• Title/Summary/Keyword: Storm Water Management

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An Analysis of the Runoff Variation due to Urbanization in Cho-kyung Stream Watershed (조경천 유역의 도시화에 따른 유출 변화 추이 분석)

  • Choi, Jung-Hwa;Lee, Jeong-Ju;Kwon, Hyun-Han
    • Journal of Wetlands Research
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    • v.11 no.3
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    • pp.161-169
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    • 2009
  • Rainfall-runoff procedures of urban area are more complicated than agricultural procedures. Extension and development of town leads to shift of the basin characteristics and it makes more difficult to use runoff models. In this study, the changes of hydrologic circumstances and the shape of hydrograph due to the urbanization in Cho-kyung river basin has been assessed which is the representative urban stream in Jeonju city. The urbanization can be classified as four typical year. The natural basin period(1924) that is before the urban development, the period of construction of Chonbuk National University campus (1963), the period of construction of residential area(1986), and urbanization process has been finally completed in 1995. The rainfall-runoff analysis has been carried out by Storm Water Management Model(SWMM) under condition of the basin characteristics and impervious area of each period. It was found that hydrologic characteristics such as river length, roughness coefficient, and coefficient of surface storage has been decreased. According to the land use change, the pervious area was decreased from 97.7% to 42%, while the impervious area was increased from 0.6% to 34%. The time of concentration was shorten from 90 minutes to 37 minutes. Along with decreasing the time of concentration, the peak discharge was increased from $4.37m^3/s$ to $111.13m^3/s$, and the runoff rate was also increased from 0.8% to 68%.

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A Study of Sewer Layout to Control a Outflow in Sewer Pipes (우수관거 흐름 제어를 위한 관망 설계에 관한 연구)

  • Kim, Joong-Hoon;Joo, Jin-Gul;Jun, Hwan-Don;Lee, Jung-Ho
    • Journal of the Korean Society of Hazard Mitigation
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    • v.9 no.1
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    • pp.1-7
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    • 2009
  • Most developed models are designed to determine pipe diameter, slope and overall layout in order to minimize the cost for the design rainfall for the optimal sewer layout. However, these models are not capable of considering the superposition effect of runoff hydrographs in the sewer pipes. The flow characteristics in the sewer pipes, such as the sewer layout, pipe diameter and slope, vary according to the design of the sewer system. In particular, when the sewer network is modified, the shapes of the runoff hydrographs in the sewer pipes also change because of the superposition effect. In this study, the sewer layout is designed to control and distribute the flows in the sewer pipes, while considering the runoff superposition effect, in order to reduce the inundation risk at each junction. This is accomplished by separating the inflows that enter into each junction by changing the way in which pipes are connected between junctions. And this model combines SWMM (Storm Water Management Model) to perform the hydraulic analysis for the flows in the sewer network. The current sewer layout was modified to minimize the peak outflow at outlet in Garak basin, Seoul, South Korea. As the results, the peak outflows at the outlet were decreased by approximately 20% for the design rainfall during 30 minutes and the total overflows were also decreased for the excessive rainfalls.

Development of radar-based quantitative precipitation forecasting using spatial-scale decomposition method for urban flood management (도시홍수예보를 위한 공간규모분할기법을 이용한 레이더 강우예측 기법 개발)

  • Yoon, Seongsim
    • Journal of Korea Water Resources Association
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    • v.50 no.5
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    • pp.335-346
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    • 2017
  • This study generated the radar-based forecasted rainfall using spatial-scale decomposition method (SCDM) and evaluated the hydrological applicability with forecasted rainfall by KMA (MAPLE, KONOS) in terms of urban flood forecasting. SCDM is to separate the small-scale field (convective cell) and large-scale field (straitform cell) from radar rainfield. And each separated field is forecasted by translation model and storm tracker nowcasting model for improvement of QPF accuracy. As the evaluated results of various QPF for three rainfall events in Seoul and Metropolitan area, proposed method showed better prediction accuracy than MAPLE and KONOS considering the simplicity of the methodology. In addition, this study assessed the urban hydrological applicability for Gangnam basin. As the results, KONOS simulated the peak of water depth more accurately than MAPLE and SCDM, however cannot simulated the timeseries pattern of water depth. In the case of SCDM, the quantitative error was larger than observed water depth, but the simulated pattern was similar to observation. The SCDM will be useful information for flood forecasting if quantitative accuracy is improved through the adjustment technique and blending with NWP.

