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1

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

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2

IAHS International Commission on Continental Erosion. Symposium. Sediment dynamics in changing environments. IAHS Press, 2008.

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3

IAHS International Commission on Continental Erosion. Symposium. Sediment dynamics in changing environments. IAHS Press, 2008.

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4

IAHS International Commission on Continental Erosion. Symposium. Sediment dynamics in changing environments. IAHS Press, 2008.

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5

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

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6

Macdonald, Anne. Sediment dynamics in type 4 and 5 waters: A review and synthesis. PTI Environmental Services, 1989.

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7

Environmental and Water Resources Institute (U.S.). Task Committee on Sediment Dynamics Post-Dam Removal, ed. Sediment dynamics upon dam removal. American Society of Civil Engineers, 2011.

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8

Wu, Weiming. Computational river dynamics. Taylor & Francis, 2008.

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9

Bull, Louise Johanne. Dynamics of fluvial suspended sediment transport and river bank sediment supply. University of Birmingham, 1996.

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10

Workshop, on Cohesive Sediment Dynamics with Special Reference to Physical Processes in Estuaries (1984 Tampa Fla ). Estuarine cohesive sediment dynamics: Proceedings of a workshop on cohesive sediment dynamics with special reference to physical processes in estuaries, Tampa, Florida, November 12-14, 1984. Springer-Verlag, 1986.

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11

J, Mienert, and Weaver P. P. E, eds. European margin sediment dynamics: Side-scan sonar and seismic images. Springer, 2003.

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12

Medine, A. J. Fate and transport of sediment-associated contaminants. Environmental Research Laboratory, Office of Research and Development, U.S. Environmental Protection Agency, 1989.

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13

Mercier, Richard S. The reactive transport of suspended particles: Mechanisms and modeling. Woods Hole Oceanographic Institution, 1985.

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14

Wegner, Carolyn. Sediment transport on Arctic shelves: Seasonal variations in suspended particulate matter dynamics on the Laptev Sea shelf (Siberian Arctic) = Sedimenttransport auf arktischen Schelfen : Jahreszeitliche Schwankungen in der Schwebstoffdynamik auf dem Laptev-See-Schelf (sibirische Arktis). Alfred-Wegener-Institut für Polar- und Meeresforschung, 2003.

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15

Horton, Joanne K. Flow and bedform dynamics of a bimodal sand-gravel mixture. National Sedimentation Laboratory, Channel and Watershed Processes Research Unit, 2002.

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16

MacDonald, Anne. Sediment dynamics in type 4 and 5 waters: A review and synthesis. PTI Environmental Services, 1989.

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17

Kleijwegt, Rob A. On sediment transport in circular sewers with non-cohesive deposits. Faculty of Civil Engineering, Delft University of Technology, 1992.

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18

Rachlewicz, Grzegorz, Achim A. Beylich, Armelle Decaulne, and Scott F. Lamoureux. Sediment budgets in cold environments: Sedimentary fluxes dynamics in the changing mountain and polar environment: monitoring, record & consequences. Borntraeger, 2013.

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19

Schwartz, Robert K. Sedimentologic architecture of the shoreface prism, relationship to profile dynamics, and relevance to engineering concerns: Duck, North Carolina. U.S. Army Engineer Waterways Experiment Station, 1997.

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20

P, Billi, ed. Dynamics of gravel-bed rivers. Wiley, 1992.

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21

Oltman-Shay, Joan. Infragravity energy and its implications in nearshore sediment transport and sandbar dynamics. U.S. Army Engineer Waterways Experiment Station, 1989.

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22

Oltman-Shay, Joan. Infragravity energy and its implications in nearshore sediment transport and sandbar dynamics. U.S. Army Engineer Waterways Experiment Station, 1989.

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23

editor, Xu Y. Jun, Allison, Mead A. (Mead Ashton), editor, Bentley Samuel J. editor, et al., eds. Sediment dynamics from the summit to the sea: Proceedings of ICCE2014, New Orleans, USA, December 2014. International Association of Hydrological Sciences, 2014.

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24

E, Lawson Daniel, United States. Army. Corps of Engineers., and Cold Regions Research and Engineering Laboratory (U.S.), eds. Physical system dynamics and white phosphorus fate and transport, 1994, Eagle River Flats, Fort Richardson, Alaska. U.S. Army Corps of Engineers, Cold Regions Research & Engineering Laboratory, 1996.

