首页> 外文期刊>Marine Geophysical Research >Input of Glaciomarine Sediments along the East Antarctic Continental Margin; Depositional Processes on the Cosmonaut Sea Continental Slope and Rise and a Regional Acoustic Stratigraphic Correlation from 40° W to 80° E
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Input of Glaciomarine Sediments along the East Antarctic Continental Margin; Depositional Processes on the Cosmonaut Sea Continental Slope and Rise and a Regional Acoustic Stratigraphic Correlation from 40° W to 80° E

机译:南极东部大陆边缘沿线的冰河沉积物输入; 40°W至80°E宇航员海陆坡和上升的沉积过程及区域声波地层相关性

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Multichannel seismic reflection data from the Cosmonaut Sea margin of East Antarctica have been interpreted in terms of depositional processes in the continental slope and rise area. A major sediment lens is present below the upper continental rise along the entire Cosmonaut Sea margin. The lens probably consists of sediments supplied from the shelf and slope, being constantly reworked by westward flowing bottom currents, which redeposited the sediments into a large scale drift deposit prior to the main glaciogenic input along the margin. High-relief semicircular or elongated depositional structures are also found on the upper continental rise stratigraphically above the regional sediment lens, and were deposited by the combined influence of downslope and alongslope sediment transport. On the lower continental rise, large-scale sediment bodies extend perpendicular to the continental margin and were deposited as a result of downslope turbidity transport and westward flowing bottom currents after initiation of glacigenic input to the slope and rise. We compare the seismostratigraphic signatures along the continental margin segments of the adjacent Riiser Larsen Sea, the Weddell Sea and the Prydz Bay/Cooperation Sea, focussing on indications that may be interpreted as a preglacial-glaciomarine transition in the depositional environment. We suggest that earliest glaciogenic input to the continental slope and rise occurred in the Prydz Bay and possibly in the Weddell Sea. At a later stage, an intensification of the oceanic circulation pattern occurred, resulting in the deposition of the regional plastered drift deposit along the Cosmonaut Sea margin, as well as the initiation of large drift deposits in the Cooperation Sea. At an even later stage, possibly in the middle Miocene, glacial advances across the continental shelf were initiated along the Cosmonaut Sea and the Riiser Larsen Sea continental margins.
机译:来自南极东部宇航员海边缘的多通道地震反射数据已经根据大陆坡和上升区的沉积过程进行了解释。在整个宇航员海缘的上大陆上升带之下,存在着一个主要的沉积物透镜。晶状体可能由陆架和斜坡提供的沉积物组成,被向西流动的底部水流不断地重新加工,这些沉积物在沿边缘的主要成冰作用输入之前,将沉积物重新沉积成大规模的漂移沉积物。在区域性沉积晶状体上方的地层上层,也发现了高浮雕的半圆形或细长沉积结构,这些沉积结构是由下坡和沿坡沉积物运移的综合影响而沉积的。在较低的大陆上升段,大规模的沉积体垂直于大陆边缘延伸,并且是由于向斜坡和上升端开始生冰作用后的下坡浊度传输和向西流动的底流而沉积的。我们比较了邻近的Riiser Larsen海,Weddell海和Prydz湾/合作海的大陆边缘地带的地震地层特征,重点研究了可能被解释为沉积环境中冰期-冰川-海洋过渡的迹象。我们建议,最早的冰川成因输入是在普拉兹湾以及可能在韦德尔海发生的大陆斜坡和上升。在随后的阶段,海洋环流模式加剧,导致沿宇航员海沿缘沉积了局部抹灰的漂移沉积物,并在合作海中形成了大的漂移沉积物。在甚至更晚的阶段,可能是在中新世中期,沿着宇航员海和里森拉森海大陆边缘开始了整个大陆架的冰川发展。

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