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Application of Modified-WASP5 for Daecheong Dam Watershed Management  

Kim, Jinho (Div. of Enviro. & Eco., Nat'l Inst. of Agri. Sci. & Tech., Rural Development Administration)
Shin, Dongsuk (Water Pollution Cap System Division, National Institute of Environment Research)
Kwon, Sunkuk (Department of Landscape Architecture and Rural System Engineering, Seoul National University)
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Abstract
The objective of this study was to develop and apply a water quality simulation model for the evaluation of ungaged watershed. The Modified WASP5 consisted of three sub-models, LOAD-M, DYN-M, and EUT-M. LOAD-M, an empirical model, estimates runoff loadings using point and non-point source data of villages. Daecheong Dam watershed was selected for the research to calibrate, verify and application of Modified-WASP5. LOAD-M model was established using field data collected from all items of water quality and water quantity gaging stations of the watersheds, and was applied to the ungauged watersheds, taking the watershed properties under consideration. The result of water quality simulation using ModifiedWASP5 shows that the observed BOD data of Yongpo and Daechong Dam in 1999 were 0.8 mg/L and 1.0 mg/L, and simulated data were 0.9 mg/L and 0.9 mg/L, respectively. In case of 1999, average BOD concentrations were 0.8 mg/L and 1.0 mg/L. Simulated concentration showed 1.1 mg/L and 1.5 mg/L, respectively. Generally, the simulation results were in good agreement with the observed data. This study was focused on formulating an integrated model for evaluating ungauged watersheds. Even though simulation results varied slightly due to limited availability of data, the model developed in this study would be a useful tool for the assessment and management of ungauged watersheds.
Keywords
Modelling; Modified-WASP5; Pollutant load; Watershed management;
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연도 인용수 순위
1 기상청(1997, 1998, 1999). 기상월보
2 김원만(1990). 팔당호 시험준설 영향조사보고서. 한국수질보 전학회, 환경처
3 엄명철(1996). 수질의 일유출 부하량에 관한 연구. 석사학위 논문, 서울대학교
4 환경부(1998b). 팔당호등 한강수계 상수원 수질관리 특별종 합대책 : 맑은 한강-새천년의 대계-, 환경부 수질정책과
5 Simachaya, W. (1999). Integrated approaches to water quality management using GIS and the WASP5 simulation model - application to the Chin River Basin, Thailand -. Ph.D. Thesis, The University of Guelph, Canada
6 Warwick, J. J., Cockrum, D., and Horvath, M. (1997). Estimating nonpoint source loads and associated water quality impacts. J. of Water Resources Planning and Management, 123(5), pp. 302-310   DOI   ScienceOn
7 Benamen, J., Amstrong, N. E., and Maidment, D. R. (1996). Modeling of DO in the Houston Ship Channel using WASP5 and GIS, The University of Texas at Austin
8 환경부(1999c). 금강권역 수질정책지원시스템을 이용한 수 질관리모델링 결과보고서
9 환경부(2000). 전국 오염원 조사 및 DB 구축, 국립환경연구원
10 최지용, 박원규, 박용화, 한화진(1995). 비점오염원 조사연구 사업 보고서. 한국환경기술개발원
11 SYSTAT (1984). The System for Statistics, SYSTAT Inc
12 황인성(1991). 생태학적 모형을 이용한 팔당호의 수질 분석 과 모형의 감응도 분석. 석사학위논문, 서울대학교
13 권순국(1998). 우리나라 비점원 수질오염 관리의 문제점과 개선방안. 대한환경공학회지, 20(11), pp. 1497-1510
14 환경부(1999b). 오염총량관리계획수립지침, 환경부고시 제 1999-143호
15 건설부(1997, 1998, 1999). 유량연보
16 공동수(1992). 팔당호의 육수생태학적 연구. 박사학위논문, 고려대학교
17 신동석, 권순국(1999). 수리모형을 이용한 팔당호의 유속분 포 모의시험. 한국환경농학회지, 18(1), pp. 18-23
18 조홍연, 전경수, 이길성(1993). WASP4모형에 의한 수질모델 링. 한국해안.해양공학회지, 5(3), pp. 221-231
19 김종오, 유환희, 김옥선, 박증석(1999). ARIMA 모형을 이용 한 진양호 수질의 장래예측. 한국습지학회지, 1, pp. 17-28
20 최종오(1995). 낙동강수계의 유기물 수지와 식물플랑크톤의 일차생산에 의한 내부생성부하량의 기여도. 석사학위논 문, 강원대학교
21 Chen, C. L., Gomez, L. E., Chen, C. W., Wu, C. M., Lin, J. J., and Cheng, I. L. (1995). An integrated watershed management model with GIS and windows application. The International Symposium on Water Quality Modeling, The Society for Engineering in Agricultural Food and Biological System, Orlando, Florida, pp. 242-250
22 신동석, 류재근(1999). RMA모형을 이용한 팔당호 수질의 예측(I). 한국물환경학회지, 15(1), pp. 99-105
23 한국수자원공사(1997, 1998, 1999). 수문자료집
24 환경부(1997, 1998a, 1999a). 환경연감
25 김준현, 이윤석, 이영한(1995). 환경관리 및 분석 : 팔당호 수질 관리 모형의 개발(III)- 상류가중유한요소법을 이용 한 다차원 부영양화 모형의 개발 및 검증-. 춘계학술연 구발표회 논문집, 대한환경공학회, pp. 419-423
26 이준배(2002). 대청호유역 오염부하량 산정과 평가모델. 박 사학위논문, 충남대학교
27 Ambrose, R. B., Wool, T. A., and Martin, J. L. (1993). WASP5, A hydrodynamic and water quality model-Model Theory, User's Manual and Programmer's Guide. Environmental Research Lab., Office of Research and Development, Athens, Georgia. U.S.A
28 서울시정개발연구원(1994). 한강본류 수질관리 효율화 방안 연구
29 Beasley, D. B, Huggins, L. F., and Monke, E. J. (1980). ANSWERS : A Model for Watershed Planning. Trans. of ASAE, 23(4), pp. 938-944   DOI
30 Depinto, J. V., Lin, H., Guan, W., Atkinson, J. F., Densham, P. J., Calkins, H. W., and Rodgers, P. W. (1994). Development of GEO-WAMS: An approach to the integration of GIS and Great Lakes Watershed analysis models. Special issue of Microcomputers in Civil Engineering, 9, pp. 251-262   DOI
31 Park, K. (1993). A model study of hydrodynamic and water quality characteristics of the Rappahanock Eatuary. Virginia, Ph. D. Thesis, The College of William & Mary, VA
32 권순국, 이근후, 김선주, 이순혁, 김태철, 최예환, 서승덕, 최 진규, 윤광식(2000). 신고 응용수문학, 향문사
33 Karina, T. L. I. (1996). Feasibility of modeling phosphorus dynamics in storm water wetlands. M. Sc. Thesis, The University of Guelph, Canada