日本地球惑星科学連合2019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

2019年5月28日(火) 09:00 〜 10:30 201B (2F)

コンビーナ:植村 立(琉球大学 理学部)、川村 賢二(情報・システム研究機構 国立極地研究所)、阿部 彩子(東京大学大気海洋研究所)、竹内 望(千葉大学)、座長:植村 立(琉球大学)、大藪 幾美(国立極地研究所)

10:15 〜 10:30

[ACC26-06] Estimation of snow surface patterns from the coast to the inland, Dome-Fuji Station, of Antarctica, using camera images

*杉浦 幸之助1渡辺 健吾1平沢 尚彦2川村 賢二2中澤 文男2大野 浩3藤田 秀二2大藪 幾美2山内 恭2本山 秀明2 (1.富山大学、2.国立極地研究所、3.北見工業大学)

キーワード:デューン、バルハン、サスツルギ、光沢雪面、リップル

Snow surface patterns in Antarctica are of practical concern and are important from the standpoint of developing an optimum route in Antarctica. In this study, we estimate snow surface patterns from the coast to the inland of Antarctica using camera images during JARE-59. The interval camera was used to capture the image of snow surface. Snow surface was photographed from November 13, 2017 to December 9, 2017. The number of images from the southern latitude of 69 degrees to 77 degrees was about 14,000 sheets. One sheet was divided into eight zones to distinguish a small-scale snow surface pattern. The pattern of snow surface was classified in three kinds such as 1) deposition, 2) equilibrium, and 3) erosion. We judged the snow surface patterns by sight. When Snow dune/Snow barchan was observed, it was classified as a deposition pattern. When Sastrugi/Glazed surface was observed, it was classified as an erosion pattern. In addition, when snow ripples were observed, it was classified as an equilibrium pattern.
The result of our analysis shows that the frequency of the deposition pattern decreases as latitude rises to 73 degrees south (Katabatic wind region) and then it increases slightly. In contrast, the frequency of the erosion pattern increases as latitude rises to 73 degrees south above which it decreases slightly. On the other hand, there have been no outstanding changes in the equilibrium pattern. The analyzed results of latitude dependence agree with the previous research qualitatively. However, the dominant surface pattern in the inland plateau region was still the erosion pattern. Since we analyzed the data of the outward trip, it is necessary to analyze the data of the return trip from the inland to the coast and to investigate a time scale of the surface pattern changes.