Accesso libero

Source and depositional processes of coarse-grained limestone event beds in Frasnian slope deposits (Kostomłoty-Mogiłki quarry, Holy Cross Mountains, Poland)

  
22 ott 2010
INFORMAZIONI SU QUESTO ARTICOLO

Cita
Scarica la copertina

Abbassi, N., 2007. Shallow marine trace fossils from Upper Devonian sediments of the Kuh-E Zard, Zefreh area, Central Iran. Iranian Journal of Science & Technology 31, A1, 23-33.Search in Google Scholar

Aigner, T., 1985. Storm depositional systems: dynamic stratigraphy in modern and ancient shallow-marine sequences. Lecture Notes in Earth Sciences (Springer-Verlag, Berlin) 3, 174 pp.Search in Google Scholar

Bábek, O., Přikryl, T. & Hladil, J., 2007. Progressive drowning of carbonate platform in the Moravo-Silesian Basin (Czech Republic) before the Frasnian/Famennian event: facies, compositional variations and gamma-ray spectrometry. Facies 53, 293-316.10.1007/s10347-006-0095-8Search in Google Scholar

Becker, T. T. & House, M. R., 1997. Sea level changes in the Upper Devonian of the Canning Basin, Western Australia. Courier Forschungsinstitut Senckenberg 199, 129-146.Search in Google Scholar

Bełka, Z., Skompski, S. & Soboń-Podgórska, J., 1996. Reconstruction of a lost carbonate platform on the shelf of Fennosarmatia: evidence from Visėan polymictic debrites, Holy Cross Mountains, Poland. Geological Society, London, Special Publication 107, 315-329.10.1144/GSL.SP.1996.107.01.22Search in Google Scholar

Chen, D. & Tucker, M. E., 2003. The Frasnian-Famennian mass extinction: insights from high-resolution sequence stratigraphy and cyclostratigraphy in South China. Palaeogeography Palaeoclimatology Palaeoecology 193, 87-111.10.1016/S0031-0182(02)00716-2Search in Google Scholar

Chen, D., Tucker, M. E., Jiang, M. & Zhu, J., 2001. Long-distance correlation between tectonic-controlled, isolated carbonate platforms by cyclostratigraphy and sequence stratigraphy in the Devonian of South China. Sedimentology 48, 57-78.10.1046/j.1365-3091.2001.00351.xSearch in Google Scholar

Crevello, P. D. & Schlager, W., 1980. Carbonate debris sheets and turbidites, Exuma Sound, Bahamas. Journal of Sedimentary Petrology 50, 1121-1148.10.1306/212F7B99-2B24-11D7-8648000102C1865DSearch in Google Scholar

Duke, W. L., 1990. Geostrophic circulation or shallow marine turbidity currents? The dilemma of paleo-flow patterns in storm-influenced prograding shoreline systems. Journal of Sedimentary Petrology 60, 870-883.10.1306/D4267636-2B26-11D7-8648000102C1865DSearch in Google Scholar

Eberli, G. P., 1991. Calcareous turbidites and their relationship to sea-level fluctuations and tectonism. [In:] G. Einsele, W. Ricken & A. Seilacher (Eds): Cycles and events in stratigraphy. Springer, Berlin, 340-359.Search in Google Scholar

Eder, F. W., Engel, W., Franke, W. & Sadler, P. M., 1983. Devonian and Carboniferous limestone-turbidites of the Rheinisches Schiefergebirge and their tectonic significance [In:] H. Martin & F. W. Eder (Eds): Intracontinental fold belts. Springer-Verlag, Berlin, 93-124.10.1007/978-3-642-69124-9_5Search in Google Scholar

Einsele, G., 1991. Submarine mass flow deposits and turbidites. [In:] G. Einsele, W. Ricken & A. Seilacher (Eds): Cycles and events in stratigraphy. Springer, Berlin, 313-339.Search in Google Scholar

Einsele, G., 2000. Sedimentary basins: evolution, facies and sediment budget. Springer, Berlin, 792 pp.10.1007/978-3-662-04029-4Search in Google Scholar

Flügel, E., 1978. Mikrofazielle Untersuchungsmethoden von Kalken. Springer, 454 pp.10.1007/978-3-662-08747-3Search in Google Scholar

Flügel, E., 2004. Microfacies of carbonate rocks. Analysis, interpretation and application. Springer, Berlin, 976 pp.10.1007/978-3-662-08726-8Search in Google Scholar

Folk, R. L., 1959. Practical petrographical classification of limestones. American Association of Petroleum Geologists Bulletin 43, 1-38.10.1306/0BDA5C36-16BD-11D7-8645000102C1865DSearch in Google Scholar

