日本地球惑星科学連合2023年大会

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[J] オンラインポスター発表

セッション記号 M (領域外・複数領域) » M-IS ジョイント

[M-IS08] 南大洋・南極氷床が駆動する全球気候変動

2023年5月26日(金) 15:30 〜 17:00 オンラインポスターZoom会場 (10) (オンラインポスター)

コンビーナ:草原 和弥(海洋研究開発機構)、箕輪 昌紘(北海道大学・低温科学研究所)、野木 義史(国立極地研究所)、関 宰(北海道大学低温科学研究所)

現地ポスター発表開催日時 (2023/5/26 17:15-18:45)

15:30 〜 17:00

[MIS08-P03] Transient simulation of Antarctic ice sheet using a high-resolution numerical ice-sheet model for oldest-ice core topic.

*齋藤 冬樹1小長谷 貴志2阿部 彩子2 (1.国立研究開発法人海洋研究開発機構、2.東京大学大気海洋研究所)

キーワード:南極氷床

Ice divides are important locations for deep drilling on ice-sheets. Precise computation around a divide requires spatially very high resolution due to the characteristics of ice-flow around the divide. There are several methods to compute the age of ice. One is to apply a very high resolution 1-d column model on target sites. In this case the history of ice-sheet thickness and velocity is needed to be specified, which can be obtained using 3-d transient ice sheet models. Starting from Saito (2002), a series of numerical experiments of Antarctic ice sheet using an ice-sheet model IcIES has been presented, with repeating major and minor changes around the ice-sheet model and its configuration.Possibility of changes in the position and elevation of Dome Fuji and changes in the long-term ice-sheet volume, driven by the evolution of glacial/interglacial climate, as well as a variety of ice-grounded area have been discussed.
In this study, the work of Saito et al (2018, JpGU) is once more updated using a latest version of IcIES with higher resolution (8km). Several improvements are included from the previous study: Update of the reference bedrock topography; Improving vertical resolution; etc.