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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Comparison of horizontal and downward particle fluxes across canyons of the Gulf of Lions (NW Mediterranean): Meteorological and hydrodynamical forcing
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Comparison of horizontal and downward particle fluxes across canyons of the Gulf of Lions (NW Mediterranean): Meteorological and hydrodynamical forcing

机译:跨越狮子湾(西北地中海)峡谷的水平和向下粒子通量的比较:气象和水动力强迫

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in the framework of the European project EUROSTRATAFORM, an array of six near-bottom mooring lines was deployed in the heads of the major submarine canyons incising the continental slope of the Gulf of Lions (NW Mediterranean). All moorings were equipped with sediment traps, current meters and turbidity Optical Backscatters Sensors (OBS) situated at few meters above the bottom. Particulate mass fluxes were recorded weekly by the sediment traps between November 2003 and May 2004 and compared with horizontal export fluxes obtained from the turbidity and current meters. Results show that near-bottom vertical particulate mass fluxes generally increase along slope between the northeastern-most and the southwestern region of the Gulf of Lions. Horizontal export fluxes also show some increase southwestward with flux in the southwestern-most canyon up to two-orders of magnitude higher than in northeast canyons. Furthermore, most of the export flux is driven by energetic and short events such as marine storms and dense shelf water cascading. Although the consequence of storms and cascading was obvious from traps and OBS measurements, substantial differences between vertical and horizontal fluxes appeared. While sediment traps recorded the largest vertical flux during the autumn storm (4 December) with contributions from river discharge and resuspended material, horizontal flux as obtained from OBS data was highest in winter (21-24 February). We believe that such discrepancies are partly due to measurement artifacts originating from the particle size effects and/or the different height above the bottom occupied by the traps and OBS which complicate comparisons between vertical and horizontal fluxes. However, different watercolumn conditions (stratified versus unstratified) together with the hydrodynamic regime during the two periods appear as a likely explanation for the flux differences between fall and winter storms. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在欧洲项目EUROSTRATAFORM的框架内,在主要海底峡谷的顶部部署了6条近底部的系泊缆线,该缆线切开了狮子湾(地中海西北部)的大陆坡。所有系泊设备均在底部上方几米处配备了沉积物捕集器,电流表和浊度光学反向散射传感器(OBS)。在2003年11月至2004年5月之间,每周通过沉积物陷阱记录颗粒状质量通量,并将其与从浊度计和电流计获得的水平出口通量进行比较。结果表明,接近底部的垂直颗粒质量通量通常沿狮子湾最东北和西南地区之间的坡度增加。水平出口通量也显示出向西南方向的增加,最西南峡谷的通量比东北峡谷的通量高两个数量级。此外,大部分出口流量是由高强度和短暂事件(例如海洋风暴和密集的架子级联)驱动的。尽管从陷阱和OBS测量中可以明显看出暴风雨和级联的后果,但在垂直和水平通量之间仍存在很大差异。尽管在秋季暴风雨(12月4日)期间,沉积物陷阱记录了最大的垂直通量,其中河水流量和悬浮物的贡献最大,但从OBS数据获得的水平通量在冬季(2月21-24日)最高。我们相信,这种差异部分是由于测量伪影而产生的,这些测量伪影是由粒径效应和/或阱和OBS所占据的底部上方不同高度引起的,这使垂直通量和水平通量之间的比较变得复杂。但是,这两个时期内不同的水柱条件(分层与非分层)以及流体动力学状态似乎可以解释秋季风暴和冬季风暴之间的通量差异。 (C)2008 Elsevier Ltd.保留所有权利。

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