Jökull

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Jökull - 01.01.2020, Qupperneq 34

Jökull - 01.01.2020, Qupperneq 34
Glacier extent in Iceland, 1890–2019 Häberle, T. M. 1991. Spät- und postglaziale Gletscherge- schichte des Hörgárdalurgebietes Tröllaskagi, Nord- island. PhD thesis, Geographisches Institut, Universi- tät Zürich, 191 pp. Häberle, T. M. 1994. Glacial, late glacial and Holocene history of the Hörgárdalur area, Tröllaskagi, Northern Iceland. In: Environmental Change in Iceland, Stötter, J. and F. Wilhelm (eds.), Münchener Geog. Abl. B12, 41–63. Hannesdóttir, H., H. Björnsson, F. Pálsson, G. Aðal- geirsdóttir and Sn. Guðmundsson 2015a. Variations of southeast Vatnajökull ice cap (Iceland) 1650–1900 and reconstruction of the glacier surface geometry at the Little Ice Age maximum. Geogr. Ann. 97(2), 237– 264. http://doi.org/10.1111/geoa.12064 Hannesdóttir, H., H. Björnsson, F. Pálsson, E. Magnússon and G. Aðalgeirsdóttir 2015b. Changes in the south- east Vatnajökull ice cap, Iceland, between ∼1890 and 2010. The Cryosph. 9, 565–585. http://doi.org/- 10.5194/tc-9-565-2015 Harning, D. J., Á. Geirsdóttir, G. H. Miller and L. An- derson 2016. Episodic expansion of Drangajökull, Vestfirðir, Iceland, over the last 3 ka culminating in its maximum dimension during the Little Ice Age. Quat. Sci. Rev. 152, 118–131. http://doi.org/10.1016/- j.quascirev.2016.10.001 Helgadóttir, M. J. 2017. Breytileg stærð jökulsins Oks í sambandi við sumarhitastig á Íslandi. BSc thesis, Fac- ulty of Earth Sciences, University of Iceland, 26 pp. Hock, R., P. Jansson and L. Braun 2005. Modelling the re- sponse of mountain glacier discharge to climate warm- ing. In: Global Change and Mountain Regions—A State of Knowledge Overview, Huber, U. M., H. K. M. Bugmann and M. A. Reasoner (eds.). Advances in Global Change Series, Dordrecht, Springer, 243–252. Jóhannesson, T., B. Pálmason, Á. Hjartarson, A. H. Jarosch, E. Magnússon, J. M. C. Belart and M. T. Guðmundsson 2020. Non-surface mass balance of glaciers in Iceland. J. Glaciol. 66 (258), 685–697. http://doi.org/10.1017/jog.2020.37 Jóhannesson, T., H. Björnsson, E. Magnússon, Sv. Guð- mundsson, F. Pálsson, O. Sigurðsson, Th. Thorsteins- son and E. Berthier 2013. Ice-volume changes, bias es- timation of mass-balance measurements and changes in subglacial lakes derived by lidar mapping of the sur- face of Icelandic glaciers. Ann. Glaciol. 54(63), 63– 74. http://doi.org/10.3189/2013AoG63A42 Jóhannesson, T., H. Björnsson, F. Pálsson, O. Sigurðsson and Th. Thorsteinsson 2011. LiDAR mapping of the Snæfellsjökull ice cap, western Iceland. Jökull 61, 19– 32. Jóhannesson, T. and O. Sigurðsson 1998. Glacier varia- tions in Iceland 1930–1995. Jökull 45, 3–26. Kääb, A., S. H. Winsvold, B. Altena, C. Nuth, T. Na- gler and J. Wuite 2016. Glacier remote sensing using Sentinel-2. Part I: Radiometric and geometric perfor- mance, and application to ice velocity. Remote Sens. 8(7), 598. http://doi.org/10.3390/rs8070598 Kellerer-Pirklbauer, A., B. Wangensteen, H. Farbrot and B. Etzelmüller 2007. Relative surface age-dating of rock glacier systems near Hólar in Hjaltadalur, north- ern Iceland. J. Quat. Sci. 23, 137–151. http://doi.org/- 10.1002/jqs.1117 Kirkbride, M. P. and A. J. Dugmore 2001. Timing and sig- nificance of mid-Holocene glacier advances in north- ern and central Iceland. J. Quat. Sci. 16(2), 145–153. http://doi.org/10.1002/jqs.589 Kirkbride, M. P. and A. J. Dugmore 2006. Responses of mountain ice caps in central Iceland to Holocene climate change. Quat. Sci. Rev. 25, 1692–1707. http://doi.org/10.1016/j.quascirev.2005.12.004 Kirkbride, M. P. and A. J. Dugmore 2008. Two mil- lenia of glacier advances from southern Iceland dated by tephrochronology. Quat. Res. 70, 398–411. http://doi.org/10.1016/j.yqres.2008.07.001 Kjær, K. H. and J. Krüger 2001. The final phase of dead-ice moraine development: Processes and sed- iment architecture, Kötlujökull, Iceland. Sedimen- tology 48, 935–952. http://doi.org/10.1046/j.1365- 3091.2001.00402.x Krüger, J., A. Schomacker and Í. Ö. Benediktsson 2010. Ice-marginal environments: Geomorphic and struc- tural genesis of marginal moraines at Mýrdalsjökull. In: The Mýrdalsjökull Ice Cap, Iceland. Glacial Pro- cesses, Sediments and Landforms on an Active Vol- cano, Schomacker, A., J. Krüger, K. H. Kjær (eds.), Dev. Quat. Sci. 13, 79–104. http://doi.org/10.1016/- S1571-0866(09)01306-2 Larsen, G. 2010. Katla – tephrochronology and erup- tion history. In: The Mýrdalsjökull Ice Cap, Iceland. Glacial Processes, Sediments and Landforms on an Active Volcano, Schomacker, A., J. Krüger, K. H. Kjær (eds.), Dev. Quat. Sci. 13, 13–49. http://doi.org/- 10.1016/S1571-0866(09)01303-7 Larsen, D. J., Á. Geirsdóttir and G. H. Miller 2015. Precise chronology of Little Ice Age expansion and repetitive surges of Langjökull, central Iceland. Geology 43(2), 167–170. http://doi.org/10.1130/G36185.1 JÖKULL No. 70, 2020 31
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