• 제목/요약/키워드: waste load allocation model

검색결과 4건 처리시간 0.023초

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.

인천해안의 수질관리를 위한 오염부하량 할당에 관한 연구 (A Waste Load Allocation Study for Water Quality Management of the Incheon Coastal Environment)

  • 김소연;최정현;나은혜;박석순
    • 대한환경공학회지
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    • 제27권1호
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    • pp.43-51
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    • 2005
  • 본 논문은 인천 해안에서 AQUASEA 모델을 적용한 오염부하량 할당 연구를 제시한다. 인천 해안의 복잡한 지형을 표현하기 위하여 유한요소격자망을 구성하였으며, 인천 해안 경계 지역의 13개 지점의 조위와 한강 유량이 조석조위 시뮬레이션을 위한 입력 조건으로 주어졌다. 또한, 해안으로 유입되는 모든 오염원의 부하량이 수질 시뮬레이션 입력 조건으로 주어졌다. 시뮬레이션된 변수는 조류와 화학적 산소요구량이며, 실측값을 이용하여 보정 및 검증되었다. 모델 결과는 대부분의 측정 지점에서 실측값과 적절한 일치를 이루었다. 시스템 분석 결과 한강에서 유입되는 오염물질은 염화수로에서부터 영흥도 북쪽 해역까지 수질에 영향을 미치며, 인천시에서 배출되는 오염물질은 영종도 아래에서부터 자월도 위쪽 해역까지 수질에 영향을 미치는 것으로 나타났다. 또한 시화호에서 방류되는 물은 배출 수문에서부터 인천항까지의 수질에 영향을 보이며, 경기도 연안에서 배출되는 오염물질은 오이도 부근 해역의 수질에 영향을 미치는 것으로 나타났다. 타당성이 검증된 모델의 오염부하량 분석을 통하여 효과적인 수질관리대책을 수립하였으며, 여기서 인천 해안의 수질기준치를 유지하면서 허용될 수 있는 오염부하량을 제시하였다.

오염총량관리를 위한 의사결정 지원시스템 적용 (Application of a Decision Support System for Total Maximum Daily Loads)

  • 이혜영;박석순
    • 한국물환경학회지
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    • 제20권2호
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    • pp.151-156
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    • 2004
  • A decision support system, Watershed Analysis Risk Management Framework(WARMF), was applied to the Kyungan Stream watershed, a tributary of Lake Paldang, for calculation of total maximum daily loads(TMDL). The WARMF system was developed by Systech Engineering, USA, and has been successfully used in several watersheds, for TMDL studies. The study area was divided into 14 sub-basins, based on digital elevation model(DEM). The integrated watershed and stream model of WARMF was validated by flow and BOD data measured during the year of 1999. There were reasonable agreements between model results and field data, both in water flow and BOD. The validated Kyungan WARMF was extensively utilized to study the quantitative relationship between waste loads and receiving water quality. Based on TMDL guideline at Paldang Lake and Kyungan Stream, the water quality criterion were set to be 3.0mg/L, 3.5mg/L, and 4.0mg/L at the watershed outlet. The allowable waste loads of BOD, both from point and non-point sources, were determined at each water quality criterion. From this study, it was concluded that the WARMF provided several advantages over the conventional application of watershed and stream models for TMDL study, such as time variable simulations, multiple possible soutions, and reduction loads for goal water quality, etc.

금강수계의 수질관리를 위한 QUAL-2E 모델의 적용(II) -자생BOD를 고려한 허용오염부하량 산정- (Application of QUAL-2E Model for Water Quality Management in the Keum River -Waste loads Allocation Analysis by Considering Autochthonous BOD-)

  • 김종구;이지연
    • 한국환경과학회지
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    • 제10권1호
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    • pp.21-25
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    • 2001
  • The Keum river has been utilized for drinking water supply of several city including Kunsan city and is deepening pollution state due to numerous municipal and industrial discharges. The concentration BOD in river is affected by the organic loading from a tributary and the algae biomass that largely happen to under eutrophication state. In the eutrophic water mass such as the Keum river, the autochthonous BOD was very important part for making a decision of water quality management, because it was accounted for majority of the total BOD. The predict of water quality has important meaning for management of water quality pollution of the Keum river. The purpose of this study will manage and predict water quality of the Keum river using QUAL-2E model considering the autochthonous BOD. The estimation of autochthonous BOD represented that the relationship between BOD and chlorophyll a. The regression equation was shown to be autochthonous BOD=$\beta$(sub)5$\times$chlorophyll a. The results of this study may be summarized as followed; The QUAL-2E model was calibrated with the data surveyed in the field of the study area in June, 1998. The calculated value by QUAL-2E model are in good agree to measured value within relative error of 7.80~20.33%. Especially, in the case of the considering autochthonous BOD, the calculated value of BOD were fairly good coincided with the observed values within relative error of 15%. But the case of not considering autochthonous BOD, relative error of BOD was shown to be 43.2%. In order to attain II grade of water quality standard in Puyo station which has a intake facility of water supply, we reduced to the pollutants loading of tributaries. In the case of removed 100% BOD of tributaries, the BOD of Puyo station was 4.07mg/$\ell$, belong to III grade of water quality standard. But in the case of removed 88% nutrient of tributaries, it was satisfied to II grade of water quality standard as below 3mg/$\ell$ of BOD. For estimation of autochthonous BOD in Keum river, we are performed simulating in accordance with reduction of nutrient load(50~100%) under conditions removal 90% organic load. Occupancy of autochthonous BOD according to nutrient loading reductions were varied from 25.97~79.51%. Occupancy of autochthonous BOD was shown to be a tendency to increasing in accordance with reduction of nutrient loading. Showing the above results, the nutrient that one of the growing factor of algae was important role in decision of BOD in the Keum river. For the water quality management of the Keum river, therefore, it is necessary to considering autochthonous BOD and to construction of advanced sewage treatment plant for nutrient removal.

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