Evaluation of Applicability of the ESTIMATOR Model for the Analysis of Nutrient Load Characteristics

  • Shin, Yong-Chul;Heo, Sung-Gu;Lim, Kyoung-Jae;Choi, Joong-Dae
    • Journal of The Korean Society of Agricultural Engineers
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    • v.47 no.7
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    • pp.67-75
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    • 2005
  • It has been well-known that the Nonpoint Source (NPS) pollutions are the primary contributors to water quality degradation in the receiving water bodies as well as the Point Source (PS) pollutions. To develop an effective management practice for water quality improvement, pollutant loads must be first estimated. In many studies, the Numeric Integration (NI) method has been used because of its ease of application, irrespective of the total number of samples collected for each storm event. Thus, there have been needs for more accurate pollutant load estimation with a limited number of water quality samples. In this study, NI method and regression method using the USGS ESTIMATOR model were comparatively used to calculate the pollutant loads for the Wolgokri watershed, Gangwon Province. The $NO_{3}$-N, T-N, and T-P loads using NI method and ESTIMATOR model were 13.85 kg/ha, 45.92 kg/ha, and 1.887 kg/ha, and 11.93 kg/ha,43.20 kg/ha, and 1.650 kg/ha, respectively. The estimated loads using ESTIMATOR model were lower than those using NI method by $86\%$, $94\%$, and $87\%$. These discrepancies in the estimated loads using a different load estimation method could be explained in that the total number of samples were not sufficient enough for NI method. Thus, ESTIMATOR model is recommended for the frequently stream discharge and less frequently measured water quality data.

Water Balance Analysis for Securing Flexible River Flow at Geumho River Basin (탄력적 하천수량 확보를 위한 금호강유역의 물수지 분석)

  • Jeon, Kyeong Soo;Hwang, Ju Ha;Kim, Hyung San;Maeng, Seung Jin
    • Proceedings of the Korea Water Resources Association Conference
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    • 2015.05a
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    • pp.588-588
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    • 2015
  • 최근 기후변화로 인해 6 ~ 7년 주기로 가뭄의 정도가 점차 증가하고 있으며, 과잉취수로 인해 하천 상류 수원이 부족하여 지속적으로 하천 건천화가 발생되고 있는 실정이다. 물부족 지역의 경우 지하수와 같은 고갈되기 쉬운 물을 사용하므로 발생빈도가 높으며, 진행속도가 다른 자연재해와 달리 느리므로 시 공간적으로 정확하게 판단하기 어려워 해결이 장기화 되고 있다. 우리나라 물수급 지역이 급격하게 증감함에 따라 수량 확보와 탄력전인 하천수량 관리 기술이 사회적으로 중요시되고 있다. 이를 위한 수자원계획 도구로 여러 가지 방법이 제시되었다. 이러한 방법들 중 국내 실정에 맞도록 개선된 수자원평가계획모형인 K-WEAP(Korea-Water Evaluation And Planning System) 을 이용하여 물수지 분석하였다. 본 연구는 낙동강수계 금호강유역을 대상으로 중권역 내 행정구역별로 생활, 공업, 농업용수의 수요처와 공급량을 산정하고 이에 따른 네트워크를 구성하여 분석하였다. 각 하천의 자연유출량은 EPA(Environmental Protection Agency) 에서 개발한 강우-유출 모형인 SWMM(Storm Water Management Model) 에 의하여 산정된 결과를 적용하였다. 행정구역을 고려한 물수급 분석을 통해 물수급 전망이 세분화되어 있으나 실제 발생하는 물수급 평가의 어려움은 여전히 존재한다. 생공용수는 공급시설을 고려하여 물수급 분석을 수행하고, 농업용수는 월별로 수요량과 공급량을 검토하는 물수급 분석을 통해 국가수자원공급 계획을 반영한 광역, 기초자치단체의 수자원 확보 방안에 필요한 기초자료로 활용될 것이라 사료된다.

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A Study on Design of Metadata Management Demonstration System for damage prediction from storm and flood (풍수해 피해예측지도 메타데이터 관리 시범 시스템 설계에 대한 연구)

