 매개변수 선정을 위해 최적화 알고리즘을 활용한 자동보정 모듈을 개발하였다. 개선된 침투량 초기손실 산정 계수를 적용한 침투량 산정 방법을 Green-Ampt 모형의 침투량 산정 결과와 비교한 결과 편차는 매우 작았으며, Green-Ampt 모형을 통해 산정된 침투량 범위 내에 분포되어 개선된 침투량 산정 방법의 결과가 유효한 값을 의미하는 것으로 나타났다. 이렇게 도출된 초기손실 산정 계수를 관계식으로 개발하여 L-THIA ACN-WQ 2018 모형 내에서 CN에 따른 초기손실량이 산정되도록 하였고, 이를 기반으로 침투량 및 기저유출량이 산정된다. 유역 규모 확대를 위해 다중 기상지점이 적용되도록 엔진 코드를 개선하였으며, 평창A와 고부A 유역을 대상으로 단일 기상지점과 다중 기상지점 적용에 따른 유출 해석을 유량지속곡선을 통해 비교 한 결과 다중 기상지점 적용에 따라서 평창A와 고부A 유역 모두 유황구간이 크게 달라지는 것으로 나타났다. 특히 고부A 유역은 우황 변동 특성이 크게 나타났는데, 지역적 강우 특성이 뚜렷한 유역에서는 유출해석에 매우 중요한 영향인자로 작용되는 것으로 알 수 있었다. 마지막으로 L-THIA ACN-WQ 2018모형을 이용함에 있어 유역 특성에 알맞은 최적 매개변수 산정을 위해 유량 및 TN, TP 자동보정 툴을 개발하였다. 자동보정툴은 2개의 보정방안으로 개발하였다. 첫 번째는 유역 전체에 대해 하나의 최적매개변수를 도출하는 것이며, 두번째는 유역 내 다중 보정 지점을 통해 소유역별 최적매개변수를 도출하는 것이다. 이를 통해 사용자는 모형의 활용 목적 및 가용 가능한 보정 자료 등을 고려하여 모형의 최적 매개변수를 도출할 수 있다. 이렇게 개선된 L-THIA ACN-WQ 2018 모형을 총량단위유역 한강 평창A와 금강 고부A에 적용한 결과 유량은 NSE 0.76, 0.85로 매우 높게 나타났으며, TN, TP의 NSE는 0.64 ~ 0.86 로 매우 높은 적용성 결과가 도출되었다. Ryu(2016)의 연구 결과와 비교해보면 평창A는 NSE와 $R^2$ 수치로는 큰 차이를 보이지 않았지만, 유량 모의에서 일별 예측값 변화 폭에 큰 변화가 있는 것으로 나타났다. 기존 L-THIA ACN-WQ 2016모형 결과에서는 일별 유량의 변동성이 매우 크지만, L-THIA ACN-WQ 2018 모형에서는 일별 유량 변동폭이 크게 감소하여, 유량 모의에 큰 개선 효과가 있는 것으로 나타났다

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Analysis of Rainfall-Runoff Characteristics in Gokgyochun Basin Using a Runoff Model (유출모형을 이용한 곡교천 유역의 강우-유출 특성 분석)

  • Hwan, Byungl-Ki;Cho, Yong-Soo;Yang, Seung-Bin
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.20 no.2
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    • pp.404-411
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    • 2019
  • In this study, the HEC-HMS was applied to determine rainfall-runoff processes for the Gokgyuchun basin. Several sub-basins have large-scale reservoirs for agricultural needs and they store large amounts of initial runoff. Three infiltration methods were implemented to reflect the effect of initial loss by reservoirs: 'SCS-CN'(Scheme I), 'SCS-CN' with simple surface method(Scheme II), and 'Initial and Constant rate'(Scheme III). Modeling processes include incorporating three different methods for loss due to infiltration, Clark's UH model for transformation, exponential recession model for baseflow, and Muskingum model for channel routing. The parameters were calibrated using an optimization technique with trial and error method. Performance measures, such as NSE, RAR, and PBIAS, were adopted to aid in the calibration processes. The model performance for those methods was evaluated at Gangcheong station, which is the outlet of study site. Good accuracy in predicting runoff volume and peak flow, and peak time was obtained using the Scheme II and III, considering the initial loss, whereas Scheme I showed low reliability for storms. Scheme III did not show good matches between observed and simulated values for storms with multi peaks. Conclusively, Scheme II provided better results for both single and multi-peak storms. The results of this study can provide a useful tool for decision makers to determine master plans for regional flood control management.

