日本地球惑星科学連合2022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-CC29] アイスコアと古環境モデリング

2022年5月26日(木) 09:00 〜 10:30 301B (幕張メッセ国際会議場)

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

10:00 〜 10:15

[ACC29-05] 過去30年以上の地上氷床レーダ探査による南極ドームふじ周辺の高解像基盤地形

*津滝 俊1藤田 秀二1,2川村 賢二1,2,3阿部 彩子1,4福井 幸太郎5本山 秀明1,2保科 優6中澤 文男1,2小長谷 貴志4、大野 浩7大藪 幾美1齋藤 冬樹3杉浦 幸之助8鈴木 利孝9 (1.国立極地研究所、2.総合研究大学院大学、3.海洋研究開発機構、4.東京大学、5.立山カルデラ砂防博物館、6.名古屋大学、7.北見工業大学、8.富山大学、9.山形大学)

キーワード:南極氷床、アイスレーダ、基盤地形

The retrieval of continuous ice core records of more than 1 Myr is an important challenge in palaeo-climatology. For identifying suitable sites for drilling such ice, the knowledge of the subglacial topography and englacial layering is crucial. For this purpose, extensive ground-based ice radar surveys have been conducted around Dome Fuji in the East Antarctic plateau during the 2017–2018, 2018–2019 and 2021–2022 austral summers by the Japanese Antarctic Research Expedition, on the basis of ground-based radar surveys over the previous ~30 years. High-gain Yagi antennae were used to improve the antenna beam directivity and thus attain a significant decrease in hyperbolic features in the echoes from mountainous ice-bedrock interfaces. We combined the new ice thickness data with the previous ground-based data since the 1980s to generate an accurate high-spatial resolution (up to 0.25 km between survey lines) ice thickness map. The new map reveals a complex landscape composed of networks of subglacial valleys and highlands. In addition, our map is compared with a few bedrock topography maps compiled by earlier independent efforts based on airborne radar data, to examine the difference in features between the datasets. We also examined geographical and glaciological parameters such as bed roughness, bed slope, driving stress and hydraulic head based on new ice thickness and bed elevation data. These results provide crucial knowledge for decisions of the location for the new drilling.