Folk, R. L., 1962. Spectral subdivision of limestone types. American Association of Petroleum Geologists Memoirs 1, 62-84.Search in Google Scholar

Futterer, E., 1982. Experiments on the distinction of wave and current influenced shell accumulations. [In:] G. Einsele & A. Seilacher (Eds): Cyclic and event stratification. Springer, Berlin, 174-179.10.1007/978-3-642-75829-4_12Search in Google Scholar

Harms, J. C., 1969. Hydraulic significance of some sand ripples. Geological Society of American Bulletin 80, 363-396.10.1130/0016-7606(1969)80[363:HSOSSR]2.0.CO;2Search in Google Scholar

Johnson, J. G., Klapper, G., Sandberg, C. A., 1985. Devonian eustatic fluctuations in Euramerica. Geological Society of American Bulletin 96, 567-587.10.1130/0016-7606(1985)96<567:DEFIE>2.0.CO;2Search in Google Scholar

Kalvoda, J., Bábek, O. & Malovaná, A., 1999. Sedimentary and biofacies records in calciturbidites at the Devonian-Carboniferous boundary in Moravia (Moravian-Silesian Zone, Middle Europe). Facies 41, 141-158.10.1007/BF02537463Search in Google Scholar

Kaźmierczak, J. & Goldring, R., 1978. Subtidal flat-pebble conglomerate from the Upper Devonian of Poland: a multiprovenant high-energy product. Geological Magazine 115, 359-366.10.1017/S0016756800037377Search in Google Scholar

Krumbein, W. C. & Sloss, L. L., 1963. Stratigraphy and sedimentation (2nd ed). Freeman and Company, San Francisco, 660 pp.Search in Google Scholar

Lamarche, J., Lewandowski, M., Mansy, J. L. & Szulczewski, M., 2003. Partitioning pre-, syn- and post-Variscan deformation in the Holy Cross Mts., eastern Variscan foreland. [In:] T. McCann & A. Saintot (Eds): Tracing tectonic deformation using the sedimentary record. Geological Society, London, Special Publication 208, 159-184.10.1144/GSL.SP.2003.208.01.08Search in Google Scholar

Lash, G. G., 1984. Density-modified grain-flow deposits from an Early Paleozoic passive margin. Journal of Sedimentary Petrology 54, 557-562.10.1306/212F8468-2B24-11D7-8648000102C1865DSearch in Google Scholar

Lowe, D. R., 1976. Grain flow and grain flow deposits. Journal of Sedimentary Petrology 46, 188-199.10.1306/212F6EF1-2B24-11D7-8648000102C1865DSearch in Google Scholar

Lowe, D. R., 1982. Sediment gravity flows: II. Depositional models with special reference to the deposits of high-density turbidity currents. Journal of Sedimentary Petrology 52, 279-297.10.1306/212F7F31-2B24-11D7-8648000102C1865DSearch in Google Scholar

Middleton, G. V. & Hampton, M. A., 1976. Subaqueous sediment transport and deposition by sediment gravity flows. [In:] D. J. Stanley & D. J. Swift (Eds): Marine sediment transport and environmental management. John Wiley and Sons, New York, 197-218.Search in Google Scholar

Mount, J. F. & Kidder, D., 1993. Combined flow origin of edgewise intraclast conglomerates: Sellick Hill Formation (Lower Cambrian), South Australia. Sedimentology 40, 315-329.10.1111/j.1365-3091.1993.tb01766.xSearch in Google Scholar

Myrow, P. M. & Southard, J. B., 1996. Tempestite deposition. Journal of Sedimentary Research 66, 875-887.10.1306/D426842D-2B26-11D7-8648000102C1865DSearch in Google Scholar

Myrow, P. M., Fischer, W. & Goodge, J. W., 2002. Wave-modified turbidites: combined-flow shoreline and shelf deposits, Cambrian, Antarctica. Journal of Sedimentary Research 72, 641-656.10.1306/022102720641Search in Google Scholar

Myrow, P. M., Tice, L., Archuleta, B., Clark, B., Taylor, J. F. & Ripperdan, R. L., 2004. Flat-pebble conglomerate: its multiple origins and relationship to metre-scale depositional cycles. Sedimentology 51, 973-996.10.1111/j.1365-3091.2004.00657.xSearch in Google Scholar

Nakajiama, T. & Kanai, Y., 2000. Sedimentary features of seismoturbidites triggered by the 1983 and older historical earthquakes in the eastern margin of the Japan Sea. Sedimentary Geology 135, 1-19.10.1016/S0037-0738(00)00059-2Search in Google Scholar

