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1

G, Anderson M., and Bates Paul D, eds. Model validation: Perspectives in hydrological science. Chichester: J. Wiley, 2001.

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2

Ward, R. C. The catchwater drain experimental catchment: FORTRAN listing of a hydrological model. [Hull]: Dept. of Geography, University of Hull, 1986.

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3

Libý, Josef. Model investigations of the improvement of navigations conditions on the lower Elbe (Labe) between Střekov anf Prostřední Žleb. Prague: Výzkumný ústav vodohospodářský T.G. Masaryka, 2002.

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4

Ward, R. C. The catchwater drain experimental catchment: FORTRAN listing of a hydrological model. Hull: Department of Geography, University of Hull, 1986.

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5

T, Scott Carl, and Geological Survey (U.S.), eds. Operating manual for the U.S. Geological Survey minimonitor: Punched-paper-tape model. Stennis Space Center, Miss: Dept. of the Interior, U.S. Geological Survey, 1988.

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6

A, Matthews David. Nested model simulations of regional orographic precipition. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, Technical Service Center, 1997.

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7

A, Matthews David. Nested model simulations of regional orographic precipitation. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, Technical Service Center, 1997.

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8

Hoekstra, Arjen Y. Perspectives on water: An integrated model-based exploration of the future. Utrecht, Netherlands: International Books, 1998.

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9

Evans, Darryn Andrew. Development of a conceptual model of the soil-moisture-plant sub-system of the hydrological cycle. Birmingham: Aston University. Department of Civil Engineering, 1990., 1990.

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10

Evans, Darryn Andrew. Development of a conceptual model of the soil-moisture plant sub-system of the hydrological cycle. Birmingham: Aston University. Department of Civil Engineering, 1990.

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11

1961-, Entekhabi Dara, Eagleson Peter S, Massachusetts Institute of Technology. Dept. of Civil Engineering., and United States. National Aeronautics and Space Administration., eds. Atmospheric water vapor transport: Estimation of continental precipitation recycling and parameterization of a simple climate model. Cambridge, Mass: Dept. of Civil Engineering, School of Engineering, Massachussetts Institute of Technology, 1991.

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12

Gan han qu nei lu he liu yu shui wen mo xing: Hydrological model of inland river basin in arid land = Ganhanqu neiluhe liuyu shuiwen moxing. Beijing: Zhongguo huan jing ke xue chu ban she, 2012.

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13

Schuurmans, J. M. Hydrological now- and forecasting: Integration of operationally available remotely sensed and forecasted hydrometeorological variables into distributed hydrological models. Utrecht: Royal Dutch Geographical Society, 2008.

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14

Hydrological now- and forecasting: Integration of operationally available remotely sensed and forecasted hydrometeorological variables into distributed hydrological models. Utrecht: Royal Dutch Geographical Society, 2008.

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15

Advances in data-based approaches for hydrologic modeling and forecasting. Singapore: World Scientific, 2010.

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16

Haveren, Bruce P. Van. Hydrologic risk and return period selection for water-related projects. Springfield, VA: Denver, CO (BLM Service Center, SC-658 B, Denver, 80225-0047), 1988.

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17

Bolgov, Mikhail V., Lars Gottschalk, Irina Krasovskaia, and Robert J. Moore, eds. Hydrological Models for Environmental Management. Dordrecht: Springer Netherlands, 2002. http://dx.doi.org/10.1007/978-94-010-0470-1.

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18

V, Bolgov Mikhail, ed. Hydrological models for environment management. Dordrecht: Kluwer Academic Publishers, 2002.

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19

B, Abbott Michael, and Refsgaard Jens Christian, eds. Distributed hydrological modelling. Dordrecht: Kluwer Academic, 1996.

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20

Carver, Martin. Development and application of a peak-flow hazard model for the Fraser Basin (British Columbia). Victoria, B.C: Pacific Forestry Centre, 2009.

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21

Jia, Yanbing. Hydrologic and water quality modeling of the Lake Jesup watershed using hydrological simulation program--Fortran (HSPF). Palatka, Fla: St. Johns River Water Management District, Dept. of Water Resources, Division of Engineering, 2007.

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22

Jia, Yanbing. Hydrologic and water quality modeling of the Lake Jesup watershed using hydrological simulation program--Fortran (HSPF). Palatka, Fla: St. Johns River Water Management District, Dept. of Water Resources, Division of Engineering, 2007.

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23

Jia, Yanbing. Hydrologic and water quality modeling of the Lake Jesup watershed using hydrological simulation program--Fortran (HSPF). Palatka, Fla: St. Johns River Water Management District, Dept. of Water Resources, Division of Engineering, 2007.

