A new perspective on permafrost boundaries in France during the Last Glacial Maximum
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Published:2021-12-10
Issue:6
Volume:17
Page:2559-2576
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ISSN:1814-9332
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Container-title:Climate of the Past
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language:en
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Short-container-title:Clim. Past
Author:
Stadelmaier Kim H.ORCID, Ludwig PatrickORCID, Bertran Pascal, Antoine Pierre, Shi Xiaoxu, Lohmann GerritORCID, Pinto Joaquim G.ORCID
Abstract
Abstract. During the Last Glacial Maximum (LGM), a very cold and dry period around 26.5–19 kyr BP, permafrost was widespread across Europe. In this
work, we explore the possible benefit of using regional climate model data to
improve the permafrost representation in France, decipher how the
atmospheric circulation affects the permafrost boundaries in the models, and
test the role of ground thermal contraction cracking in wedge development
during the LGM. With these aims, criteria for possible thermal contraction
cracking of the ground are applied to climate model data for the first time.
Our results show that the permafrost extent and ground cracking regions
deviate from proxy evidence when the simulated large-scale circulation in both
global and regional climate models favours prevailing westerly winds. A
colder and, with regard to proxy data, more realistic version of the LGM climate
is achieved given more frequent easterly winds conditions. Given the
appropriate forcing, an added value of the regional climate model simulation
can be achieved in representing permafrost and ground thermal contraction
cracking. Furthermore, the model data provide evidence that thermal
contraction cracking occurred in Europe during the LGM in a wide latitudinal
band south of the probable permafrost border, in agreement with field data
analysis. This enables the reconsideration of the role of sand-wedge casts to
identify past permafrost regions.
Funder
Helmholtz-Gemeinschaft AXA Research Fund
Publisher
Copernicus GmbH
Subject
Paleontology,Stratigraphy,Global and Planetary Change
Reference123 articles.
1. Andrieux, E., Bertran, P., Antoine, P., Deschodt, L., Lenoble, A., Coutard, S., Ajas, A., Borderie, Q., Coutard, J.-P., Didierjean, F., Dousteyssier, B., Ferrier, C., Gardère, P., Gé, T., Liard, M., Locht, J.-L., Naton, H.-G., Rué, M., Sitzia, L., Van Vliet-Lanoe, B., and Vernet, G.: Database of pleistocene periglacial featuresin France: description of the online version, Quaternaire, 27, 329–339, https://doi.org/10.4000/quaternaire.7717, 2016a (data available at: https://afeqeng.hypotheses.org/487, last access: 6 December 2021). a 2. Andrieux, E., Bertran, P., and Saito, K.: Spatial analysis of the French Pleistocene permafrost by a GIS database, Permafrost. Periglac., 27, 17–30, https://doi.org/10.1002/ppp.1856, 2016b. a, b, c, d, e, f 3. Andrieux, E., Bateman, M. D., and Bertran, P.: The chronology of Late Pleistocene thermal contraction cracking derived from sand wedge OSL dating in central and southern France, Global Planet. Change, 162, 84–100, https://doi.org/10.1016/j.gloplacha.2018.01.012, 2018. a, b, c 4. Annan, J. D. and Hargreaves, J. C.: A new global reconstruction of temperature changes at the Last Glacial Maximum, Clim. Past, 9, 367–376, https://doi.org/10.5194/cp-9-367-2013, 2013. a, b 5. Antoine, P., Catt, J., Lautridou, J.-P., and Sommé, J.: The loess and coversands of northern France and southern England, J. Quaternary Sci., 18, 309–318, https://doi.org/10.1002/jqs.750, 2003. a
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