58
Views
0
CrossRef citations to date
0
Altmetric
Original Articles

Post‐1850 changes in glacier benito, north patagonian icefield, chile

, , , , , & show all
Pages 43-59 | Received 17 Oct 2012, Accepted 27 Aug 2013, Published online: 15 Nov 2016

References

  • Aniya, M., 2007. Glacier variations of Hielo Patagonico Norte, Chile, for 1944/45‐2004/05. Bulletin of Glaciological Research, Japanese Society of Snow and Ice, 24, 59–70.
  • Anija, M. and Enomoto, H. 1986. Glacier variations and their causes in the Northern Patagonia Icefield, Chile, since 1944. Arctic and Alpine Research, 18, 307–316.
  • Barcaza, G., Aniya, M., Matsumoto, T. and Aoki, T., 2009. Satellite‐derived equilibrium lines in Northern Patagonia Icefield, Chile and their implications to glacier variations. Arctic Antarctic and Alpine Research, 41 (2), 174–182. doi: 10.1657/1938‐4246‐41.2.174
  • Bennett, K.D., Haberle, S.G. and Lumley, S.H., 2000. The last Glacial–Holocene transition in southern Chile. Science, 290, 325–328.
  • Casassa, G., López, P., Pouyaud, B. and Escobar, F., 2009. Detection of changes in glacial run‐off in alpine basins: examples from North America, the Alps and the Andes from North America, the Alps, central Asia and the Andes. Hydrological Processes, 23 (1), 31–41. doi: 10.1002/hyp.7194
  • Cembrano, J., Schermer, E., Lavenu, A. and Sanhueza, A., 2000. Contrasting nature of deformation along an intra‐arc shear zone, the Liquiñe–Ofqui fault zone, southern Chilean Andes. Tectonophysics, 319 (2), 129–149. doi: 10.1016/S0040‐1951(99)00321‐2
  • Daniels, L.D. and Veblen, T.T., 2000. ENSO effects on temperature and precipitation of the Patagonian‐Andean region: implications for biogeography. Physical Geography, 21, 223–243. doi: 10.1080/02723646.2000.10642707
  • Davies, B.J. and Glasser, N.F., 2012. Accelerating shrinkage of Patagonian glaciers from the Little sIce Age (∼ad 1870 to 2011). Journal of Glaciology, 58 (212), 1063–1084. doi: 10.3189/2012JoG12J026
  • Dussaillant, A., Benito, G., Buytaert, W., Carling, P. and Espinoza, F., 2010. Repeated glacial‐lake outburst floods in Patagonia: an increasing hazard? Natural Hazards, 54 (2), 469–481. doi: 10.1007/s11069‐009‐9479‐8
  • Dussaillant, A., Meier, C. and Wright, S., 2010. Dams in Patagonia: more studies are needed. Science, 329 (5990), 382–385. doi: 10.1126/science.329.5990.382
  • EPICA Community Members, 2006. One‐to‐one coupling of glacial climate variability in Greenland and Antarctica. Nature, 444, 195–198. doi: 10.1038/nature05301
  • Falvey, M. and Garreaud, R.D. 2009. Regional cooling in a warming world: recent temperature trends in the southeast Pacific and along the west coast of subtropical South America (1979–2006). Journal of Geophysical Research D, Atmospheres, 114 (4). doi: 10.1029/2008JD010519
  • Fritts, H.C., 1976. Tree Rings and Climate. Academic Press, London, 567 pp. doi: 10.1002/qj.49710443923
  • Fukami, H. and Naruse, R., 1987. Ablation of ice and heat balance on Soler Glacier, Patagonia. Bulletin of Glacier Research, 4, 37–42.
  • Garreaud, R., Lopez, P., Minvielle, M. and Rojas, M. 2013. Large‐scale control on the Patagonian climate. Journal of Climatology, 26, 215–230. doi.org/10.1175/JCLI‐D‐12‐00001.1
  • Glasser, N.F., Hambrey, M.J. and Aniya, M. 2002. An advance of Soler Glacier, North Patagonian Icefield, at c. ad 1222–1342. The Holocene, 12 (1), 113–120. doi: 10.1191/0959683602hl526rr
  • Glasser, N.F., Harrison, S., Jansson, K.N., Anderson, K. and Cowley, A. 2011. Global sea‐level contribution from the Patagonian Icefields since the Little Ice Age maximum. Nature Geoscience, 4, 303–307. doi: 10.1038/ngeo1122
  • Glasser, N.F., Harrison, S., Winchester V. and Aniya, M., 2004. Late Pleistocene and Holocene paleoclimate and glacier fluctuations in Patagonia. Global and Planetary Change, 43, 79–101. doi: 10.1016/j.gloplacha.2004.03.002
  • Godoi, M., Shiraiwa, T., Kohshima, S. and Kubota, K. 2002. Firn‐core drilling operation at Tyndall glacier, Southern Patagonia Icefield. In: Casassa, G., Sepúlveda, F. and Sinclair R. (eds), The Patagonian Icefields: A Unique Natural Laboratory for Environmental and Climate Change Studies. Kluwer Academic/Plenum Publishers, New York. 49–156.
