PL EN


Preferencje help
Widoczny [Schowaj] Abstrakt
Liczba wyników
Tytuł artykułu

Sedimentological interpretation of crevasse splays formed during the extreme 1997 flood in the upper Vistula river valley (South Poland)

Treść / Zawartość
Identyfikatory
Warianty tytułu
PL
Sedymentologiczna interpretacja glifów krewasowych utworzonych w dolinie górnej Wisły podczas katastrofalnej powodzi w 1997 roku
Języki publikacji
EN
Abstrakty
EN
The paper describes scours and crevasse splays formed at the breaks in embankments of the upper Vistula river valley during the summer 1997 flood. The scours cut into the floodplain composed of fining upward channel and overbank deposits. Erosional furrows have developed locally around the scours. In their vicinity, a thin layer of channel-ag gravel was locally laid down. Variously shaped crevasse splays were formed: finger-like, deltoidal and tongue-like. Surface relief, vege-tation and buildings controlled their geometry and sedimentary features. The lower parts of the deposits consist of fine and medium sands with horizontal and low-angle stratification. Higher in the sequences medium and coarse sands with pebbles display planar cross-stratification. Mud balls and black oak trunks redeposited from older alluvia are common. The whole succession represents sheet-flow sediments with partly channelized flow. Locally, at the top, coarse sands, pebbles, mud balls and boulders embedded in silty-sandy matrix occur, representing slurry-flow deposits. Also present were sediments composed of alternating sands and mud pebbles. The vanishing flow phase is marked by occasional ripple marks encountered in the top part of the sequence. Around the flow obstacles (plants, buildings) sand shadows were formed, composed of fine and medium sands with horizontal stratification in the lower parts and ripple cross-lamination along with climbing cross-lamination in the upper parts. The top part included medium and coarse sands with planar cross-stratification. Most of the studied sequences showed coarse-upward grading which is not the effect of changes in the energy of flood waters but originates from the supply of all the time coarser material from the successively deepening scours.
Rocznik
Strony
53--62
Opis fizyczny
Bibliogr. 48 poz., rys., wykr.
Twórcy
autor
  • Institute of Geography and Spatial Organization, Polish Academy of Sciences, ul. Św. Jana 22, 31-018 Kraków, Poland
  • St. Staszic University of Mining and Metallurgy, Faculty of Geology, Geophysics and Environmental Protection, al. Mickiewicza 30, 30-059 Kraków, Poland
Bibliografia
  • 1. Allen, J. R. L., 1964. Studies in fluviatile sedimentation: six cyclothemes from the Lower Old Red Sandstone, Anglo-Welsh Basin. Sedimentology, 3: 163-198.
  • 2. Allen, J. R. L., 1965. A review of the origin and characteristics of recent alluvial sediments. Sedimentology, 5: 89-191.
  • 3. Allen, J. R. L., 1982. Sedimentary Structures: Their Character and Physical Basis. Vols 1 & 2. Elsevier, Amsterdam. 593, 663 pp.
  • 4. Ashley, G. M., Southard, J. B. & Boothroyd, J. C., 1982. Deposition of climbing-ripple beds: a flume simulation. Sedimentology, 29: 67-79.
  • 5. Bridge, J. S., 1984. Large-scale facies sequences in alluvial overbank environments. Journal of Sedimentary Petrology, 54: 583-588.
  • 6. Brierley, G. J., Ferguson, R. J. & Wolfe, K. J., 1997. What is a fluvial levee? Sedimentary Geology, 114: 1-9.
  • 7. Brodzikowski, K., Van Loon, A. J. & Zieliński, T., 1997. Development of a lake in a subsiding basin in front of a Saalian ice sheet (Kleszczów Graben, central Poland). Sedimentary Geology, 113: 55-80.
  • 8. Buck, S. G., 1985. Sand-flow cross strata in tidal sands of the Lower Greensands (Early Cretaceous), Southern England. Journal of Sedimentary Petrology, 48: 159-170.
  • 9. Cherven, V. B., 1974. Fluvial and deltaic facies in the Sentinel Butte formation, Central Willistoin Basin. Journal of Sedimentary Petrology, 55: 895-906.
