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de Jong B (1983) The formation of dunes in open channel flow on an initially flattened erodible
bed. In: Proceedings of the Euromech 156 - Mechanics of sediment transport, Istanbul, 12-14
July 1982, pp 119-126
de Jong B (1989) Bed waves generated by internal waves in alluvial channels. J Hydraul Eng
ASCE 115(6):801-817
de la Beche HT (1851) The geological observer. Longman, Brown, Green and Longmans, London
Deacon GF (1894) Discussion of paper on 'Estuaries' by HL Partiot. Proc Inst Civil Eng
CXVIII:47-189
El Sammak R (2006) Interactive instrumentation for civil engineering flume. In: Year 4 research
projects. Department of Electrical and Computer Engineering, The University of Auckland,
Auckland, New Zealand, 10 pp
Engelund FA (1970) Instability of erodible beds. J Fluid Mech 42:225-244
Engelund F, Fredsøe J (1982) Sediment ripples and dunes. Annu Rev Fluid Mech 14:13-37
Fernandez R, Best J, L ´ pez F (2006) Mean flow, turbulence structure, and bed form superimposition
across the ripple-dune transition. Water Resour Res 42:W05406. doi: 10.1029/2005 WR004330
Forchheimer P (1914) Hydraulik. Teubner Verlagsgesellschaft, Leipzig, Berlin (in German)
Forel FA (1883) Les rides de fond ´ tudi ´ s dans le Lac Leman. Arch Sci Phys Nat 10(3):39-72
Fredsøe J (1974) On the development of dunes in erodible channels. J Fluid Mech 64(1):1-16
Fuhrboter A (1983) Zur Bildung von makroskopischen Ordnungsstrukturen (Stromungsriffel und
Dunen) aus sehr kleinen Zufallsstorungen. Mitteilungen des Leichtweiss-Instituts, vol 79.
Technical University of Braunschweig Braunschweig, Germany, pp 1-51 (in German)
Gilbert GK (1914) The transportation of d ´ bris by running water. US Geological Survey Profes-
sional Paper 86, Government Printing Office, Washington, DC
Goring D, Nikora V, McEwan I (1999) Analysis of the texture of gravel beds using 2-D structure
functions. In: River, coastal, and estuarine morphodynamics, Proceedings of the IAHR sym-
posium 2, Geneva, Italy, pp 111-120
Gradowczyk MH (1970) Wave propagation and boundary instability in erodible-bed channels.
J Fluid Mech 33:93-112
Graf WH (1984) Hydraulics of sediment transport. Water Resources Publications, Littleton
Gray C, Greated CA, McCluskey DR, Easson WJ (1991) An analysis of the scanning beam PIV
illumination system. Meas Sci Technol 2:717-724
Guy HP, Simons DB, Richardson EV (1966) Summary of alluvial channel data from flume
experiments, 1956-61. U.S. Geological Survey Professional Paper 462-1, Government Print-
ing Office, Washington, DC
Gyr A, Kinzelbach W (2004) Bed forms in turbulent channel flow. Appl Mech Rev 57(1):77-93
Gyr A, Schmid A (1989) The different ripple formation mechanism. J Hydraul Res 27(1):61-74
Haque MI, Mahmood K (1985) Analytical study on steepness of ripples and dunes. J Hydraul Eng
ASCE 112(3):220-236
Henning M, Hentschel B, Husener T (2009) Photogrammetric system for measurement and analy-
sis of dune movement. In: Proceedings of the 33rd IAHR congress, Vancouver, Canada, 8 pp
Hesselink L (1988) Digital image processing in flow visualization. Annu Rev Fluid Mech
20:421-485
Hunt AR (1882) On the formation of ripplemark. Proc R Soc Lon 34:1-18
Ibrahim H (2006) Interactive instrumentation for a civil engineering flume. In: Year 4 research
projects. Department of Electrical and Computer Engineering, The University of Auckland,
Auckland, New Zealand, 10 pp
Inglis CC (1949) The behaviour and control of rivers and canals (with the aid of models). Research
Publication No. 13, Central Waterpower Irrigation and Navigation Research Station, Poona,
India
Ismail HM (1952) Turbulent transfer mechanism and suspended sediment in closed channels.
Trans ASCE 117:409-434
Jackson RG (1976) Sedimentological and fluid-dynamic implications of the turbulent bursting
phenomenon in geophysical flows. J Fluid Mech 77:531-560
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