Surface exposure ages of middle–late Pleistocene marine and fluvial terraces along the northern and southern Sanriku coasts, Northeast Japan

IF 3.1 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL Geomorphology Pub Date : 2024-11-04 DOI:10.1016/j.geomorph.2024.109497
Sachi Wakasa , Tatsuya Ishiyama , Daisuke Hirouchi , Nobuhisa Matta , Natsuko Fujita , Tomoo Echigo
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Abstract

To estimate long-term rates of coastal uplift along the northern Pacific coast of Northeast Japan, we determined the surface exposure ages of marine and fluvial terraces based on terrestrial in situ cosmogenic radionuclide dating of exposed bedrock surfaces. Based on reinterpretation of marine and fluvial terraces, we collected samples from the northern and southern Sanriku coast. The surface exposure ages from 10Be concentrations in quartz calculated from the measured 10Be/9Be ratios commonly suggest MIS 5 and MIS 7 for the marine and fluvial terraces and averaged coastal uplift rates of ca. 0.25 ± 0.15 and 0.4 mm/yr along the northern and southern Sanriku coast at intermediate timescales. The results may demonstrate different styles of crustal strain accommodation in the northern Northeast Japan arc above the subducting Pacific plate.
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日本东北部三陆北部和南部海岸中更新世晚期海洋和河流阶地的地表暴露年龄
为了估算日本东北部北太平洋沿岸的长期海岸隆升速率,我们根据暴露基岩表面的陆地原位宇宙放射性核素测年法,确定了海洋和河流阶地的地表暴露年龄。根据对海洋和河流阶地的重新解释,我们在三陆海岸北部和南部采集了样本。根据测得的 10Be/9Be 比率计算出的石英中 10Be 浓度所得出的地表暴露年龄通常表明,海洋阶地和河川阶地的年代为 MIS 5 和 MIS 7,三陆海岸北部和南部的平均海岸隆升速率为大约 0.25 ± 0.15 和 0.4 毫米/年(中时间尺度)。这些结果可能表明,俯冲太平洋板块之上的日本东北弧北部地壳应变容纳方式不同。
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来源期刊
Geomorphology
Geomorphology 地学-地球科学综合
CiteScore
8.00
自引率
10.30%
发文量
309
审稿时长
3.4 months
期刊介绍: Our journal''s scope includes geomorphic themes of: tectonics and regional structure; glacial processes and landforms; fluvial sequences, Quaternary environmental change and dating; fluvial processes and landforms; mass movement, slopes and periglacial processes; hillslopes and soil erosion; weathering, karst and soils; aeolian processes and landforms, coastal dunes and arid environments; coastal and marine processes, estuaries and lakes; modelling, theoretical and quantitative geomorphology; DEM, GIS and remote sensing methods and applications; hazards, applied and planetary geomorphology; and volcanics.
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