  • 10. Coleman, J. M., 1969. Brahmaputra river: channel processes and sedimentation. Sedimentary Geology, 3: 129-239.
  • 11. Collinson, J. D., 1986. Alluvial sediments. In: Reading, H. G. (ed.) Sedimentary Environments and Facies. Blackwell Scientific Publications, Oxford, pp. 20-62.
  • 12. Doktor, M. & Gradziński, R., 1985. Alluvial depositional environment of coal-bearing “mudstone series” (Upper Carboniferous, Upper Silesian Coal Basin). Studia Geologica Polonica, 82: 1-67.
  • 13. Elliott, T., 1974. Interdistributary bay sequences and their genesis. Sedimentology, 21: 611-622.
  • 14. Farrell, K. M., 1987. Sedimentology and facies architecture of overbank deposits of the Mississippi River, False River region, Louisiana. In: Etheridge, F. G., Flores, R. M. & Harvey, M. D. (eds), Recent Developments in Fluvial Sedimentology. Society of Economic Paleontologist and Mineralogist, Special Publication, 39: 111-120.
  • 15. Fielding, C. R., 1984. Upper delta plain lacustrine and fluviolacus- trine facies from the Westphalian of the Durham coalfield, NE England. Sedimentology, 31: 547-567.
  • 16. Florek, E., Florek, W. & Mycielska-Dowgiałło, E., 1987. Morphogenesis of the Vistula valley between Kępa Polska and Płock in the Late Glacial and Holocene. In: Starkel, L., (ed.), Evolution of the Vistula River valley during the last 15 000 years, part IL Geographical Studies, Special Issue, 4: 189-205.
  • 17. Folk, R. L. & Ward, W., 1957. Brazos River bar: A study in the significance of grain size parameters. Journal of Sedimentary Petrology, 27: 3-26.
  • 18. Friedman, G. M. & Sanders, J. E., 1978. Principles of sedimentology. Wiley, New York, 792 pp.
  • 19. Gębica, P. & Sokołowski, T., 1999. Catastrophic geomorphic processes and sedimentation in the Vistula valley between the Dunajec and Wisłoka mouths during the 1997 flood, Southern Poland. Quaternary Studies in Poland, Special Issue: 253-261.
  • 20. Gibling, M. R., Nanson, G. C. & Maroulis, J. C., 1998. Anastomosing river sedimentation in the Channel Country of central Australia. Sedimentology, 45: 595-619.
  • 21. Gomez, B., Phillips, J. D., Magilligan, F. J. & James, L. A., 1997. Floodplain sedimentation and sensitivity: summer 1993 flood, Upper Mississippi River Valley. Earth Processes and Landforms, 22: 923-936.
  • 22. Gradziński, R., 1973. Sedimentation of dinosaur-bearing Upper Cretaceous of the Nemegt Basin, Gobi Desert. Palaeontologia Polonica, 21: 147-229.
  • 23. Hunter, R. E., 1985. Subaqueous sand-flow cross-strata. Journal of Sedimentary Petrology, 55: 886-894.
  • 24. Jopling, A. V., 1965. Hydraulic factors controlling the shape of laminae in laboratory deltas. Journal of Sedimentary Petrology, 35: 777-791.
  • 25. Jopling, A. V., 1966. Some principles and techniques used in reconstructing the hydraulic parameters of paleo-flow regime. Journal of Sedimentary Petrology, 36: 5-49.
  • 26. Karcz, L, 1969. Mud pebbles in a flash floods environment. Journal of Sedimentary Petrology, 39: 333-337.
  • 27. Karcz, L, 1970. Sedimentary structures formed by flash floods in Southern Israel. Sedimentary Geology, 7: 161-182.
  • 28. Karcz, I. & Goldberg, M., 1967. Ripple controlled desiccation patterns from Wadi Shiqma, Southern Israel. Journal of Sedimentary Petrology, 37: 1244-1245.
  • 29. Klimek, K., 1974. The structure and mode of sedimentation in the flood-plain deposits in the Wisłoka valley (S Poland). Studia Geomorphologica Carpatho-Balcanica, 8: 135-151.
  • 30. Maroulis, J. C. & Nanson, G. C., 1996. Bedload transport of aggregated muddy alluvium from Cooper Creek, central Australia: a flume study. Sedimentology, 43: 771-790.