Hydrologic and Hydraulic Factors Affecting the Long-term Treatment Performance of an Urban Stormwater Tree Box Filter (도시 강우유출수를 처리하는 나무여과상자의 장기 처리효율에 영향을 주는 수리학적 및 수문학적 인자 연구)

  • Geronimo, Franz Kevin F.;Hong, Jungsun;Kim, Lee-Hyung
    • Journal of Korean Society on Water Environment
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    • v.33 no.6
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    • pp.715-721
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    • 2017
  • Tree box filters, an example of bioretention systems, were compacted and versatile urban stormwater low impact development technique which allowed volume and water quality treatment performance to be adjusted based on the hydrologic, runoff quality and catchment characteristics. In this study, the overall performance of a 6 year-old tree box filter receiving parking lot stormwater runoff was evaluated. Hydrologic and hydraulic factors affecting the treatment performance of the tree box filter were also identified and investigated. Based on the results, the increase in rainfall depth caused a decrease in hydrologic and hydraulic performance of the tree box filter including volume, average flow, and peak flow reduction (r = -0.53 to -0.59; p<0.01). TSS, organics, nutrients, and total and soluble heavy metals constituents were significantly reduced by the system through media filtration, adsorption, infiltration, and evapotranspiration mechanisms employed in the tree box filter (p<0.001). This significant pollutant reduction by the tree box filter was also found to have been caused by hydrologic and hydraulic factors including volume, average flow, peak flow, hydraulic retention time (HRT) and runoff duration. These findings were especially useful in applying similarly designed tree box filter by considering tree box filter surface area to catchment area of less than 1 %.

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

  • Lee, Hyun-Haeng;Ha, Sang-Keon;Hur, Seung-Oh;Jung, Kang-Ho;Kim, Won-Tae;Kim, Kye-Hoon
    • Korean Journal of Soil Science and Fertilizer
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    • v.39 no.5
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    • pp.268-273
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    • 2006
  • Soil loss induced by erosion has come to be a serious problem in Korea's sloped land since more than 70% of upland fields are located on the sloped land area. The purpose of this study was to investigate the phase of water flow in differently soil textured plot soil types by rainfall amount. Lysimeters with slope of 15%, 5 m in length, 2 m in width, and 1 m in depth were prepared and filled up with three different soil textures, such as sandy loam, loam, and clay loam, then relationships between seasonal rainfall and runoff, percolation were analyzed. Runoff and percolation rate were shown to increase linearly with increasing rainfall intensity in all the soil textures, but the starting threshold and increment rate in runoff and percolation occurrence were dependent differently upon soil textures. Percolation increment rate according to the increasing rainfall amount was 0.52, 0.36, and 0.57 for sandy loam, loam and clay loam soil respectively. The threshold rainfall amounts in which percolation occurs were 5.73 mm, 6.80 mm, and 12.86 mm for sandy loam, loam and clay loam respectively. Runoff increment rates were 0.42, 0.48 and 0.46 for sandy loam, loam and clay loam soil. The threshold rainfall amount in which runoff occurs was 10.50 mm in sandy loam, 7.76 mm in loam and 17.40 mm in clay loam. These different phases of water flow by soil texture could be used to suggest guidelines for the best management practice of the farming slope land.

Analysis of Urban Watershed Flood according to Return Period using Inundation Model (범람해석모형을 이용한 재현빈도에 따른 도시유역의 침수해석)

  • Tak, Yong Hun;Hyun, Suk Hoon;Kim, Young Do;Kang, boo Sik
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.91-91
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    • 2015
  • 최근 강우패턴의 변화에 따라 동일한 강우에 대하여 도시지역에서 증가된 첨두유량을 보이며 도달시간이 단축되어 홍수의 위험성이 매우 높다. 도시화에 따라 하천변의 개발과, 불투수 지역의 증가로 배수관망의 분포에 따라 통수능을 초과하지 않는 소규모의 강우에도 내수배제불량에 의한 침수가 발생할 가능성을 지니고 있다. 이러한 도시유역의 침수방지를 위한 내수배제시설에는 배수문, 배수펌프, 저류지, 침투시설 등 다양한 홍수분담시설이 있지만, 기존 도시유역에서의 내수배제는 빗물펌프장 등 일부 구조물에만 치중되기 쉽다. 따라서 다양한 내수배제방안 및 그에 따른 효과를 종합적으로 고려한 내수배제시설의 설치가 필요하다. 도시화가 가중화되고, 인구의 증가와 사회기반시설이 밀집되어 있는 도시지역의 침수는 인명, 재산 및 주요 시설물에 대한 피해로 이어지게 된다. 그러므로 도시지역의 침수로 인한 피해저감에 있어 유출현상의 정확한 해석 능력은 홍수제어를 위한 홍수량의 예측과 배수 및 수방시설의 설계, 침수위험지역 선정 등에 있어서 매우 중요하다. 연구 대상지역은 최근 폭우발생시 침수피해가 빈번히 발생한 서울시의 도림천 유역을 선정하였다. 도림천 유역은 도심지를 관통하며 하천의 일부가 복개되어 하천이 큰 관로의 형태를 띠고 있으며, 하천의 범람, 관거 및 내수배제 불량에 의한 침수피해가 발생하고 있다. 본 연구에서는 도시침수에 대한 효율적인 내수배제를 위한 내수배제시설 설계를 위해 설계강우의 변동에 의한 유출량의 변화를 검토하여, 배수체계에서의 역류로 인한 월류량을 산정한 뒤 범람해석모형인 FLUMEN 모형에 적용하여 도시유역에서 우수의 거동에 관한 모의를 실시하였다.

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