  • Greve, R. and Blatter, H. 2009. Constitutive equations for polycrystalline ice. In: Dynamics of Ice Sheets and Glaciers. Springer, Berlin. doi: 10.1007/978‐3‐642‐03415‐2. 52–60.
  • Harrison, S. and Winchester, V., 1998. Historical fluctuations of the Gualas and Reicher Glaciers, North Patagonian Icefield, Chile. The Holocene, 8 (4), 481–485. doi: 10.1191/095968398672334459
  • Harrison, S., Glasser, N.F., Winchester, V., Haresign, E., Warren, C., Duller, G.A.T., Bailey, R., Ivy‐ ochs, S., Jansson, K. and Kublik, P., 2008: Glaciar León, Chilean Patagonia: late‐Holocene chronology and geomorphology. The Holocene, 18 (4), 643–652. doi: 10.1177/0959683607086771
  • Harrison, S., Glasser, N., Winchester, V., Haresign, E., Warren, C. and Jansson, K., 2006. A glacial lake outburst flood associated with recent mountain glacier retreat, Patagonian Andes. The Holocene, 16 (4), 611–620. doi: 10.1191/0959683606hl957rr
  • Harrison, S., Winchester, V. and Glasser, N.F., 2007. The timing and nature of recession of outlet glaciers of Hielo Patagónico Norte, Chile, from their Neoglacial IV (Little Ice Age) maximum positions. Global and Planetary Change, 59, 67–78. doi: 10.1016/j.gloplacha.2006.11.020
  • Kilian, R. and Lamy, F., 2012. A review of glacial and Holocene paleoclimate records from southernmost Patagonia (49°–55°S). Quaternary Science Reviews, 53 (C), 1–23.
  • Kobayashi, S and Saito, T., 1985. Heat balance on Soler Glacier. In: Nakajima, C. (ed.), Glaciological Studies in Patagonia Northern Icefield, 1983–1984. Data Centre for Glacier Research, Japanese Society of Snow and Ice, Nagoya. 46–51.
  • Koch, K., 2009. Improving age estimates for late Holocene glacial landforms using dendrochronology – some examples from Garibaldi Provincial Park, British Columbia. Quaternary Geochronology, 4, 130–139. doi: 10.1016/j.quageo.2008.11.002
  • Koch, K. and Kilian, R., 2005. ‘Little Ice Age’ fluctuations, Gran Campo Nevado, southernmost Chile. The Holocene, 15 (1), 20–28. doi: 10.1191/0959683605hl780rp
  • Lara, A., Villalba, R., Wolodarsky‐franke, A., Aravena, J‐C., Luckman. B.H. and Cuq, E., 2005. Spatial and temporal variation in Nothofagus pumilio growth at tree line along its latitudinal range (35°40; −55°S) in the Chilean Andes. Journal of Biogeography, 32, 879–893. doi: 10.1016/j.quascirev.2012.07.017,
  • Lopez, P., Sirguey, P., Arnaud, Y., Pouyard, B., and Chevallier, P., 2008. Snow cover monitoring in the Northern Patagonia Icefield using MODIS satellite images (2000–2006). Global and Planetary Change, 61 (3–4), 103–116. doi: 10.1016/j.gloplacha.2007.07.005
  • Markgraf, V., Whitlock, C. and Haberle, S., 2007. Vegetation and fire history during the last 18,000 cal yr B.P. in Southern Patagonia: Mallín Pollux, Coyhaique, Province Aisén (45°41′30″ S, 71°50′30″ W, 640 m elevation). Palaeogeography, Palaeoclimatology, Palaeoecology, 254 (3–4), 492–507. doi: 10.1016/j.palaeo.2007.07.008
  • Matsuoka, K., and Naruse, R., 1999. Mass balance features derived from a firn core at Hielo Patagonico Norte. Arctic, Antarctic and Alpine Research, 31, 333–340.
  • Neukom, R., Luterbacher, J., Villalba, R., Küttel, M., Frank, D., Jones, P., Grosjean, M., Esper, J., Lopez, L. and Wanner, H., 2010. Multi‐centennial summer and winter precipitation variability in southern South America. Geophysical Research Letters, 37 (14). doi: 10.1029/2010GL043680
  • Ohata, T., Enomoto, H. and Kondo, H., 1985. Characteristics of ablation at San Rafael. In: Nakajima, C. (ed.), Glaciological Studies in Patagonia Northern Icefield. 1983–1984. Data Centre for Glacier Research, Japanese Society of Snow and Ice, Nagoya. 37–45.
