• 제목/요약/키워드: Pollutant Load Estimation

검색결과 98건 처리시간 0.037초

최적화기법을 이용한 황구지천유역의 오염부하량 할당 (Waste Load Allocation of Hwanggujicheon Watershed Using Optimization Technique)

  • 조재현;정욱진;이종호
    • 상하수도학회지
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    • 제19권6호
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    • pp.728-737
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    • 2005
  • Water quality of the Hwanggujicheon is poor because of the rapid housing and development in the large area of the basin. Establishment of water quality management strategy, based on the pollution sources survey and pollutant loads estimation, has to be established for the preservation of the stream water quality of the region. In this study, waste load allocation model to achieve the water quality goal of the stream and the optimization of pollutant load reduction, was developed. Nonpoint pollutant loads calculated by runoff model in the previous study are utilized for pollutant loads estimation of the drainage areas in this study. From the application result of the allocation model, water quality goals of the Hwanggujicheon that can be achieved as a matter of fact are BOD 8 mg/L. To achieve these goals, 23% of effluent BOD loads have to be reduced in the basin.

L-THIA모형을 이용한 수질오염총량관리제 토지계 T-P 발생부하량 산정방식의 개선 (Enhancement of Estimation Method on the Land T-P Pollutant Load in TMDLs Using L-THIA)

  • 류지철;김은정;한미덕;김용석;금동혁;임경재;박배경
    • 대한환경공학회지
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    • 제36권3호
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    • pp.162-171
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    • 2014
  • 본 연구에서는 수질오염총량제의 토지계 발생부하량 산정 방식에서의 지목 단순화로 인한 불확실성을 분석하고, 23 개 중분류 토지피복도를 기존 산정방식에 적용하여 지목 확장을 할 수 있도록 개선하였으며 이를 L-THIA 모형을 이용하여 검증하였다. 진위천 유역에 대하여 지목이 단순화된 기존 방식(시나리오 1)과 23개 중분류 토지피복도를 이용한 방식(시나리 오 2)으로 산정된 TP 부하량을 비교한 결과 기존 방식의 불확실성이 높다는 것이 나타났으며, 시나리오 2에 의한 분석 결과 같은 대지 분류에 속하는 토지피복들에서 T-P 발생부하량의 편차가 3.45 kg/day~56.69 kg/day로 약 16배의 차이를 보였다. 시 나리오 2를 수질오염총량제에 적용할 수 있도록 23개 중분류 토지피복을 지적도 기반 지목으로 매칭하여 TP 발생부하량을 산정하였다(시나리오 3). 개선된 방식(시나리오 3)의 토지계 T-P 발생부하량 산정의 정확도를 검증하기 위해 L-THIA 모형의 결과와 비교하였으며 모형 예측 대비 약 10% 정도로 차이가 매우 적게 나타났다. 본 연구결과는 향후 수질오염총량제의 토 지계 발생부하량 산정의 정확도를 높이는데 있어 기초자료로 사용될 수 있을 것이라 기대된다.

System Development for the estimation of Pollutant Loads on Reservoir

  • Shim, Soon-Bo;Lee, Yo-Sang;Koh, Deuk-Koo
    • Korean Journal of Hydrosciences
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    • 제10권
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    • pp.35-46
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    • 1999
  • An integrated system of GIS and water quality model was suggested including the pollutant loads from the watershed. The developed system consits of two parts. First part is the information on landuse and several surface factors concerning the overland flow processes of water and pollutants. Second part is the modeling modules which include storm event pollutant load model(SEPLM), non-storm event pollutant load model(NSPLM), and river water quality simulation model(RWQSM). Models can calculate the pollutant load from the study area. The databases and models are linked through the interface modules resided in the overall system, which incorporate the graphical display modules and the operating scheme for the optimal use of the system. The developed system was applied to the Chungju multi-purpose reservoir to estimate the pollutant load during the four selected rainfall events between 1991 and 1993, based upon monthly basis and seasonal basis in drought flow, low flow, normal flow and wet flow.

