Articles | Volume 9, issue 1
https://doi.org/10.5194/cp-9-119-2013
https://doi.org/10.5194/cp-9-119-2013
Research article
 | 
22 Jan 2013
Research article |  | 22 Jan 2013

Past climate changes and permafrost depth at the Lake El'gygytgyn site: implications from data and thermal modeling

D. Mottaghy, G. Schwamborn, and V. Rath

Related authors

Sediment history mirrors Pleistocene aridification in the Gobi Desert (Ejina Basin, NW China)
Georg Schwamborn, Kai Hartmann, Bernd Wünnemann, Wolfgang Rösler, Annette Wefer-Roehl, Jörg Pross, Marlen Schlöffel, Franziska Kobe, Pavel E. Tarasov, Melissa A. Berke, and Bernhard Diekmann
Solid Earth, 11, 1375–1398, https://doi.org/10.5194/se-11-1375-2020,https://doi.org/10.5194/se-11-1375-2020, 2020
Short summary
Spatial distribution of environmental indicators in surface sediments of Lake Bolshoe Toko, Yakutia, Russia
Boris K. Biskaborn, Larisa Nazarova, Lyudmila A. Pestryakova, Liudmila Syrykh, Kim Funck, Hanno Meyer, Bernhard Chapligin, Stuart Vyse, Ruslan Gorodnichev, Evgenii Zakharov, Rong Wang, Georg Schwamborn, Hannah L. Bailey, and Bernhard Diekmann
Biogeosciences, 16, 4023–4049, https://doi.org/10.5194/bg-16-4023-2019,https://doi.org/10.5194/bg-16-4023-2019, 2019
Short summary
Substrate potential of last interglacial to Holocene permafrost organic matter for future microbial greenhouse gas production
Janina G. Stapel, Georg Schwamborn, Lutz Schirrmeister, Brian Horsfield, and Kai Mangelsdorf
Biogeosciences, 15, 1969–1985, https://doi.org/10.5194/bg-15-1969-2018,https://doi.org/10.5194/bg-15-1969-2018, 2018
Short summary
Transient modeling of the ground thermal conditions using satellite data in the Lena River delta, Siberia
Sebastian Westermann, Maria Peter, Moritz Langer, Georg Schwamborn, Lutz Schirrmeister, Bernd Etzelmüller, and Julia Boike
The Cryosphere, 11, 1441–1463, https://doi.org/10.5194/tc-11-1441-2017,https://doi.org/10.5194/tc-11-1441-2017, 2017
Short summary
Correcting for static shift of magnetotelluric data with airborne electromagnetic measurements: a case study from Rathlin Basin, Northern Ireland
Robert Delhaye, Volker Rath, Alan G. Jones, Mark R. Muller, and Derek Reay
Solid Earth, 8, 637–660, https://doi.org/10.5194/se-8-637-2017,https://doi.org/10.5194/se-8-637-2017, 2017
Short summary

Related subject area

Subject: Continental Surface Processes | Archive: Terrestrial Archives | Timescale: Pleistocene
Climate changes during the Late Glacial in southern Europe: new insights based on pollen and brGDGTs of Lake Matese in Italy
Mary Robles, Odile Peyron, Guillemette Ménot, Elisabetta Brugiapaglia, Sabine Wulf, Oona Appelt, Marion Blache, Boris Vannière, Lucas Dugerdil, Bruno Paura, Salomé Ansanay-Alex, Amy Cromartie, Laurent Charlet, Stephane Guédron, Jacques-Louis de Beaulieu, and Sébastien Joannin
Clim. Past, 19, 493–515, https://doi.org/10.5194/cp-19-493-2023,https://doi.org/10.5194/cp-19-493-2023, 2023
Short summary
Late Pleistocene glacial chronologies and paleoclimate in the northern Rocky Mountains
Brendon J. Quirk, Elizabeth Huss, Benjamin J. C. Laabs​​​​​​​, Eric Leonard, Joseph Licciardi, Mitchell A. Plummer, and Marc W. Caffee
Clim. Past, 18, 293–312, https://doi.org/10.5194/cp-18-293-2022,https://doi.org/10.5194/cp-18-293-2022, 2022
Short summary
Cryogenic cave carbonates in the Dolomites (northern Italy): insights into Younger Dryas cooling and seasonal precipitation
Gabriella Koltai, Christoph Spötl, Alexander H. Jarosch, and Hai Cheng
Clim. Past, 17, 775–789, https://doi.org/10.5194/cp-17-775-2021,https://doi.org/10.5194/cp-17-775-2021, 2021
Short summary
Younger Dryas ice margin retreat in Greenland: new evidence from southwestern Greenland
Svend Funder, Anita H. L. Sørensen, Nicolaj K. Larsen, Anders A. Bjørk, Jason P. Briner, Jesper Olsen, Anders Schomacker, Laura B. Levy, and Kurt H. Kjær
Clim. Past, 17, 587–601, https://doi.org/10.5194/cp-17-587-2021,https://doi.org/10.5194/cp-17-587-2021, 2021
Short summary
Pleistocene glacial history of the New Zealand subantarctic islands
Eleanor Rainsley, Chris S. M. Turney, Nicholas R. Golledge, Janet M. Wilmshurst, Matt S. McGlone, Alan G. Hogg, Bo Li, Zoë A. Thomas, Richard Roberts, Richard T. Jones, Jonathan G. Palmer, Verity Flett, Gregory de Wet, David K. Hutchinson, Mathew J. Lipson, Pavla Fenwick, Ben R. Hines, Umberto Binetti, and Christopher J. Fogwill
Clim. Past, 15, 423–448, https://doi.org/10.5194/cp-15-423-2019,https://doi.org/10.5194/cp-15-423-2019, 2019
Short summary

Cited articles

Annan, J. D. and Hargreaves, J. C.: A new global reconstruction of temperature changes at the {L}ast {G}lacial {M}aximum, Clim. Past Discuss., 8, 5029–5051, https://doi.org/10.5194/cpd-8-5029-2012, 2012.
Asikainen, C., Francus, P., and Brigham-Grette, J.: Sedimentology, clay mineralogy and grain-size as indicators of 65 ka of climate change from El'gygytgyn {C}rater {L}ake, {N}ortheastern {S}iberia, J. Paleolimnol., 37, 105–122, https://doi.org/10.1007/s10933-006-9026-5, 2007.
Beardsmore, G. R. and Cull, J. P.: Crustal Heat Flow, Cambridge University Press, 2001.
Beck, A. E.: Methods for determining thermal conductivity and thermal diffusivity, in: Handbook of terrestrial heat-flow density determination, edited by: Hänel, R., Rybach, L., and Stegena, L., Kluwer, Dordrecht, 1988.
Beck, A. E., Shen, P. Y., Beltrami, H., Mareschal, J.-C., Šafanda, J., Sebagenzi, M. N., Vasseur, G., and Wang, K.: A comparison of five different analyses in the interpretation of five borehole temperature data sets, Palaeogeogr. Palaeocl., (GPC section), 98, 101–112, 1992.