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Lodowa Cave in Ciemniak, which belongs to the dynamic ice cave type, contains the biggest perennial block of cave-ice in the Tatra Mountains. The ice represents congelation type, since it originates from freezing of water which infiltrates the cave. Two generations of ice have been recognized in this cave. They are divided by the distinct unconformity. The ice building both generations is layered. Two moths which were found in the younger generations were sampled and dated by 14C method yielding 195 ± 30 and 125 ± 30 years. Bearing in mind the position in the section and the fact that the cave ice has waned since the 20s of the last century, the age is 1720-1820 AD and 1660-1790 AD respectively. It proves that the ice was formed during the Little Ice Age. Hence, the erosion boundary which underlies this generation records the degradation of ice before the Little Ice Age most probably during the Medieval Warm Period. The ice volume in the cave was substantially smaller before the Little Ice Age than it is today, despite the clear tendency to melting, which has been recognized since 20s of the last century. The older generation of ice is supposed to have its origins in a cold stage between the Atlantic period and the Medieval Warm Period.
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31--38
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Bibliogr. 42 poz., rys.
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autor
autor
autor
autor
- 1Institute of Geological Sciences, Polish Academy of Sciences, Research Centre in Warsaw, Twarda 51/55, 00-818 Warszawa, Poland, hhercman@twarda.pan.pl
Bibliografia
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- Pavuza R and Spötl C, 2000. Neue Forschungsergebnisse aus der Hundalm-Eishöhle. (New results of the study from the Hundalm ice cave). Höhlenkundliche Mitteilungen Landesverein für Höhlenkunde Tirol 38: 41-46 (in German).
- Rachlewicz G and Szczuciński W, 2004. Seasonal and decadal ice mass balance changes in the ice cave Jaskinia Lodowa w Cieniaku, the Tatra Mountains, Poland. Theoretical and Applied Karstology 17: 11-18.
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- Reimer PJ, Baillie MGL, Bard E, Bayliss A, Beck JW, Bertrand C, Blackwell PG, Buck CE, Burr G, Cutler KB, Damon PE, Edwards RL, Fairbanks RG, Friedrich M, Guilderson TP, Hughen KA, Kromer B, McCormac FG, Manning S, Bronk Ramsey C, Reimer RW, Remmele S. Southon JR, Stuiver M, Talamo S, Taylor FW, van der Plicht J and Weyhenmeyer CE, 2004. IntCal04 terrestrial radiocarbon age calibration, 0-26 cal kyr BP. Radiocarbon 46:1029-1058.
- Rygielski W, Siarzewski W and Wieliczko P, 1995. Variability of the ice deposit in Ice Cave on Mount Ciemniak in the West Tatra Mountains. Quaestiones Geographicae 17/18: 55-64.
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- Stoffel M, Luetscher M, Bollschweiler M and Schlatter F, 2009. Evidence of NAO control on subsurface ice accumulation in a 1200 yr old cave-ice sequence, St. Livres ice cave, Switzerland. Quaternary Research 72(1): 16-26, DOI 10.1016/j.yqres.2009.03.002.
- Yonge CI, 2004. Ice in caves. In: Gunn J, ed., Encyclopedia of Caves and Karst Sciences. New York, Fitzroy Dearborn: 435-437.
- Yonge CI and MacDonald W, 1999. The potential of perennial cave ice in isotope palaeoclimatology. Boreas 28(3): 357-362, DOI 10.1111/j.1502-3885.1999.tb00225.x.
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- Wołoszyn BW, 1996. Fauna jaskiń (The fauna of caves). In: Mirek Z, Głowaciński Z, Klimek K and Piękoś-Mirkowa H, eds., Przyroda Tatrzańskiego Parku Narodowego, Tatrzański Park Narodowy, Zakopane, 525-533 (in Polish, English summary).
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Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BATA-0012-0022