日本地球惑星科学連合2015年大会

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セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS21] 南大洋・南極氷床が駆動する全球気候・生態系変動

2015年5月27日(水) 11:00 〜 12:45 301A (3F)

コンビーナ:*池原 実(高知大学海洋コア総合研究センター)、野木 義史(国立極地研究所)、大島 慶一郎(北海道大学低温科学研究所)、座長:田村 岳史(国立極地研究所)

11:15 〜 11:30

[MIS21-02] 過去300万年間における東南極氷床高度変動の復元と温暖地球の氷床ダイナミズムの理解に向けて:南極地域観測第Ⅸ期計画

*菅沼 悠介1奥野 淳一1 (1.国立極地研究所)

Reconstructing past variability of the Antarctic ice sheets is essential to understand their stability and to anticipate their contribution to sea level change as a result of future climate change in a high-CO2 world. Recent studies have reported a significant decrease in thickness of the East Antarctic Ice Sheet (EAIS) during the last several million years. However, the geographical extent of this decrease and subsequent isostatic rebound remain uncertain and a topic of debate. Recently, we reconstructed magnitude and timing of ice sheet retreat at the central part of the Sor Rondane Mountains in Dronning Maud Land, East Antarctica, based on detailed geomorphological survey, cosmogenic exposure dating, and glacial isostatic adjustment modeling (GIA). Three distinct deglaciation phases are identified in this area during the Quaternary and the ice sheet thinning is estimated to be at least 500 m during the Pleistocene. Although this is the first attempt to estimate the absolute thickness of the EAIS thinning during the Quaternary with GIA modeling, local effects, such as regional ice flow and damming, to the ice sheet thickness reconstruction remain unclear. Here, we propose that a new expedition plan for the Japanese Antarctic Research Expedition (JARE) phase Ⅸ program (2015 - 2020 austral summer seasons) for providing a better constraint for the EAIS thickness reconstruction during the last 3 Ma. In this plan, we are going to carry out expeditions in the Belgica and Yamato Mountains. This will contribute further understanding of the glacial dynamism of the EAIS in the warm world and interaction with the reorganization of the Southern Ocean circulation through the moisture transport from the Southern Ocean to the interior.