Articles | Volume 9, issue 4
https://doi.org/10.5194/cp-9-1697-2013
https://doi.org/10.5194/cp-9-1697-2013
Research article
 | Highlight paper
 | 
01 Aug 2013
Research article | Highlight paper |  | 01 Aug 2013

LGM permafrost distribution: how well can the latest PMIP multi-model ensembles perform reconstruction?

K. Saito, T. Sueyoshi, S. Marchenko, V. Romanovsky, B. Otto-Bliesner, J. Walsh, N. Bigelow, A. Hendricks, and K. Yoshikawa

Related authors

Numerical model to simulate long-term soil organic carbon and ground ice budget with permafrost and ice sheets (SOC-ICE-v1.0)
Kazuyuki Saito, Hirokazu Machiya, Go Iwahana, Tokuta Yokohata, and Hiroshi Ohno
Geosci. Model Dev., 14, 521–542, https://doi.org/10.5194/gmd-14-521-2021,https://doi.org/10.5194/gmd-14-521-2021, 2021
Short summary
Links between annual surface temperature variation and land cover heterogeneity for a boreal forest as characterized by continuous, fibre-optic DTS monitoring
Kazuyuki Saito, Go Iwahana, Hiroki Ikawa, Hirohiko Nagano, and Robert C. Busey
Geosci. Instrum. Method. Data Syst., 7, 223–234, https://doi.org/10.5194/gi-7-223-2018,https://doi.org/10.5194/gi-7-223-2018, 2018
Short summary
Past, present and future biomes in Beringia: Comparison between simulations and pollen analysis
Kazuyuki Saito, Amy Hendricks, John Walsh, and Nancy Bigelow
Clim. Past Discuss., https://doi.org/10.5194/cp-2018-29,https://doi.org/10.5194/cp-2018-29, 2018
Preprint withdrawn
Short summary
Assessment of model estimates of land-atmosphere CO2 exchange across Northern Eurasia
M. A. Rawlins, A. D. McGuire, J. S. Kimball, P. Dass, D. Lawrence, E. Burke, X. Chen, C. Delire, C. Koven, A. MacDougall, S. Peng, A. Rinke, K. Saito, W. Zhang, R. Alkama, T. J. Bohn, P. Ciais, B. Decharme, I. Gouttevin, T. Hajima, D. Ji, G. Krinner, D. P. Lettenmaier, P. Miller, J. C. Moore, B. Smith, and T. Sueyoshi
Biogeosciences, 12, 4385–4405, https://doi.org/10.5194/bg-12-4385-2015,https://doi.org/10.5194/bg-12-4385-2015, 2015
Short summary

Related subject area

Subject: Climate Modelling | Archive: Modelling only | Timescale: Pleistocene
Contrasting the Penultimate Glacial Maximum and the Last Glacial Maximum (140 and 21 ka) using coupled climate–ice sheet modelling
Violet L. Patterson, Lauren J. Gregoire, Ruza F. Ivanovic, Niall Gandy, Jonathan Owen, Robin S. Smith, Oliver G. Pollard, Lachlan C. Astfalck, and Paul J. Valdes
Clim. Past, 20, 2191–2218, https://doi.org/10.5194/cp-20-2191-2024,https://doi.org/10.5194/cp-20-2191-2024, 2024
Short summary
Contrasting responses of summer precipitation to orbital forcing in Japan and China over the past 450 kyr
Taiga Matsushita, Mariko Harada, Hiroaki Ueda, Takeshi Nakagawa, Yoshimi Kubota, Yoshiaki Suzuki, and Youichi Kamae
Clim. Past, 20, 2017–2029, https://doi.org/10.5194/cp-20-2017-2024,https://doi.org/10.5194/cp-20-2017-2024, 2024
Short summary
Stretched polar vortex increases mid-latitude climate variability during the Last Glacial Maximum
Yurui Zhang, Hans Renssen, Heikki Seppä, Zhen Li, and Xingrui Li
Clim. Past Discuss., https://doi.org/10.5194/cp-2024-46,https://doi.org/10.5194/cp-2024-46, 2024
Revised manuscript accepted for CP
Short summary
Investigating similarities and differences of the penultimate and last glacial terminations with a coupled ice sheet–climate model
Aurélien Quiquet and Didier M. Roche
Clim. Past, 20, 1365–1385, https://doi.org/10.5194/cp-20-1365-2024,https://doi.org/10.5194/cp-20-1365-2024, 2024
Short summary
Last Glacial Maximum climate and atmospheric circulation over the Australian region from climate models
Yanxuan Du, Josephine R. Brown, and J. M. Kale Sniderman
Clim. Past, 20, 393–413, https://doi.org/10.5194/cp-20-393-2024,https://doi.org/10.5194/cp-20-393-2024, 2024
Short summary

Cited articles

Alexeev, V. A., Nicolsky, D. J., Romanovsky, V. E., and Lawrence, D. M.: An evaluation of deep soil configurations in the CLM3 for improved representation of permafrost, Geophys. Res. Lett., 34, L09502, https://doi.org/10.1029/2007GL029536, 2007.
Anisimov, O. A. and Nelson, F. E.: Permafrost Zonation and climate change in the Northern Hemisphere: Results from transient general circulation models, Climate Change, 35, 241–258, 1997.
Argus, D. F. and Peltier, W. R.: Constraining models of postglacial rebound using space geodesy: A detailed assessment of model ICE-5G (VM2) and its relatives, Geophys. J. Int., 181, 697–723, https://doi.org/10.1111/j.1365-246X.2010.04562.x, 2010.
Baulin, V. V. and Danilova, N. S.: Dynamics of Late Quaternary permafrost in Siberia, in: Late Quaternary environments of the Soviet Union, edited by: Velichko, A. A., University of Minesota Press, Minneapolis, 69–78, 1984.
Baulin, V. V., Danilova, N. S., Nechayev, V. P., Péwé, T. L., and Velichko, A. A.: Permafrost: Maximum cooling of the Last Glaciation (about 20,000 to 18,000 yrB.P.), in: Atlas of Paleoclimates and Paleoenvironments of the Northern Hemisphere, edited by: Frenzel, B., Pécsi, M., and Velichko, A. A., Geographical Research Institute, Hungarian Academy of Sciences, Budapest, Gustav Fischer Verlag, Stuttgart, p. 49, 1992.