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24

Schroeder, P. R. Verification of the lateral drainage component of the (HELP) model using physical models. Cincinnati, OH: U.S. Environmental Protection Agency, Hazardous Waste Engineering Research Laboratory, 1988.

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25

Bronstert, Axel, Jesus Carrera, Pavel Kabat, and Sabine Lütkemeier, eds. Coupled Models for the Hydrological Cycle. Berlin/Heidelberg: Springer-Verlag, 2005. http://dx.doi.org/10.1007/b138919.

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26

Novický, Oldřich. Hydrological design data estimation techniques. Geneva, Switzerland: World Meteorological Oganization, 1993.

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27

United States. Bureau of Reclamation. and Global Climate Change Response Program (U.S.), eds. Inventory of hydrologic models. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, 1991.

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28

Organization, World Meteorological, ed. Simulated real-time intercomparison of hydrological models. Geneva, Switzerland: World Meteorological Organization, 1992.

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29

C, Cunnane, Candela L, Hall M. J, Rockström J, Savenije H. H. G, and Muñoz Carpena Rafael, eds. I. Hydrological models for agricultural catchment management. Oxford, England: Pergamon, 1999.

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30

Organization, World Meteorological, ed. Simulated real-time intercomparison of hydrological models. Geneva, Switzerland: World Meteorological Organization, 1992.

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31

Organization, World Meteorological, ed. Simulated real-time intercomparison of hydrological models. Geneva, Switzerland: World Meteorological Organization, 1992.

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32

Wilson, Mary. Remote sensing data applications to hydrological models. [Lindsay, Ont.?: Sir Sandford Fleming College], 1998.

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33

Organization, World Meteorological, ed. Simulated real-time intercomparison of hydrological models. Geneva, Switzerland: Secretariat of the World Meteorological Organization, 1992.

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34

D, Kalma Jetse, and Sivapalan Murugesu, eds. Scale issues in hydrological modelling. Chichester: Wiley, 1995.

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35

Zhang, Jian Yun. A decision support system for water management at catchment scale based on a geographical information system. Dublin: University College Dublin, 1996.

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36

Modeling Hydrologic Change. London: Taylor and Francis, 2002.

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37

P, Singh V. Hydrologic systems. Englewood Cliffs, N.J: Prentice Hall, 1988.

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38

P, Singh V. Hydrologic systems. Englewood Cliffs, N.J: Prentice Hall, 1989.

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39

Singh, Vijay P. Hydrologic systems. Englewood Cliffs, N.J: Prentice Hall, 1989.

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40

Ward, George H. Hydrological predictands for climate-change modeling. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, Denver Office, 1996.

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41

Ward, George H. Hydrological predictands for climate-change modeling. Denver, Colo: U.S. Dept. of the Interior, Bureau of Reclamation, Denver Office, 1996.

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42

H, Lee Deborah, and Great Lakes Environmental Research Laboratory, eds. Midlakes, a coordinated hydrologic response model for the middle Great Lakes. Ann Arbor, Mich: U.S. Dept. of Commerce, National Oceanic and Atmospheric Administration, Environmental Research Laboratories, Great Lakes Environmental Research Laboratory, 1998.

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43

Engelen, G. B. Hydrological systems analysis: Methods and applications. Dordrecht: Kluwer, 1996.

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44

A, Bronstert, ed. Coupled models for the hydrological cycle: Integrating atmosphere, biosphere and pedosphere. Berlin: Springer, 2004.

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45

J, Limbrick K., ed. Assessing the potential impacts of various climate change scenarios on the hydrological regime of the River Kennet at Theale, Berkshire, South-Central England, UK: An application and evaluation of the new semi-distributed model, INCA. Reading, UK: University of Reading, 1999.

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46

Fuzzy logic and hydrological modeling. Boca Raton: Taylor & Francis, 2009.

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47

Xuewen, Guan, and Zhang Shiming active 2008, eds. Xian dai zhong chang qi shui wen yu bao fang fa ji qi ying yong: The advanced methods for mid-long term hydrological forecasting and its application. Beijing Shi: Zhongguo shui li shui dian chu ban she, 2008.

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48

Dongcai, Shu, ed. Shui wen yu bao de li lun yu shu xue mo xing. 2nd ed. Beijing Shi: Zhongguo shui li shui dian chu ban she, 2009.

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49

Pertti, Heinonen, Ziglio G, and Beken André van der, eds. Hydrological and limnological aspects of lake monitoring. Chichester: Wiley, 2000.

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50

Organization, World Meteorological, ed. Meteorological systems for hydrological purposes. Geneva, Switzerland: World Meteorological Organization, 2003.

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