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2010 | 29 | 3 |
Tytuł artykułu

Response of the Danube River floodplain to flood events during 2002-2007 period

Treść / Zawartość
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
Wydawca
-
Rocznik
Tom
29
Numer
3
Opis fizyczny
p.37-45,fig.,ref.
Twórcy
autor
  • Institute of Geography, Slovak Academy of Sciences, Stefanikova 49, 814 73, Bratislava, Slovak Republic
autor
Bibliografia
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  • Baas J.H., 1994. A flume study on the development and equilibrium morphology of current ripples in very fine sand. Sedimentology 41(2): 185-209.
  • Baba J. & Komar P.D., 1981. Measurement and analysis of settling velocities of natural quartz sand grain. Journal of Sedimentary Petrology/Journal of Sedimentary Research 51(2): 631-640.
  • Blott S.J. & Pye K., 2001. GRADISTAT: a grain size distribution and statistics package for the analysis of uncon- solidated sediments. Earth Surface Processes and Landforms 26(11): 1237-1248.
  • Bouma A.H., 1962. Sedimentology of Some Flysch Deposits, A Graphic Approach to Facies Interpretation. Amsterdam, Elsevier: 168 pp.
  • Braithwaite C.J.R., 1973. Settling behaviour related to sieve analysis of skeletal sands. Sedimentology 20(2): 251-262.
  • Bridge J.S., 2003. Rivers and floodplains, Form, Processes and Sedimentary Record. Oxford, Blackwell Publishing Company: 486 pp.
  • Brierley G.J., 1991. Floodplain sedimentology of the Squamish River, British Columbia: relevance of element analysis. Sedimentology 38(4): 735-750.
  • Cheng N.S., 1997. Simplified settling velocity formula for sediment particle. Journal of Hydraulic Engineering 123(2): 149-152.
  • Chien N. & Wan Z., 1983. Mechanics of Sediment Motion (in Chinese). Beijing, Science Press.
  • Chiew Y.M., 1991. Bed features in nonuniform sediments. Journal of Hydraulic Engineering 117(1): 116-120.
  • Ciupa T., 1991. Współczesny transport fluwialny w zlewni Białej Nidy. Kielce: Wydawnictwo Wyżej Szkoły Pedagogicznej im. Jana Kochanowskiego: 156 pp.
  • Costa J.E., 1983. Paleohydraulic reconstructions of flash- flood peaks from boulder deposits in the Colorado Front Range. Geological Society of America Bulletin 94(8): 9861004.
  • Farrell K.M., 2001. Geomorphology, facies architecture, and high-resolution, non-marine sequence stratigraphy in avulsion deposits. Cumberland Marshes, Saskatchewan. Sedimentary Geology 139(2): 93-150.
  • Ferguson R.I. & Church M., 2004. A simple universal equation for grain settling velocity. Journal of Sedimentary Research 74(6): 933-937.
  • Folk R.L & Ward W.C., 1957. Brazos River bar [Texas]; a study in the significance of grain size parameters. Journal of Sedimentary Petrology/Journal of Sedimentary Research 27(1): 3-26.
  • Friedman G.M & Sanders J.E., 1978. Principles of Sedimentol- ogy. New York, Wiley: 792 pp.
  • Hjulström F., 1935. Studies of the morphological activity of rivers as illustrated by the river Fyris. University of Uppsala Geological Institute Bulletin 25: 221-557.
  • Klimek K., 1974. The structure and mode of sedimentation of the flood-plane deposits in the Wisłoka valley (South Poland). Studia Geomorphologica Carpatho-Balcanica 8: 136-151.
  • Koster E.H., 1978. Transverse ribs: their characteristics, origin, and paleohydrologic significance. In Miall A.D. (ed.) Fluvial sedimentology. Canadian Society of Petroleum Geologists Memoir 5: 161-186.
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  • Mansfield G.R., 1938. Flood deposit of Ohio River January - February 1937 - a study of sedimentation. U.S. Geological Survey Water-Supply Paper 838: 693-733.
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  • Miall A.D., 1996. The Geology of Fluvial Deposits. Berlin - Heidelberg - New York, Springer-Verlag: 582 pp.
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  • Morris W.J., 1957. Effects of sphericity, roundness, and velocity on traction transportation of sand grains. Journal of Sedimentary Petrology/Journal of Sedimentary Research 27(1): 27-31.
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  • Poole D.M., 1957. Size analysis of sand by a sedimentation technique. Journal of Sedimentary Petrology/Journal of Sedimentary Research 27(4): 460-468.
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  • Sundborg A., 1967. Some Aspects on Fluvial Sediments and Fluvial Morphology I. General Views and Graphic Methods. Geografiska Annaler, Series A, Physical Geography 49A(2-4 Landscape and Processes: Essays in Geomorphology): 333-343.
  • Svoboda A., Pekárová P. & Miklánek P., 2000. Flood hydrology of Danube between Devin and Nagymaros. Bratislava: Institute of Hydrology SAS: 96 pp.
  • Szmańda J.B., 1998. Aluwia wybranych obszarów równin zalewowych Drwęcy i Tążyny w świetle analiz teksturalnych. In Pękala K. (ed.) Główne kierunki badań geomorfologicznych w Polsce stan aktualny i perspektywy. Referaty i komunikaty, IV Zjazd Geomorfologów Polskich. Lublin: Wyd. UMCS: 185-190.
  • Szmańda J.B., 2004. Znaczenie materiału źródłowego i transportu ziaren w akumulacji powodziowej - studium przypadku - aluwia pozakorytowe Wisły, Drwęcy i Tążyny. Prace Geograficzne 200: 355-372.
  • Szmańda J.B., 2006. Rytmika powodziowa w aluwiach pozakorytowych Wisły, Drwęcy i Tążyny. [Flood rhytmicity in the Vistula, Drwęca and Tążyna rivers valley overbank deposits]. Dokumentacja Geograficzna (Instytut Geografii i Przestrzennego Zagospodarowania, Polska Akademia Nauk) 32: 266-270.
  • Udden J.A., 1914. Mechanical composition of clastic sediments. Geological Society of America Bulletin 25: 655-744.
  • Wang S., Li J. & Yin S., 2000. Basic characteristics and controlling factors of anastomosing fluvial systems. Chinese Geographical Science 10(1): 30-37.
  • Wentworth C.K., 1922. A Scale of Grade and Class Terms for Clastic Sediments. The Journal of Geology 30(5): 377-392.
  • Williams G.P., 1983. Paleohydrological Methods and Some Examples from Swedish Fluvial Environments. I. Cobble and Boulder Deposits. Geografiska Annaler. Series A, Physical Geography 65A(3-4): 227-243.
  • Zwoliński Z., 1992. Sedimentology and geomorphology of overbank flows on meandering river floodplains. Geomorphology 4(6): 367-379.
Typ dokumentu
Bibliografia
Identyfikatory
Identyfikator YADDA
bwmeta1.element.agro-36f30ee8-46b7-4d49-966c-d9c048a8fcd9
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