日本地球惑星科学連合2021年大会

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セッション記号 A (大気水圏科学) » A-CC 雪氷学・寒冷環境

[A-CC26] アイスコアと古環境モデリング

2021年6月3日(木) 13:45 〜 15:15 Ch.13 (Zoom会場13)

コンビーナ:竹内 望(千葉大学)、阿部 彩子(東京大学大気海洋研究所)、植村 立(名古屋大学 環境学研究科)、川村 賢二(情報・システム研究機構 国立極地研究所)、座長:阿部 彩子(東京大学大気海洋研究所)、川村 賢二(情報・システム研究機構 国立極地研究所)

15:00 〜 15:15

[ACC26-06] 軌道要素や内部フィードバックに対する間氷期(MIS1, 5e, 11)の気候応答の比較分析

*広瀬 凜1、阿部 彩子1、陳 永利1 (1.東京大学)


キーワード:間氷期、内部フィードバック、北米氷床

It is generally believed that the glacial ice volume variations that define the glacial-interglacial cycle are driven by changes in summer insolation at Northern hemisphere high latitudes due to periodic changes in the Earth's orbital elements. However, MIS11, which is known to be one of the warmest interglacials with the highest sea levels, cannot be easily explained by orbital elements and greenhouse gases (GHGs) alone, pointing to the need to consider amplifying feedbacks and broader-scale effects. In this study, we compare the climate simulations of MIS11 with that of MIS1 and MIS5e using a coupled atmosphere-ocean vegetation model (MIROC 4m AOVGCM), focusing on the presence or absence of ice sheets in order to examine the effects of different internal feedbacks on temperature in the Northern Hemisphere high latitudes. The orbital elements, land cover, including ice sheet distribution, and GHGs were fixed every 5000 years as boundary conditions and the experiments were run for more than 3000 years each with appropriate initial conditions. The preliminary results of surface air temperature, sea ice distribution, and albedo at Northern Hemisphere high latitudes and the role of the North American Ice Sheet as well as vegetation change will be discussed.