  • Lim, So Mang;Baeck, Seung Hyub;Hwang, Eui Ho
    • Proceedings of the Korea Water Resources Association Conference
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    • 2017.05a
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    • pp.472-472
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    • 2017
  • 재해로 인한 피해가 급증함에 따라 이를 예방하기 위한 풍수해 피해예측의 필요성이 증가하였고 관련된 다양한 연구가 진행되고 있다. 타 부처 및 각 지자체에서는 각종 재해지도들을 작성하여 만들어진 재해지도는 작성 유형과 방법 등에 따라 다양한 데이터와 서로 다른 정보를 포함하고 있어 데이터 정보를 표준화 시키고 필요한 정보를 효율적으로 찾아 연계 활용하기 위하여 본 연구를 수행하고자 한다. 메타데이터란 데이터에 대한 정보를 의미하며 데이터 변화의 근원과 변화의 흐름을 말한다. 메타데이터 관련 표준으로는 ISO19115(국제표준), KSXISO19115(국가표준), TTAS.KO-10.0139(유통목록 표준), TTAS.IS-19115(관리용 표준)이 있다. 본 연구에서는 국제표준을 준용하여 풍수해 피해 예측지도의 체계적 관리를 위한 메타데이터 설계 및 관리 시스템 구축 방안을 제시하고자 하였다. 풍수해 피해예측지도 메타데이터 관리 시범 시스템 구축을 위한 표준, 정보의 특성, 사용자 수준 등을 고려하여 설계 기본방향 설정하였으며, 풍수해 피해예측지도 정보 메타데이터 표준안 수립에 반영하였다. 그 결과, 메타데이터 패키지는 총 9개의 섹션(클래스)으로 구성하여 정의하였고 하위개체를 설정 및 연계하여 메타데이터 개체셋 정보를 구성하였다. 풍수해 피해예측지도 메타데이터 관리 시범 시스템 설계 제시를 위해 DB항목 조사 및 도출, 데이터 연계 활용 모델 구축, 프로토타입 개발순으로 연구를 수행하였다. 또한 표출 대상 데이터 항목별 분류, 방재활용 단계, 지역구분 등을 주제로 데이터 Mapping 자료를 작성하였고, 설계 기본 방향에 의하여 설정된 기준으로 데이터 항목별 메타데이터 DB를 작성하여 풍수해 피해예측지도 메타데이터 관리 시범 시스템을 설계하였다. 본 연구 결과는 추후 풍수해 피해예측지도 표준 데이터 및 풍수해 피해예측지도 표준 데이터 모델 구축에 활용 가능하며 표준화 연계활용을 위한 연구에 기여할 것으로 판단된다.

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Analysis of Water Distribution Network using Digital Data in Agricultural Watershed (농업용수 디지털 정보를 활용한 용수공급 네트워크 분석)

  • Shin, Ji-Hyeon;Nam, Won-Ho;Yoon, Dong-Hyun;Yang, Mi-Hye;Jung, In-Kyun
    • Proceedings of the Korea Water Resources Association Conference
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    • 2022.05a
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    • pp.510-511
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    • 2022
  • 물관리기본법의 시행 및 제1차 국가물관리기본계획의 이행에 따라 물관리 자료의 정보화 요구가 증가하고 있다. 과거 농업용수관리는 기초자료의 오류, 계측데이터의 부족 등이 한계점으로 지적되었으며, 과학화·표준화된 농업용수 물수급 분석 체계 구축 및 물정보의 정확성이 요구된다. 최근 통합물관리 국가정책 대응을 위한 물수급 분석 기반 마련을 목적으로 한국농어촌공사에서는 농업용수 용 배수 계통 정밀조사, 공간자료 재구축 등을 통한 농업용수 디지털 정보체계 구축 사업이 진행되고 있다. 연속수치지형도 및 토지피복, 스마트팜맵 등의 디지털 공간자료를 수집하고 현장조사와 영농조사를 바탕으로 최신화된 용배수계통도, 수혜면적 자료를 구축하였다. 본 연구에서는 디지털화한 용배수계통도를 이용하여 수리해석 모델 기초자료를 구축하고, 들녘단위 (주·보조수원, 저수지 및 양수장 등) 용수계통도 구현함으로써 수원공별 용수공급 네트워크를 분석하고자 한다. 농업용수 공급체계 반영이 가능한 EPA-SWMM (United States Environmental Protection Agency Storm Water Management Model)을 활용하여 다양한 물공급 시나리오를 적용하여 최적의 물관리 방안을 제시하고자 한다. 본 연구에서는 경기도 안성시 고삼저수지를 대상으로 연속수치지형도, 농경지전자지도, 고해상도 DEM 등을 활용한 디지털 조사와 수로 표고, 길이 및 너비 등 현장조사를 수행하였으며, 현장 물관리 방안을 적용하여 물분배 모의가 가능한 EPA-SWMM 기반 수원공-용수로-수혜구역을 연결하는 용수공급 네트워크를 구축하였다. 농촌용수종합정보시스템 (Rural Agricultural Water Resource Information System, RAWRIS)에서 제공하는 계측 자료를 활용하여 관개기간의 강수량, 소비수량, 증발산량, 공급량 등을 적용하여 농업용수 공급량, 배분량을 추정하였다. 본 연구의 결과는 물관리 담당자에게 상세한 현행 용수공급량 및 용수공급체계 정보 제공과 향후 국가물관리기본계획, 농어촌용수이용합리화계획의 물수급 분석 기초자료로 활용 가능할 것으로 사료된다.