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25

Shultz, David J. Nitrogen dynamics in the tidal freshwater Potomac River, Maryland and Virginia, water years 1979-81. Dept. of the Interior, U.S. Geological Survey, 1989.

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26

Shultz, David J. Nitrogen dynamics in the tidal freshwater Potomac River, Maryland and Virginia, water years 1979-81: A water-quality study of the tidal Potomac River and estuary. U.S. G.P.O., 1989.

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27

Shultz, David J. Nitrogen dynamics in the tidal freshwater Potomac River, Maryland and Virginia, water years 1979-81: A water-quality study of the tidal Potomac River and estuary. Dept. of the Interior, 1989.

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28

Shmakova, Marina. River sediments and soil erosion: methods and models. INFRA-M Academic Publishing LLC., 2025. https://doi.org/10.12737/2124906.

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The monograph presents the methodology developed by the author for assessing two—phase mass transfer in the catchment—water body system, which includes mathematical models of two-phase mass transfer in water bodies, soil erosion, models of channel and basin components of solid runoff in a river stream, sediment transport formulas, as well as solid runoff of water bodies in various applications - water turbidity, elevation changes the bottom of water bodies, including in case of adverse hydrometeorological phenomena. The monograph is a complete study that examines a wide range of issues related
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29

Fredericks, J. J. Vorticity measurements within the bottom boundary layer in the Strait of Juan De Fuca. Woods Hole Oceanographic Institution, 1998.

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30

Brazil/U.S. Workshop on Physical Oceanography (1987 Ocean Process Analysis Laboratory). Brazil/U.S. Workshop on Physical Oceanography Held on 3-6 August 1987. Ocean Process Analysis Laboratory, Institute for the Study of Earth, Oceans and Space, University of New Hampshire, 1987.

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31

Sediment Transport Dynamics. CRC Press LLC, 2023.

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32

Sediment Transport Dynamics. Taylor & Francis Group, 2023.

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33

Simon, Daryl, and Frat Senturk. Sediment Transport Technology, Water and Sediment Dynamics. Water Resources Publications, LLC, 1992.

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34

(Editor), Jürgen Mienert, and Phillip Weaver (Editor), eds. European Margin Sediment Dynamics. Springer, 2004.

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35

Wu, Weiming. Computational River Dynamics. Taylor & Francis Group, 2007.

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36

Wu, Weiming. Computational River Dynamics. Taylor & Francis Group, 2007.

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37

Winterwerp, Johan C., and C. Kranenburg. Fine Sediment Dynamics in the Marine Environment. Elsevier Science & Technology Books, 2002.

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38

Mienert, Jürgen. European Margin Sediment Dynamics: Side-Scan Sonar and Seismic Images. Springer, 2013.

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39

Mienert, Jürgen, and Phillip Weaver. European Margin Sediment Dynamics: Side-Scan Sonar and Seismic Images. Springer London, Limited, 2012.

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40

Roberts, W., R. J. S. Whitehouse, R. L. Soulsby, and H. J. Mitchener. Dynamics of Estuarine Muds. Institution of Civil Engineers, 2000.

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41

(Editor), J. C. Winterwerp, and C. Kranenburg (Editor), eds. Fine Sediment Dynamics in the Marine Environment (Proceedings in Marine Science). Elsevier Science, 2002.

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42

Computational river dynamics. Taylor & Francis, 2008.

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43

Wu, Weiming. Computational River Dynamics. Taylor & Francis Group, 2007.

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44

Wu, Weiming. Computational River Dynamics. Taylor & Francis Group, 2007.

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45

Wu, Weiming. Computational River Dynamics. Taylor & Francis Group, 2007.

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46

Computational River Dynamics. Taylor & Francis, 2007.

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47

Computational River Dynamics. CRC Press LLC, 2012.

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48

Dynamics of estuarine muds: A manual for practical applications. Thomas Telford, 2000.

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49

River processes: An introduction to fluvial dynamics. Arnold, 2003.

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50

Estuarine and Coastal Fine Sediment Dynamics, Volume 8: INTERCOH 2003 (Proceedings in Marine Science). Elsevier Science, 2006.

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