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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Sediment delivery, resuspension, and transport in two contrasting canyon environments in the southwest Gulf of Lions
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Sediment delivery, resuspension, and transport in two contrasting canyon environments in the southwest Gulf of Lions

机译:西南狮子湾两个相对的峡谷环境中的泥沙输送,重悬和运输

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Multiple canyons incise the continental slope at the seaward edge of the continental shelf in the Gulf of Lions and are actively involved in the transfer of sediment from shelf to deep sea. Two canyons in the southwest region of the Gulf of Lions, Lacaze-Duthiers Canyon and Cap de Creus Canyon, were instrumented with bottom-boundary-layer tripods in their heads to evaluate the processes involved in sediment delivery, resuspension and transport. In both canyons, intense cold, dense-water flows carry sediment across the slope. In the Lacaze-Duthiers canyon head (located similar to 35 km rom the shoreline), dense-water cascading into the canyon was episodic. Currents were highly variable in the canyon head, and responded to interactions between the along-slope Northern Current and the sharp walls of the canyon. Inertial and other high-frequency fluctuations were associated with suspended-sediment concentrations of similar to 5 mg/l. In Cap de Creus canyon head (located similar to 14 km from the shoreline), downslope currents were higher in magnitude and more persistent than in Lacaze-Duthiers canyon head. Greater suspended-sediment concentrations (peaks up to 20 mg/l) were observed in Cap de Creus Canyon due to resuspension of the canyon seabed during dense-water cascading events. The similarities and contrasts between processes in these two canyon heads emphasize the importance of the interaction of currents with sharp canyon bathymetry. The data also suggest that cold, dense-water flows have more potential to carry sediment to the slope on narrow shelves, and may more efficiently transfer that sediment to the deep sea where a smooth transition between shelf and slope exists. (C) 2008 Elsevier Ltd. All rights reserved.
机译:多个峡谷切开了狮子湾大陆架海向边缘的大陆坡,并积极参与了沉积物从大陆架向深海的转移。狮子湾西南部的两个峡谷Lacaze-Duthiers峡谷和Cap de Creus峡谷在其头部装有底部边界层三脚架,以评估与沉积物输送,重悬和运输有关的过程。在两个峡谷中,强烈的寒冷浓水流将泥沙带过斜坡。在Lacaze-Duthiers峡谷首部(位于距海岸线35公里处类似),浓密的水流向峡谷汇流是偶发性的。峡谷头部的洋流变化很大,并且对沿北坡的北洋流与峡谷的尖锐壁之间的相互作用做出了响应。惯性和其他高频波动与大约5 mg / l的悬浮沉积物浓度有关。在Cap de Creus峡谷头(距海岸线约14 km)中,下坡流的强度比Lacaze-Duthiers峡谷头更大,并且持续时间更长。由于在浓水级联事件期间峡谷海床的重新悬浮,在Cap de Creus峡谷观测到更高的悬浮沉积物浓度(峰值高达20 mg / l)。这两个峡谷头之间的过程之间的相似性和差异强调了利用陡峭峡谷测深法进行水流相互作用的重要性。数据还表明,冷的浓水流更有可能将沉积物运送到狭窄架子上的斜坡,并且可能更有效地将沉积物转移到深海中,在架子和斜坡之间存在平稳过渡。 (C)2008 Elsevier Ltd.保留所有权利。

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