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A Reevaluation of the Munson-Nygren-Retriever Submarine Landslide Complex, Georges Bank Lower Slope, Western North Atlantic

机译:对北大西洋西部Georges Bank下坡的Munson-Nygren-Retriever海底滑坡综合体的重新评估

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The Munson-Nygren-Retriever (MNR) landslide complex is a series of distinct submarine landslides located between Nygren and Powell canyons on the Georges Bank lower slope. These landslides were first imaged in 1978 using widely-spaced seismic reflection profiles and were further investigated using continuous coverage GLORIA sidescan imagery collected over the landslide complex in 1987. Recent acquisition of high-resolution multibeam bathymetry across these landslides has provided an unprecedented view of their complex morphology and allows for a more detailed investigation of their evacuation and deposit morphologies and sizes, modes of failure, and relationship to the adjacent sections of the margin, including the identification of an additional landslide within the MNR complex, referred to here as the Pickett slide. The evacuation zone of these landslides covers an area of approximately 1,780 km2. The headwalls of these landslides are at a depth of approximately 1,800 m, with evacuation extending for approximately 60 km downslope to the top of the continental rise. High-relief debris deposits, in the form of blocks and ridges, are present down the length of the majority of the evacuation zones and within the deposition area at the base of the slope. On the continental rise, the deposits from each of the most recent failures of the MNR complex landslides merge with debris from earlier continental slope failures, canyon and along-slope derived deposits, and prominent upper-rise failures.
机译:Munson-Nygren-Retriever(MNR)滑坡群是一系列明显的海底滑坡,位于Georges Bank下坡的Nygren和Powell峡谷之间。这些滑坡于1978年首次使用大范围的地震反射剖面成像,并使用1987年在滑坡复合体上收集的连续覆盖GLORIA侧扫描图像进行了进一步研究。最近在这些滑坡上获得的高分辨率多光束测深技术为其提供了前所未有的视角复杂的形态,并允许对其疏散和沉积物的形态,大小,破坏模式以及与边缘相邻部分的关系进行更详细的研究,包括在MNR复杂区内识别出另一处滑坡,在此称为Pickett滑动。这些滑坡的疏散区覆盖约1,780平方千米。这些滑坡的顶壁深度约为1800 m,疏散延伸到大陆上升段顶部约60 km的下坡。块状和山脊状的高浮屑沉积物存在于大多数疏散区的长度范围内,并位于斜坡底部的沉积区域内。在大陆上升时,MNR复杂滑坡的每一次最新破坏产生的沉积物与早期大陆斜坡破坏,峡谷和沿山坡衍生的沉积物以及明显的高层上升破坏所产生的碎屑合并。

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