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Determination of Heavy Metal Unit Load from Transportation Landuses during a Storm (교통 관련 토지이용에서의 중금속 오염원단위 산정)

  • Kim, Cheol-Min;Lee, So-Young;Lee, Eun-Ju;Kim, Lee-Hyung
    • Journal of the Korean Society of Hazard Mitigation
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    • v.8 no.6
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    • pp.155-160
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    • 2008
  • The urban areas have various landuses such as residential, commercial, industrial and official purposes that are highly concerned with human activities. The other landuses are relating to vehicle activities, which are roads, parking lots, bridges, parks etc. The mainly using landuses by human activities are possessing three different areas that are buildings, parking lots/roads and landscapes. Of these areas, the buildings and landscapes can be classified as non-pollution areas. However, the parking lots or roads are classifying as the main pollution areas because of vehicle activities. Therefore, the landuses arising the nonpoint pollution during a storm in urban areas are roads and parking lots. The vehicles are emitting lots of nonpoint pollutants such as metals and particulate matters and it is impacting on water qualities and aqua-ecosystems nearby the city areas. Therefore, this research was conducted for characterizing the pollutant types and determining the EMCs (Event Mean Concentrations) and unit pollutant loads during a storm. The monitoring was performed on 9 locations such as highways, service area, tollgates, parking lot and bridges. All of the landuses selected for monitoring are concerned with transportation. The results can be effectively used to predict the pollutant loading before urban planning and to select the BMPs (Best Management Practices) for reducing the pollution.

Evaluation of Particle Removal Rate in Inclined-pipe Settling System for Stormwater Infiltration (강우유출수의 침투시 부하저감을 위한 경사관 침전장치의 효율평가)

  • Kim, Sangrae;Kim, Dongkeun;Mun, Jungsoo;Han, Mooyoung
    • Journal of Korean Society of Water and Wastewater
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    • v.23 no.6
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    • pp.719-726
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    • 2009
  • One of the alternative runoff management measures is on-site runoff mitigation, such as rainwater retention tank and infiltration facilities especially the latter that is possible to manage simultaneously runoff quality and quantity as a perspective of water-cycle. This study was conducted to develop a particle separator, inclined-pipe settling system, that could improve particle removal efficiency of road runoff as a pre-treatment device of stormwater infiltration. Solid particles larger than $100{\mu}m$ are separated by simple sedimentation; however, the significant amount of pollutants with a diameter less than $100{\mu}m$ remain in suspension. Without any treatment in that case of the runoff into infiltrate, groundwater would be deteriorated and also infiltration rate would be decreased by clogging. Therefore, we suggest optimal design parameters (inclined angle, pipe length, and surface loading rate) of inclined-pipe settling system which can be designed to effectively remove particles diameter smaller then $70{\mu}m$. Thus, the results showed TSS removal efficiency more than 80% with a particle diameter between $20{\mu}m$ and $70{\mu}m$, 100% above particle diameter $70{\mu}m$ for the inflow rate $0.018 m^3/m^2{\cdot}hr$ with pipe inclined at angle $15^{\circ}$.

Determination of Pollutant Unit Loads from Various Transportation Landuses (교통관련 포장지역 비점오염원에서의 오염물질 유출원단위 산정)

  • Lee, So-Young;Lee, Eunju;Maniquiz, Marla C.;Kim, Lee-Hyung
    • Journal of Korean Society on Water Environment
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    • v.24 no.5
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    • pp.543-549
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    • 2008
  • Human activities and land-use practices are intensely widening the urban areas. High impervious surface areas cover much of urban landscapes and are the primary pollutant sources which can lead to water quality and habitat degradation in its watershed. As the urban areas expand, transportation land-use such as parking lots, roads, service areas, toll-gates in highways and bridges also increase. These land-uses are significant in urban pollution due to high imperviousness rate and vehicular activities. To regulate the environmental impacts and to improve the water quality of rivers and lakes, the Ministry of Environment (MOE) in Korea developed the Total Pollution Load Management System (TPLMS) program. The main objective is to lead the watershed for a low impact development. On a local scale, some urban land surfaces can be emitting more pollution than others. Consequently, in urban areas, the unit loads are commonly employed to estimate total pollutant loadings emitted from various land-uses including residential, commercial, industrial, transportation, open lands such as parks and golf courses, and other developed land like parking areas as a result of development. In this research, unit pollutant loads derived specifically from transportation land-uses (i.e. branched out from urban areas) will be provided. Monitoring was conducted over 56 storm events at nine monitoring locations during three years. Results for the unit pollutant loads of transportation land-use are determined to be $399.5kg/km^2-day$ for TSS, $12.3kg/km^2-day$ for TN and $2.46kg/km^2-day$ for TP. The values are higher than those of urban areas in Korean MOE and US highways. These results can be used by MOE to separate the pollutant unit load of transportation landuses from urban areas.