  • Potere, P., 2008. Horizontal positional accuracy of Google Earth's high‐resolution imagery archive. Sensors, 8 (12), 7973–7981. doi: 10.3390/s8127973
  • Powell, R.D., 1991. Grounding‐line systems as second‐order controls on fluctuations of tidewater termini of temperate glaciers. In: Anderson, J.B. and Ashley, G.M. (eds), Glacial Marine Sedimentation: Palaeoclimatic Significance. Geolological Society of America Special Paper, 261, 75–93.
  • Rignot, E., Rivera, A. and Casassa, G., 2003. Contribution of the Patagonia Icefields of South America to sea level rise. Science, 302, 434–437.
  • Rivera, A., Benham, T., Casassa, G., Bamber, J. and Dowdeswell, J.A., 2007. Ice elevation and areal changes of glaciers from the Northern Patagonia Icefield, Chile. Global and Planetary Change, 59, 126–137. doi: 10.1016/j.gloplacha.2006.11.037
  • Schneider, C. and Gies, G., 2004. Effects of El Niño‐southern oscillation on southernmost South America precipitation at 53°S revealed from NCEP‐NCAR reanalyses and weather station doi: 10.1038/ngeo812
  • Sweda, T. 1987. Recent retreat of Soler Glacier, Patagonia as seen from vegetation recovery. Bulletin of Glacier Research, 4, 119–124. doi: 10.1191/0959683606hl957rr
  • Villalba, R., Lara, A., Boninsegna, J.A., Masiokas, M., Delgado, S., Aravena, J.C., Roig, F.A., Schmelter, A., Wolodarsky, A. and Ripalta, A., 2003. Large‐scale temperature changes across the Southern Andes: 20th century variations in the context of the past 400 years. Climatic Change, 59, 177–232.
  • Vimeux, F., de Angelis, M., Ginot, P., Magand, O., Casassa, G., Pouyaud, B., Falourd, S. and Johnsen, S., 2008. A promising location in Patagonia for paleoclimate and paleoenvironmental reconstructions revealed by a shallow firn core from Monte San Valentín (Northern Patagonia Icefield, Chile). Journal of Geophysical Research, 113, D16118, doi: 10.1029/2007JD009502
  • Vince, G., 2010. Energy dams for Patagonia. Science, 329, 382–385.
  • Warren, C.R., 1993. Rapid recent fluctuations of the calving San Rafael Glacier, Chilean Patagonia: climatic or non‐climatic? Geografiska Annaler: Series A, Physical Geography, 75, 111–125.
  • Warren, C.R. and Aniya, M., 1999. The calving glaciers of Southern South America. Global and Planetary Change, 22, 59–77.
  • Warren, C.R., Glasser, N.F., Harrison, S., Winchester, V., Kerr, A. and Rivera, A., 1995. Characteristics of tide‐water calving at Glaciar San Rafael, Chile. Journal of Glaciology, 41 (138), 273–289.
  • Willis, M.J., Melkonian, A.K., Pritchard, M.E. and Ramage, J.M., 2012. Ice loss rates at the Northern Patagonian Icefield derived using a decade of satellite remote sensing. Remote Sensing of Environment, 117, 184–198. doi: 10.1016/j.rse.2011.09.017
  • Winchester, V. and Harrison, S., 2000. Dendrochronology and lichenometry: an investigation into colonization, growth rates and dating on the east side of the North Patagonian Icefield, Chile. Geomorphology, 34 (1–2), 181–194.
  • Winchester, V. and Harrison, S., 1994. A development of the lichenometric method applied to the dating of glacially influenced debris flows in Southern Chile. Earth Surface Processes and Landforms, 19, 137–151. doi: 10.1002/esp.3290190205
  • Winchester, V. and Harrison, S., 1996. Recent oscillations of the San Quintin and San Rafael Glaciers, Patagonian Chile. Geografiska Annaler: Series A, Physical Geography, 78 (1), 35–49.
  • Winchester, V., Harrison, S. and Bailey, R., 2005. A 2.5 kyr luminescence date for a terminal moraine in the Leones valley, southern Chile. Journal of Glaciology, 51 (172), 186–188.
  • Winchester, V., Harrison S., and Warren, C.R., 2001. Recent retreat Glaciar Nef, Chilean Patagonia, dated by lichenometry and dendrochronology. Arctic, Antarctic and Alpine Research, 33 (3), 266–273.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.