Books on the topic 'Hydrodynamics and hydraulic engineering'

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1

Hydrosoft 92 (1992 Valencia, Spain). Hydraulic engineering software IV. Edited by Blain W. R. 1952-, Cabrera E, Wessex Institute of Technology, and Universidad Politécnica de Valencia. Southampton: Computational Mechanics Publications, 1992.

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2

Entropy theory in hydraulic engineering: An introduction. Reston, Virginia: American Society of Civil Engineers, 2014.

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3

Users guide to physical modelling and experimentation: Experience of the HYDRALAB network. Leiden, The Netherlands: CRC Press/Balkema, 2011.

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4

Idelʹchik, I. E. Handbook of hydraulic resistance. Edited by Ginevskiĭ A. S. 4th ed. Redding, CT: Begell House, 2008.

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5

Chanson, Hubert. The hydraulics of open channel flow: An introduction ; basic principles, sediment motion, hydraulic modelling, design of hydraulic structures. 2nd ed. Oxford [UK]: Elsevier Butterworth Heinemann, 2004.

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6

Ocean engineering mechanics: With applications. Cambridge: Cambridge University Press, 2009.

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7

The hydraulics of open channel flow: An introduction ; basic principles, sediment motion, hydraulic modelling, design of hydraulic structures. London: Arnold, 1999.

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8

Hydrosoft 2002 (2002 Montreal, Canada). Hydraulic information management. Southampton, UK: WIT Press, 2002.

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9

Schulz, Andreas. Zur Näherungsberechnung des Abflusses in naturnah gestalteten Fliessgewässern. Berlin: Institut für Wasserbau und Wasserwirtschaft der Technischen Universität Berlin, 1987.

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10

Joanne, Drinan, ed. Water hydraulics. Lancaster, Pa: Technomic Publishing, 2001.

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11

Hydrodynamics of explosion: Experiments and models. Berlin: Springer, 2005.

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12

Hermans, A. J. Water Waves and Ship Hydrodynamics: An Introduction. 2nd ed. Dordrecht: Springer Science+Business Media B.V., 2011.

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13

Oceanographical engineering. Mineola, N.Y: Dover Publications, 2005.

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14

Phillips, Jeff V. Verification of roughness coefficients for selected natural and constructed stream channels in Arizona. Washington, DC: U.S. G.P.O., 1998.

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15

Lamb, W. S. Cavitation and aeration in hydraulic systems. Bedford, Eng: BHRA, 1987.

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16

Lamb, W. S. Cavitation and aeration in hydraulic systems. Cranfield, Bedford, England: BHRA, 1987.

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17

F, Vasilʹev O., I͡A︡nenko A. P, and Degti͡a︡rev V. V, eds. Gidrodinamicheskie prot͡s︡essy v sudopropusknykh sooruzhenii͡a︡kh. Novosibirsk: VO "Nauka", 1993.

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18

Shulʹman, S. G. Seismic pressure of water on hydraulic structures. Rotterdam: A.A. Balkema, 1987.

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19

Open-channel flow. Englewood Cliffs, N.J: Prentice-Hall, 1993.

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20

Hydraulic modelling: Principles, methods and applications. London: Spon Press, 2010.

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21

Pioro, I. L. Heat transfer and hydraulic resistance at supercritical pressures in power engineering applications. New York: ASME Press, 2007.

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22

Hauck, Larry M. Numerical modeling of hydrodynamics: Brazos Island Harbor Project, Texas (Brownsville Ship Channel). Vicksburg, Miss: US Army Corps of Engineers, Hydraulics Laboratory, 1990.

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23

Friedrichs, C. T. Hydrodynamics and morphodynamics of shallow tidal channels and intertidal flates. Woods Hole, Mass: Woods Hole Oceanographic Institution, 1993.

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24

Sinibaldi, Edoardo. Implicit preconditioned numerical schemes for the simulation of three-dimensional barotropic flows. [Pisa, Italy]: Edizioni della Normale, 2007.

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25

Grenney, William J. Advanced computer tools for roadway hydraulic and hydrologic design. [Salt Lake City, Utah]: Utah Department of Transportation and the Mountain Plains Consortium, 2000.

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26

Fuat, Şentürk, ed. Sediment transport technology: Water and sediment dynamics. Littleton, Colo., USA: Water Resources Publications, 1992.

