참고문헌
- 강석구 (2003). 유한체적법을 이용한 2차원 홍수범람 모형의 개발. 석사학위논문, 한양대학교, pp. 5-19
- 김성준 (1998). "격자기반의 운동파 강우유출모형 개발(I)-이론 및 모형-." 한국수자원학회 논문집, 한국수자원학회, 제31권, 제3호. pp. 303-308
- 김경탁 (1998). GIS 적용에 따른 유출응답에 관한 연구. 박사학위논문, 인하대학교, pp. 94-98
- 김경탁 (2003). "정밀토양도를 이용한 CN 산정에 대한 제안." 한국수자원학회지, 한국수자원학회, Vol. 36, No. 4, pp. 45-53
- 노성진, 김현준, 장철희 (2005). "청계천 유역에 대한 WEP 모형의 적용." 한국수자원학회 논문집, 한국수자원학회, 제38권, 제8호. pp. 645-653 https://doi.org/10.3741/JKWRA.2005.38.8.645
- 농업기술연구소 (1992). 증보 한국토양총설. 토양조사자료 13. 농촌진흥청. pp. 283-290
- 박진혁, 윤지현, 정구열, 성영두 (2008). "홍수유출해석을 위한 Hydro-BEAM 모형의 개선." 2008년 한국수자원학회 학술발표회 논문집, 한국수자원학회, pp. 2179-2183
- 사공호상 (2003). "IKONOS 위성영상을 이용한 불투수지표면 분석방법에 관한 실증연구." 한국 GIS 학회지, 한국 GIS 학회, Vol. 11, No. 4, pp. 509-518
- 신사철 (1996). "분포형 강우-유출 모형에 의한 유출해석." 한국수자원학회 논문집, 한국수자원학회, 제29권, 제6호. pp. 131-139
- 이진희 (1996). 유한체적법에 의한 개수로에서의 2차원 부정류 해석. 인하대학교, 석사학위논문. pp. 11-27
- 최진규, 손재권 (1992). "유한요소법에 의한 소유역 유출모형의 적용." 한국수문학회지, 한국수문학회, 제 25권, 제3호. pp. 97-104
- 최현상 (2001). GIS와 불확실도 해석기법을 이용한 분포형 강우-유출 모형의 개발. 박사학위논문, 경북대학교, pp. 31-39
- 한국건설기술연구원 (1995). 이차원 하천모형의 개발(I), KICT/95-WR-1103-1, pp. 73-91
- 한국건설기술연구원 (1996). 이차원 하천모형의 개발(II), 건기연 96-055, pp. 95-104
- 한국건설기술연구원 (2007). HyGIS 개발. 과학기술부. pp. 11-63
- 홍준범, 김병식, 윤석영 (2006). "VfloTM 모형을 이용한 물리기반의 분포형 수문모형의 정확성 평가." 대한토목학회 논문집, 대한토목학회, 제26권, 제6B호. pp. 613-622
- 土木硏究所 (2002). WEP モデル 解說書, 土木硏究所, pp. 3-22
- Abbott, M.B., Bathurst, J.C, Cunge, J.A., O'Connell, P.E., and Rasmussen, J. (1986). "An introduction to the European Hydrological System - Systeme Hydrologique Europeen, "SHE", 2:Structure of a physically-based, distributed modelling system." Journal of Hydrology, Vol. 87, pp. 61-77 https://doi.org/10.1016/0022-1694(86)90115-0
- Beven, K. (1981). "Kinematic subsurface stormflow." Water Resources Research, Vol. 17, No. 5, pp. 1419-1424 https://doi.org/10.1029/WR017i005p01419
- Chaudhry, M.H. (1993). Open-channel flow. Prentice-Hall, pp. 82-86
- Chow, V.T. (1959). Open-channel hydraulics. McGraw-Hill, pp. 101-123
- Chow, V.T., Maidment, D.R., and Mays, L.W. (1988). Applied hydrology. McGraw-Hill, pp. 110-147
- Goodrich, D.C., Woolhiser, D.A, and Keefer, T.O. (1991). "Kinematic routing using finite elements on a triangular irregular network." Water Resources Research, Vol. 27, No. 6, pp. 995-1003 https://doi.org/10.1029/91WR00224
- Jain, M.K., Kothyari, U.C., and Ranga Raju, K.G. (2004). "A GIS based distributed rainfall-runoff model." Journal of Hydrology, Vol. 299, pp. 107-135 https://doi.org/10.1016/j.jhydrol.2004.04.024
- Julien, P.Y., Saghafian, B., and Ogden, F.L. (2004). "Raster-based hydrologic modeling of spatiallyvaried surface runoff." Water Resources Bulletin, Vol. 32, No. 3, pp. 523-536
- Nawahda, A., Kojiri, T., and Ikebuchi, S. (2004). "Distributed runoff model linking surface with groundwater processes." Annuals of Disas. Prev. Res. Inst., Kyoto Univ., No. 47C
- O'Callaghan, J.F. and Mark D.M. (1984). "The extraction of drainage networks from digital elevation data." Computer vision, graphics, and image processing, Vol. 28, pp. 324-344
- Ogden, F.L. (1997). CASC2D Reference manual, Univ. of Connecticut. pp. 20-32
- Patankar, S.V. (1980). Numerical heat transfer and fluid flow. Hemisphere Publishing Corporation. pp. 42-66
- SFWMD(South Florida Water Management District). (2005). Regional Simulation Model (RSM)-Theory manual, South Florida Water Management District Office of Modeling. pp. 26-32
- Vieux, B.E., Bralts, V.F., Segerling, L.J., and Wallace, R.B. (1990). "Finite element watershed Modeling: one-dimensional elements." Journal of Water Resources Planning and Management, ASCE, Vol. 116, No. 6, pp. 803-819 https://doi.org/10.1061/(ASCE)0733-9496(1990)116:6(803)
-
Vieux, B.E. and Vieux, J.E. (2002). "
$Vflo^{TM}$ : A real time distributed hydrologic model." Proceedings of the Second Federal Interagency Hydrologic Modeling Conference, Las Vegas, Nevada - Vieux, B.E. and Vieux, J.E. (2003). "Operational deployment of physics-based distributed rainfallrunoff model for flood forecasting in Taiwan." Proceedings of International Symposium on Information from Weather Radar and Distrubuted Hydrologic Modeling, IAHS, Sapporo, Japan
- Vieux, B.E.(2004). Distributed hydrologic modeling using GIS. Kluwer Academic Publishers
- Zhao, D.H., Shen, H.W., Tobios III, G.Q, Lai, J.S., and Tan, W.Y. (1994). "Finite-volume twodimensional unsteady-flow model for river basins." Journal of Hydraulic Engineering, ASCE, Vol. 120, No. 7, pp. 863-883 https://doi.org/10.1061/(ASCE)0733-9429(1994)120:7(863)
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