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유전자 알고리즘과 회귀식을 이용한 오염부하량의 예측 (Estimation of Pollutant Load Using Genetic-algorithm and Regression Model)

  • 박윤식
    • 한국환경농학회지
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    • 제33권1호
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    • pp.37-43
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    • 2014
  • BACKGROUND: Water quality data are collected less frequently than flow data because of the cost to collect and analyze, while water quality data corresponding to flow data are required to compute pollutant loads or to calibrate other hydrology models. Regression models are applicable to interpolate water quality data corresponding to flow data. METHODS AND RESULTS: A regression model was suggested which is capable to consider flow and time variance, and the regression model coefficients were calibrated using various measured water quality data with genetic-algorithm. Both LOADEST and the regression using genetic-algorithm were evaluated by 19 water quality data sets through calibration and validation. The regression model using genetic-algorithm displayed the similar model behaviors to LOADEST. The load estimates by both LOADEST and the regression model using genetic-algorithm indicated that use of a large proportion of water quality data does not necessarily lead to the load estimates with smaller error to measured load. CONCLUSION: Regression models need to be calibrated and validated before they are used to interpolate pollutant loads, as separating water quality data into two data sets for calibration and validation.

발생부하원단위와 수치표고모형을 이용한 하천유역 오염부하량 산정 (Calculation of Pollutant Loadings from Stream Watershed Using Digital Elevation Model and Pollutant Load Unit Factors)

  • 양홍모;김혁
    • 한국조경학회지
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    • 제29권1호
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    • pp.22-31
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    • 2001
  • The purpose of this study is to compare calculated pollutant loadings using pollutant load unit factors and vector type coverage, and expected mean concentration(EMC) and raster type of digital elevation model(DEM). This study is also focusing on comparison of the advantages and the disadvantages of the two methods, and seeking for a method of calculation of pollutant loadings using DEM. Estimation of pollutant inputs using pollutant load unit factors has limitations in identifying seasonal variations of pollutant loadings. Seasonal changes of runoffs should be considered in the calculation of pollutant loadings from catchments into reservoirs. Evaluation of pollutant inputs using runoff-coefficient and EMC can overcome these drawbacks. Proper EMC and runoff-coefficient values for the Koeup stream catchments of the Koheung estuarine lake were drawn from review of related papers. Arc/Info was employed to establish database of spatial and attribute data of point and non-point pollutant sources and characteristics of the catchments. ArcView was used to calculate point and non-point pollutant loadings. Pollutant loads estimated with either unit factors-coverages, i.e., pollutant load unit factors and vector coverages f point sources and land use, or EMC and digital elevation mode(DEM) were compared with stream monitoring loads. We have found that some differences were shown between monitoring results and estimated loads by Unit Factors-Coverage and EMC-DEM. Monthly variations of pollutant loads evaluated with EMC-DEM were similar to those with monitoring result. The method using EMC-DEM can calculate accumulated flows and pollutant loads and can be utilized to identify stream networks. A future research on correcting the difference between vector type stream using flow direction grid and digitalizing vector type should be conducted in order to obtain more exact calculation of pollutant loadings.

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GIS를 이용한 유역별 오염부하량 산정시스템의 개발 (Development of Pollutant Loading Estimation System using GIS)

  • 함광준;김준현;심재민
    • 환경영향평가
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    • 제14권3호
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    • pp.97-107
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    • 2005
  • The purpose of this study is to develop a system, which estimates watershed pollutant loading rate through the combination of GIS and computational mode. Also, the applicability of this study was estimated by the application of the above system for Chuncheon City. The detailed results of these studies are as follows; The pollutant loading estimation system was developed for more convenient estimation of pollutant loading rate in watershed, and the system load was minimized by the separation of estimation module for point and non-point source. This system on the basis of GIS is very economical and efficient because it can be applied to other watershed with the watershed map. System modification is not needed. The pollutant loading estimation system for point source was developed to estimate the pollutant loading rate in watershed through the extraction of the proper data from all districts and yearly data and the execution of spatial analysis which is main function of GIS. From the verification result of spatial analysis, real watershed area and the administrative districtarea extracted by spatial analysis were $1,114,893,340.15m^2$ and $1,114,878,683.68m^2$, respectively. It shows that the spatial analysis results were very exact with only 0.001% error. The pollutant loading estimation system for non-point source was developed to calculate the pollutant loading rate through the overlaying of land-use and watershed map after the construction of new land-use map using the land register database with most exact land use classification. Application result for Chuncheon City shows that the proposed system results in one percent land use error while the statistical method results in five percent. More exact nonpoint source pollutant loading was estimated from this system.