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27

Shibakin, S. I. Nagruzki i vozdeĭstvii︠a︡ na morskie neftegazopromyslovye gidrotekhnicheskie sooruzhenii︠a︡. Moskva: Gazprom ėkspo, 2010.

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28

O'Day, C. M. Computed roughness coefficients for Skunk Creek above Interstate 17, Maricopa County, Arizona. Tucson, Ariz: U.S. Dept. of the Interior, U.S. Geological Survey, 2000.

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29

O'Day, C. M. Computed roughness coefficients for Skunk Creek above Interstate 17, Maricopa County, Arizona. Tucson, Ariz: U.S. Dept. of the Interior, U.S. Geological Survey, 2000.

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30

Arcement, George J. Guide for selecting Manning's roughness coefficients for natural channels and flood plains. Washington, DC: Dept. of the Interior, 1989.

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31

O'Day, C. M. Computed roughness coefficients for Skunk Creek above Interstate 17, Maricopa County, Arizona. Tucson, Ariz: U.S. Dept. of the Interior, U.S. Geological Survey, 2000.

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32

Arcement, George J. Guide for selecting Manning's roughness co-efficients for natural channels and flood plains. [Reston, Va.?]: Dept. of the Interior, U.S. Geological Survey, 1989.

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33

Arcement, George J. Guide for selecting Manning's roughness coefficients for natural channels and flood plains. Washington: U.S. G.P.O., 1989.

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34

H, Barr D. I., and HR Wallingford (Firm), eds. Tables for the hydraulic design of pipes, sewers and channels. 8th ed. London: Thomas Telford, 2006.

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35

Coon, William F. Estimates of roughness coefficients for selected natural stream channels with vegetated banks in New York. Ithaca, N.Y: U.S. Geological Survey, 1995.

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36

Şentürk, Fuat. Sediment transport technology: Water and sediment dynamics : solutions manual. Littleton, Colo: Water Resources Publications, 1992.

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37

Coon, William F. Estimates of roughness coefficients for selected natural stream channels with vegetated banks in New York. Ithaca, N.Y: U.S. Dept. of the Interior, U.S. Geological Survey, 1995.

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38

Coon, William F. Estimation of roughness coefficients for natural stream channels with vegetated banks. Denver, CO: U.S. Geological Survey, 1998.

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39

H, Barr D. I., and HR Wallingford (Firm), eds. Tables for the hydraulic design of pipes, sewers and channels. 6th ed. London: T. Telford, 1994.

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40

Parchure, T. M. High-accuracy flow rate measurement for water supply and dredged slurry transport pipelines. Vicksburg, Miss: U.S. Army Engineer Waterways Experiment Station, 1997.

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41

Vreugdenhil, C. B. Numerical Methods for Shallow-Water Flow. Dordrecht: Springer Netherlands, 1994.

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42

Salinity and tides in alluvial estuaries. Amsterdam: Elsevier, 2005.

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43

Yaglom, Akiva M. Hydrodynamic Instability and Transition to Turbulence. Dordrecht: Springer Netherlands, 2012.

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44

1952-, Blain W. R., Wessex Institute of Technology, and Hydrosoft 96 (1996 : Pinang), eds. Hydraulic engineering software VI. Southampton: Computational Mechanics Publications, 1996.

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45

Hydraulic engineering software V. Southampton: Computational Mechanics Publications, 1994.

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46

Hydraulic engineering software VIII. Southampton, UK: WIT Press, 2000.

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47

Knyazeva, Svetlana Yu, and Valery K. Kedrinskiy. Hydrodynamics of Explosion: Experiments and Models. Springer London, Limited, 2005.

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48

Knyazeva, Svetlana Yu, and V. K. Kedrinskii. Hydrodynamics of Explosion: Experiments and Models. Springer Berlin / Heidelberg, 2010.

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49

Frostick, Lynne Elizabeth, T. G. Mercer, and Stuart J. McLelland. Users Guide to Physical Modelling and Experimentation: Experience of the HYDRALAB Network. Taylor & Francis Group, 2011.

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50

Blain, W. R. Hydraulic Engineering Software VII (Water Studies Vol 4). Computational Mechanics, Inc., 1998.

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