Jökull


Jökull - 01.01.2016, Side 46

Jökull - 01.01.2016, Side 46
Jonathan L. Carrivick et al. curacy permitting quantification in this case of the lat- eral asymmetry of surge front propagation, distributed surface elevation changes and local relief, and hence distributed changes in driving stress. We speculate that without such high-resolution data, minor surges of other glaciers may not have been recognised. Acknowledgements The ALS data of August 2008 was collected and pro- cessed by the Natural Environment Research Coun- cil (NERC) Airborne Research Survey Facility via a grant to JLC. The 2011 lidar mapping of Kverkjökull was part of lidar mapping of glaciers in Iceland with financial support provided by the Icelandic Research Fund (Rannís), the Landsvirkjun (the National Power Company of Iceland) Research Fund, the Icelandic Road Administration, the Reykjavík Energy Environ- mental and Energy Research Fund, the National Land Survey of Iceland, the Icelandic Meteorological Of- fice, the Vatnajökull National Park, Friends of Vatna- jökull and the Klima- og Luftgruppen (KoL) research fund of the Nordic Council of Ministers. Matthew Roberts is thanked for his provision of data from the IMO. WorldView satellite images are courtesy of the DigitalGlobe Foundation via a grant to JLC. Duncan Quincey, Owen King and Oddur Sigurðsson kindly read a draft of this manuscript and it was improved with the thoughtful and constructive advice from two anonymous reviewers. ÁGRIP Margir framhlaupsjöklar eru ekki þekktir sem slíkir vegna þess að hlaupin geta verið stutt og koma oft ekki fram í athugunum frá gervihnöttum eða jörðu niðri. Hér er greint frá fyrsta framhlaupi sem sög- um fer af í Kverkjökli sem er skriðjökull í norðan- verðum Vatnajökli. Þar með bætist tiltölulega stutt- ur, mjór og brattur jökull, sem svipar til jökla í Ölp- unum, við þekkta framhlaupsjökla á Íslandi. Fram- hlaupið varð eftir að jökullinn hafði hörfað um nokk- urra áratuga skeið og hafði hraði hörfunarinnar auk- ist síðustu árin fyrir hlaupið. Framhlaupið hófst eftir 2008, nokkru fyrir jökulhlaup úr lóninu Gengissigi í vestanverðum jöklinum árið 2013. Framhlaupið var enn yfirstandandi árið 2013. Lækkun yfirborðs jök- ulsins á ákomusvæðinu var allt að 20 m og var mest áberandi þar sem ísþykktin er >100 m. Breytingar á yfirborðshæð, framgangur sporðsins og breytingar á skriðhraða jökulsins benda til einnar framhlaupslotu. Framgangur sporðsins að norðan- og sunnanverðu var mismunandi og benda ummerki framhlaupsins þar til þess að það hafi gengið inn í sem næst kyrrstæðan ís við norðanverðan sporðinn. Ekki er unnt gera grein fyrir orsök eða eðlisfræðilegum ferlum framhlaupsins umfram þetta á grundvelli fyrirliggjandi gagna. REFERENCES Arendt, A. A., K. A. Echelmeyer, W. D. Harrison, C. S. Lingle and V. B. Valentine 2002. Rapid wastage of Alaska glaciers and their contribution to rising sea level. Science 297 (5580), 382–386. Ármannsson, H., H. Kristmannsdóttir, H. Torfason and M. Ólafsson 2000. Natural changes in unexploited high- temperature geothermal areas in Iceland. Proc. World Geoth. Congr. 2000, 521–526. Aðalgeirsdóttir, G., H. Björnsson, F. Pálsson and E. Magn- ússon 2005. Analyses of a surging outlet glacier of Vatnajökull ice cap, Iceland. Ann. Glaciol. 42 (1), 23– 28. Barrand, N. E. and T. Murray 2006. Multivariate controls on the incidence of glacier surging in the Karakoram Himalaya. Arct. Antarct. Alp. Res. 38, 489–498. Björnsson, H. 1988. Hydrology of ice caps in volcanic re- gions. Soc. Sci. Isl. 45, 139 pp. Björnsson, H. and P. Einarsson 1990. Volcanoes be- neath Vatnajökull, Iceland: Evidence from radio echo- sounding, earthquakes and jökulhlaups. Jökull 40, 147–168. Björnsson, H. and F. Pálsson 2008. Icelandic glaciers. Jökull 58, 365–386. Björnsson, H., F. Pálsson, O. Sigurðsson and G. E. Flow- ers 2003. Surges of glaciers in Iceland. Ann. Glaciol. 36 (1), 82–90. Brynjólfsson, S., A. Schomacker, N. J. Korsgaard and Ó. Ingólfsson 2016. Surges of outlet glaciers from the Drangajökull ice cap, northwest Iceland. Earth Planet. Sci. Lett. 450, 140–151. Burgess, E. W., R. R. Forster, C. F. Larsen and M. Braun 2012. Surge dynamics on Bering Glacier, Alaska, in 2008–2011. The Cryosph. 6 (6), 1251–1262. Carrivick, J. L. 2004. Characteristics and impacts of jök- ulhlaups (glacial outburst floods) from Kverkfjöll, Ice- land. Doctoral thesis, University of Keele, 420 pp. 46 JÖKULL No. 66, 2016
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