日本地球惑星科学連合2025年大会

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[E] ポスター発表

セッション記号 A (大気水圏科学) » A-CG 大気海洋・環境科学複合領域・一般

[A-CG37] Water and Sediment Dynamics from Land to Oceans [En]

2025年5月27日(火) 17:15 〜 19:15 ポスター会場 (幕張メッセ国際展示場 7・8ホール)

コンビーナ:Sehgal Dhruv (Project Researcher, University of Tokyo)、山崎 大(東京大学生産技術研究所)、バムナワラ ジャナカ(Tohoku University)、Farahnak Moein(Ecohydrology Research Institute of University of Tokyo)

17:15 〜 19:15

[ACG37-P01] Control of the Taitung Submarine Canyon Connected to the Shoreline and Its Effect on Canyon Activity

Jui-kun Chiu1、Jih-Hsin Chang2、Kuo-Jen Chang3、Nai-Kuang Wu4、Arif Mirza5、Chien-Yu Huang2,5、Ho-Han Hsu2,5、*Cheng-Shing Chiang6 (1.National Museum of Marine Science & Technology, Taiwan - NMMST、2.Institute of Oceanography, National Taiwan University, Taipei, Taiwan - IO NTU、3.Department of Civil Engineering, National Taipei University of Technology, Taiwan - CE NTUT、4.Water Resources Planning Institute, Water Resources Agency, Ministry of Economic Affairs, Taichung, Taiwan - WRPI WRA MOEA、5.Oceanography Center, National Taiwan University, Taipei, Taiwan - OC NTU、6.Department of Geology, National Museum of Natural Science, Taichung, Taiwan - DG NMNS)

キーワード:Beinan River, Taitung Submarine Canyon, morphology, turbidity currents, river-canyon connection, Taiwan

The Beinan River is one of the largest rivers in eastern Taiwan, and it connects with the Taitung Submarine Canyon (TSC), eventually flowing into the Ryukyu Trench. By examining the morphology of the canyon heads through bathymetry data, the TSC presents a tributary of the TSC head and connects to the shoreline. Using seismic profiles and bathymetric mapping, we reveal erosive processes responsible for entrenched channels and slumps on the canyon walls, which are related to turbidity currents along a tributary of the TSC head (Zhiben River mouth). The deposition of fluvial sediments near the head of the canyon can indeed lead to an unstable slope, which is able to facilitate large-scale failure when earthquakes and extreme climate events occur. Such events can significantly alter the landscape and have far-reaching environmental impacts. The river-canyon connection, along with extreme climatic conditions and frequent earthquakes, is favorable for the generation of turbidity currents at the canyon head. The recurrence of turbidity currents has allowed continuous incision of the canyon head and has maintained the connection between the canyon head and the shore during the Holocene sea-level rise.