Narkiewicz, M., 1988. Turning points in sedimentary development in the Late Devonian in southern Poland. [In:] N. J. McMillan, A. F. Embry & D. J. Glass (Eds): Devonian of the world. Canadian Society of Petroleum Geologists Memoirs 14, 610-635.Search in Google Scholar

Nott, J., 2006. Extreme events - a physical reconstruction and risk assessment. Cambridge University Press, 297 pp.10.1017/CBO9780511606625Search in Google Scholar

Pisarzowska, A., Sobstel, M. & Racki, G., 2006. Conodont-based event stratigraphy of the Early-Middle Frasnian transition on the South Polish carbonate shelf. Acta Palaeontologica Polonica 51, 609-646.Search in Google Scholar

Playford, P. E., Hurley, N. F., Kerans, C. & Middleton, M. F., 1989. Reefal platform development, Devonian of the Canning Basin, Western Australia. [In:] P. D. Crevello, J. L. Wilson, J. F. Sarg & J. F. Read (Eds): Controls on carbonate platform and basin development. SEPM Special Publication 44, 187-202.10.2110/pec.89.44.0187Search in Google Scholar

Pratt, B. R., 2002. Storms versus tsunamis: dynamic interplay of sedimentary, diagenetic, and tectonic processes in the Cambrian of Montana. Geology 30, 423-426.10.1130/0091-7613(2002)030<0423:SVTDIO>2.0.CO;2Search in Google Scholar

Racki, G., 1993. Evolution of the bank to reef complex in the Devonian of the Holy Cross Mountains. Acta Palaeontologica Polonica 37, 87-182.Search in Google Scholar

Racki, G. & Bultynck, P., 1993. Conodont biostratigraphy of the Middle to Upper Devonian boundary beds in the Kielce area of the Holy Cross Mts. Acta Geologica Polonica 43, 1-25.Search in Google Scholar

Racki, G. & Narkiewicz, M., 2000. Tektoniczne a eustatyczne uwarunkowania rozwoju sedymentacji dewonu świętokrzyskiego [Tectonic versus eustatic controls of sedimentary development of the Devonian in the Holy Cross Mts., central Poland]. Przegląd Geologiczny 48, 65-76.Search in Google Scholar

Racki, G., Głuchowski, E. & Malec, J., 1985. The Givetian and Frasnian succession at Kostomłoty in the Holy Cross Mts., and its regional significance. Bulletin of the Polish Academy of Sciences, Earth Sciences 33, 159-171.Search in Google Scholar

Racki, G., Piechota, A., Bond, D. & Wignall, P., 2004. Geochemical and ecological aspects of lower Frasnian pyrite-ammonoid level at Kostomłoty (Holy Cross Mts., Poland). Geological Quarterly 48, 267-282.Search in Google Scholar

Reineck, H. E. & Singh, I. B., 1972. Genesis of laminated sand and graded rhythmites in storm-sand layers of shelf mud. Sedimentology 18, 123-128.10.1111/j.1365-3091.1972.tb00007.xSearch in Google Scholar

Schieber, J., 1994. Evidence for high-energy events and shallow-water deposition in the Chattanooga Shale, Devonian, central Tennessee, USA. Sedimentary Geology 93, 193-208.10.1016/0037-0738(94)90005-1Search in Google Scholar

Seguret, M., Moussine-Pouchkine, A., Gabaglia, G. R. & Bouchette, F., 2001. Storm deposits and storm-generated coarse carbonate breccias on a pelagic outer shelf (South-East Basin, France). Sedimentology 48, 231-254.10.1046/j.1365-3091.2001.00358.xSearch in Google Scholar

Sepkoski, Jr., J. J., 1982. Flat-pebble conglomerates, storm deposits, and the Cambrian bottom fauna. [In:] G. Einsele & A. Seilacher (Eds): Cyclic and event stratification. Springer-Verlag, Berlin, 371-385.10.1007/978-3-642-75829-4_28Search in Google Scholar

Sepkoski, Jr., J. J., Bambach, R. K. & Droser, M. L., 1991. Secular changes in Phanerozoic event bedding and the biological overprint. [In:] G. Einsele, W. Ricken & A. Seilacher (Eds): Cycles and events in stratigraphy. Springer-Verlag, Berlin, 298-312.Search in Google Scholar

Skompski, S. & Szulczewski, M., 2000. Lofer-type cyclothems in the Upper Devonian of the Holy Cross Mts. (central Poland). Acta Geologica Polonica 50, 393-406.Search in Google Scholar

