首页> 外文期刊>Palaeogeography, Palaeoclimatology, Palaeoecology: An International Journal for the Geo-Sciences >Seismic stratigraphy along the Amundsen Sea to Ross Sea continental rise: A cross-regional record of pre-glacial to glacial processes of the West Antarctic margin
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Seismic stratigraphy along the Amundsen Sea to Ross Sea continental rise: A cross-regional record of pre-glacial to glacial processes of the West Antarctic margin

机译:沿阿蒙森海至罗斯海大陆上升的地震地层:西极南缘冰前至冰川过程的跨区域记录

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The seismic sediment record of the Amundsen Sea continental rise provides insight into the sedimentation processes from pre-glacial to glacial times, variations in ocean-bottom circulation, early ice sheet growth, and intensification towards the present icehouse regime. Seismic reflection data acquired during the 2010 RV Polarstem and the 2006 RV Tangaroa expeditions, created a >2000 km long continuous Amundsen Sea to Ross Sea seismic transect. Pre-existing lines linked to this transect, connect key seismic stratigraphy horizons from the Ross Sea shelf to the rise and farther along the West Antarctic margin, up to the Amundsen Sea Embayment Seismic units AS-1 to AS-3 constitute the Cretaceous to Eocene pre-glacial (PG) sequence (79-34 Ma), units AS-4 to AS-6 the Eocene to mid-Miocene transitional (T) sequence (34-15.5 Ma), and units AS-7 to AS-11 the mid-Miocene to Quaternary full glacial (FG) climate sequence (15.5-0 Ma). The top PG sequence boundary horizon AS-u3/uPG-T, links to unconformity RSU6 of the Ross Sea shelf and to the base of Unit II of the eastern Amundsen Sea, and is interpreted as the first arrival of grounded ice on the shelf. The top T sequence boundary AS-u6/uT-FG, links to RSU4 and the base of Unit III, and is interpreted as the onset of the FG regime with intensified ice sheet advances onto the outer shelves. The Amundsen Sea basin accumulated up to 3.9 km thick sediments in its centre. Seismic fades geometry analysis suggests Paleocene-Eocene bottom-current activity, late Eocene shelf grounding of the West Antarctic Ice Sheet, and no apparent difference in the deep-sea sediment transport processes or temporal shift in deposition between the Amundsen Sea and Ross Sea. Implications for a Marie Byrd Land uplift starting at-30 Ma are observed by a progressive change in horizon dip in the central Amundsen Sea seismic sequences. (C) 2015 The Authors. Published by Elsevier B.V.
机译:阿蒙森海大陆上升的地震沉积记录提供了从冰川前到冰川时期的沉积过程,海底环流变化,早期冰盖生长以及向当前冰库体制的强化的洞见。在2010年RV Polarstem和2006年RV Tangaroa探险期间获得的地震反射数据创建了一个大于2000公里长的连续的阿蒙森海至罗斯海地震样带。与此断层相连的先前存在的线,将重要的地震地层层连接起来,从罗斯海陆架到上升沿,再沿着南极西部边缘,直至阿蒙森海堤,AS-1至AS-3地震单元构成了白垩纪至始新世冰期前(PG)序列(79-34 Ma),始新世至中新世中期(T)序列的AS-4至AS-6单元(34-15.5 Ma),以及AS-7至AS-11的单元中新世至第四纪全冰川期(15.5-0 Ma)。顶部PG序列边界层位AS-u3 / uPG-T,与罗斯海陆架的不整合RSU6和东阿蒙森海第二单元的底部相连,被解释为陆冰首次到达陆架。最高的T序列边界AS-u6 / uT-FG,连接到RSU4和III单元的底部,并且被解释为FG体制的开始,冰盖增强,该冰阶前进到外部层架上。阿蒙森海盆地在其中心累积了多达3.9公里厚的沉积物。地震衰落几何分析表明,古新世-始新世底部电流活动,南极西部冰原的晚始新世陆架着陆,以及在阿蒙森海和罗斯海之间的深海沉积物传输过程或沉积物的时间变化没有明显差异。通过在阿蒙森海中部地震序列中的水平倾角逐渐变化,可以观察到从30 Ma开始的Marie Byrd陆地隆升的影响。 (C)2015作者。由Elsevier B.V.发布

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