  • 31. McKee, E. D., Crosby, E. J. & Berryhill, H. L. Jr., 1967. Flood deposits, Bijou Creek, Colorado, June 1965. Journal of Sedimentary Petrology, 37: 829-851.
  • 32. Miall, A. D., 1978. Lithofacies types and vertical profile models in braided river deposits: a summary. In: Miall, A. D., (ed.) Fluvial Sedimentology. Canadian Society of Petroleum Geology Memoir, 5: 597-604.
  • 33. Miall, A. D., 1996. The geology of fluvial deposits. Sedimentary Facies, Basin Analysis, and Petroleum Geology. Springer- Verlag, Berlin, Heidelberg, New York, 582 pp.
  • 34. Nemec, W. & Muszyński, A., 1982. Volcaniclastic alluvial aprons in the Tertiary of Sofia district (Bulgaria). Annales Societatis Geologorum Poloniae, 52: 239-303.
  • 35. O’Brien, P. E. & Wells, A. T. 1986. A small, alluvial crevasse splay. Journal of Sedimentary Petrology, 56: 876-879.
  • 36. Platt, N. H. & Keller, B., 1992. Distal alluvial deposits in a foreland basin setting-the Lower freshwater Molasse (Lower Miocene), Switzerland: sedimentology, architecture and paleosols. Sedimentology, 39: 545-565.
  • 37. Plint, A. G., 1986. Slump blocks, intraformational conglomerates and associated erosional structures in Pennsylvanian fluvial strata of eastern Canada. Sedimentology, 33: 387-399.
  • 38. Ritter, F. D., 1988. Floodplain erosion and deposition during the December 1982 floods in Southeast Missouri. In: Baker, V. R., Kochel, R. C. & Patton, P. C. (eds), Flood Geomorphology. A Wiley-Interscience Publication. J. Wiley & Sons, New York, pp. 243-259.
  • 39. Rust, B. R. & Nanson, G. C., 1989. Bedload transport of mud as pedogenic aggregates in modem and ancient rivers. Sedimentology, 36: 291-306.
  • 40. Smith, N. D., 1972. Some sedimentological aspects of planar cross-stratification in a sandy braided river. Journal of Sedimentary Petrology, 42: 624-634.
  • 41. Smith, R. M. H., 1987. Morphology and depositional history of exhumed Permian point bars in the Southwestern Karoo. South Africa. Journal of Sedimentary Petrology, 57: 19-29.
  • 42. Sokołowski, T., 1987. Vistula valley between the outlets of Dunajec and Breń rivers. In: Starkei, L. (ed.) Evolution of the Vistula river valley during the last 15 000years, partii, Geographical Studies, Special Issue, 4: 95-114.
  • 43. Teisseyre, A. K., 1988. Recent overbank deposits of the Sudėtie valleys, SW Poland. Part III: Subaerially and subaqueously deposited overbank sediments in the light of field experiment (1977-1979). (In Polish, English summary). Geologia Sudetica, 23, 2: 1-52.
  • 44. White, J. D. L., 1992. Pliocene subaqueous fans and Gilbert-type deltas in maar crater lakes, Hopi Buttes, Navajo Nation (Arizona), USA. Sedimentology, 39: 931-946.
  • 45. Williams, G. D., 1969. Origin of shale-pebble conglomerate. American Association of Petroleum Geologists Bulletin, 50: 573- 577.
  • 46. Zieliński, T., 1995. Lithofacies and genetic codes: construction and application. In: Mycielska-Dowgiałło, E. & Rutkowski, J. (eds) Researches of Quaternary Sediments. Some methods and interpretation of the results. Faculty of Geography and Regional Studies, University of Warsaw, pp. 220-234.
  • 47. Zieliński, T., 1998. Lithofacial identification of alluvial sediments. In: Mycielska-Dowgiałło, E. (ed.) Sedimentological and postsedimentological structures in Quaternary sediments and their value for interpretation. Faculty of Geography and Regional Studies, University of Warsaw, pp. 193-257.
  • 48. Zwoliński, Z., 1992. Sedimentology and geomorphology of overbank flows of meandering river floodplains. Geomorphology, 4, 367-379.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BUS6-0028-0005
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.