Snedden, J. W., Nummedal, D. & Amos, A. F., 1988. Storm- and fair-weather combined flow on the central Texas continental shelf. Journal of Sedimentary Petrology 58, 580-595.10.1306/212F8DFA-2B24-11D7-8648000102C1865DSearch in Google Scholar

Spalletta, C & Vai, G. B., 1984. Upper Devonian intraclast parabreccias interpreted as seismites. Marine Geology 55, 133-144.10.1016/0025-3227(84)90137-3Search in Google Scholar

Spence, G. H. & Tucker, M. E., 1997. Genesis of limestone megabreccias and their significance in carbonate sequence stratigraphic models: a review. Sedimentary Geology 112, 163-193.10.1016/S0037-0738(97)00036-5Search in Google Scholar

Stow, D. A. V. & Bowen, A. J., 1978. Origin of lamination in deep sea, fine-grained sediments. Nature 274, 324-328.10.1038/274324a0Search in Google Scholar

Szulczewski, M., 1968. Slump structures and turbidites in Upper Devonian limestones of the Holy Cross Mts. Acta Geologica Polonica 18, 304-326.Search in Google Scholar

Szulczewski, M., 1971. Upper Devonian conodonts, stratigraphy and facial development in the Holy Cross Mts. Acta Geologica Polonica 21, 1-129.Search in Google Scholar

Szulczewski, M., 1977. Główne regiony facjalne w Paleozoiku Gór Świętokrzyskich [Main facial regions in the Paleozoic of Holy Cross Mts.]. Przegląd Geologiczny 25, 428-432.Search in Google Scholar

Szulczewski, M., 1981. Dewon środkowy i górny zachodniej części Gór Świętokrzyskich [Middle and Upper Devonian in the western part of the Holy Cross Mts.]. Przewodnik 53 Zjazdu PTG, Kielce, 68-82.Search in Google Scholar

Szulczewski, M., 1995. Depositional evolution of the Holy Cross Mts. (Poland) in the Devonian and Carboniferous - a review. Geological Quarterly 39, 471-488.Search in Google Scholar

Szulczewski, M., Bełka, Z. & Skompski, S., 1996. The drowing of a carbonate platform: an example from the Devonian-Carboniferous of the southwestern Holy Cross Mountains, Poland. Sedimentary Geology 106, 21-49.10.1016/0037-0738(95)00145-XSearch in Google Scholar

Szulczewski, M., Konon, A., Narkiewicz, M., Skompski, S. & Wańkiewicz, A., 2006. Dewon zachodniej części Gór Świętokrzyskich (Bukowa Góra - Mogiłki - Wietrznia - Ostrówka) [Devonian in the western part of the Holy Cross Mts. (Bukowa Mts. - Mogiłki - Wietrznia - Ostrówka)]. LXXVII Zjazd Polskiego Towarzystwa Geologicznego, Kielce, 19 pp.Search in Google Scholar

Vierek, A., 2007a. Transitional reef-to-basin facies of Lower Frasnian limestones determined by microfacies analysis (Wietrznia, Holy Cross Mts., Poland). Facies 53, 141-155.10.1007/s10347-006-0079-8Search in Google Scholar

Vierek, A., 2007b. Storm-dominated deposition on a Frasnian carbonate platform margin (Wietrznia, Holy Cross Mts., Poland). Geological Quarterly 51, 307-318.Search in Google Scholar

Vierek, A., 2010. Małoskalowa cykliczna sedymentacja we franie Gór Świętokrzyskich [Small-scale cyclic sedimentation in the Frasnian of the Holy Cross Mts.]. Materiały konferencyjne IV Polskiej Konferencji Sedymentologicznej, POKOS4, p.103.Search in Google Scholar

Walker, R. G. & Plint, A. G., 1992. Wave- and storm-dominated shallow marine systems. [In:] R. G. Walker & N. P. James (Eds): Facies models response to sea level change. Geological Association of Canada, 219-238.Search in Google Scholar

Wignall, P. B. & Twitchett, R. J., 1999. Unusual intraclastic limestones in Lower Triassic carbonates and their bearing on the aftermath of the end-Permian mass extinction. Sedimentology 46, 303-316.10.1046/j.1365-3091.1999.00214.xSearch in Google Scholar

Ziegler, W. & Sandberg, A. S., 1990. The Late Devonian standard conodont zonation. Courier Forschungsinstitut Senckenberg 121, 1-115.Search in Google Scholar

Lingua:
Inglese
Frequenza di pubblicazione:
3 volte all'anno
Argomenti della rivista:
Geoscienze, Geofisica, Geologia e minerologia, Geoscienze, altro