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March 10, 2026Atmospheric Science Letters0 citationsOpen Access

Global Climatic Zones in the Last Glacial Maximum Estimated From Assimilated Temperature Data

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TTTomohiko TomitaDNDaiki NishiokaRSRyu Shimabukuro

Key Points

  • This research aims to estimate the global climatic zones during the Last Glacial Maximum using temperature data.
  • Applied k-means++ clustering algorithm for data analysis
  • Used assimilated temperature data to estimate climatic zones
  • Analyzed latitudinal shifts in climatic boundaries
  • LGM climatic zones shifted southward by approximately 13° on average
  • Boreal summer experienced a greater shift than boreal winter
  • Prominent shifts observed at low latitudes, particularly reaching 16° at tropics boundary

Abstract

ABSTRACT The global climatic zones (GCZs) of the Last Glacial Maximum (LGM) were estimated using the k ‐means++ clustering, an unsupervised machine learning algorithm, to improve the reliability of the LGM GCZs. On average, the LGM GCZ boundaries shifted toward the equator by approximately 13° in latitude. This latitudinal shift was pronounced at low latitudes on seasonal and hemispheric averages, reaching approximately 16° at the tropics/warm temperate boundary. The LGM polar (subpolar) zone in the high latitudes of the Northern Hemisphere expanded markedly during the boreal winter (summer), reflecting ice sheet expansion. The analysis confirms a greater latitudinal shift in the Northern Hemisphere than in the Southern Hemisphere and a greater shift in the boreal summer than in the boreal winter.

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Cite This Study

Tomita et al. (2026) studied this question.

synapsesocial.com/papers/69af950a70916d39fea4c275https://doi.org/10.1002/asl2.70019
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