SWMM을 이용한 황구지천유역의 비점원오염부하량 평가 (Estimation of Nonpoint Pollutant Loads in the Hwanggujichoen Basin using SWMM)

  • 조재현;조남홍
    • 환경영향평가
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    • 제12권5호
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    • pp.349-358
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    • 2003
  • Water pollution of Hwanggujicheon stream is severe because urban area of Suwon City is included in the basin. A countermeasure for water quality prevention of the stream is necessary. In this study, nonpoint pollutant load of BOD, SS, TN and TP are estimated using SWMM. The result indicates that BOD, SS, TN and TP loads during 3 months from July to September are 67.0%, 60.8%, 54.7% and 74.5% of the annual total load, respectively. We can see that most of nonpoint pollutant loads are generated in the rainy season. Annual nonpoint pollutant loads of BOD, SS, TN and TP in the Hwanggujicheon stream are 342 ton, 1,500 ton, 480 ton and 12.6 ton, respectively.

수질오염총량관리계획 수립을 위한 유달부하량 추정방법 연구 (A Study on Estimated Pollutant Delivery Load for the Basic Plan of TPLC)

  • 황하선;이한필;안기홍;박지형;김용석;이성준
    • 한국물환경학회지
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    • 제32권4호
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    • pp.375-383
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    • 2016
  • Total Pollution Load Control (TPLC) calculates and manages the allowable pollutant load that is discharged from the watershed, which can meet the water quality target. Delivery Ratio (DR) is generally used for predicting the variation of pollutant mass balance between the pollutants discharged from the watershed and a certain point in the stream, and it is very important for estimation of accurate allowable pollutant load. The concept of DR in TPLC is different from prevalent DR, because DR in TPLC includes both the discharge of pollutants from the watershed and the delivery mechanism. Therefore, DR in TPLC should be estimated by using a proper and unified methodology. The appropriate method and equation for estimation of DR in TPLC was developed through the review of various methodologies, and the applicability of the equation was evaluated in a study area (Geumho A). Determination coefficients (R2) of regression were shown to be relatively high (BOD 0.71~0.87, T-N 0.86~0.90, T-P 0.62~0.69). Applicability of the developed methodology and equations was evaluated as appropriate for TPLC, and it is suggested.

비점오염 발생 원단위 산정방법에 대한 고찰 - 논 비점오염 원단위를 중심으로 - (A Study on the Estimation Methods of Nonpoint Pollutant Unit Load - Focus on Nonpoint Pollutant Unit Load in Paddy Field -)

  • 최동호;최순군;김민경;허승오;홍성창;엽소진;윤광식
    • 한국농공학회논문집
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    • 제61권3호
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    • pp.15-22
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    • 2019
  • In order to preserve water environment, Total Maximum Daily Load(TMDL) is used to manage the total amount of pollutant from various sources, and the annual average load of source is calculated by the unit load method. Determination of the unit load requires reliable data accumulation and analysis based on a reasonable estimation method. In this study, we propose a revised unit load estimation method by analyzing the unit load calculation procedure of National Institute of Environment Research(NIER) method. Both methods were tested using observed runoff ratio and water quality data of rice paddy fields. The estimated values with the respective NIER and revised NIER methods were highly correlated each other. However, the Event Mean Concentration(EMC) and the runoff ratio considered in the NIER method appeared to be influenced by rainfall classes, and the difference in unit load increases as the runoff and EMC increase. The error can be further increased when the EMC and runoff ratio are changed according to changes in rainfall patterns by climate change and change of agricultural activities. Therefore, it is recommended to calculate unit load by applying the revised NIER method reflecting the non point pollution runoff characteristics for different rainfall classes.

수질모델링을 위한 유달부하량의 수리·수문학적 산정 (Estimation of Pollutant Delivery Load in Hydraulic and Hydrologic Aspects for Water Quality Modeling)

  • 김상단;송미영;김형수
    • 한국습지학회지
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    • 제6권3호
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    • pp.47-54
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    • 2004
  • 본 연구에서는 수리 수문학적인 이론을 근거로 수질모델링을 위한 유달 오염부하량 산정방법을 제안하고자 한다. 본 연구에서 제안하는 방법은 격자기반으로 구성되어 있으며, 최대 경사 방향으로 일어나는 지표면 유출을 추적함으로써 유달부하량을 계산하게 된다. 또한 GIS 및 DEM 자료를 이용함으로써 공간적으로 분포된 배출 오염부하량, 지형, 경사, 토양특성, 토지이용 등을 고려할 수 있다. 이를 통하여 수질에 영향을 미치는 다양한 토지이용방법 및 유역관리방식의 대안에 대한 평가가 가능할 것으로 기대된다.

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