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On the termination of deep-sea fan channels: Examples from the Rhone Check for Fan (Gulf of Lion, Western Mediterranean Sea)

机译:关于深海粉丝渠道的终止:来自咆哮的风扇校验的例子(狮子湾,西部地中海海湾)

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摘要

The termination of a deep-sea turbiditic channel represents the ultimate sink of terrigenous sediment in the oceans or lakes. Such environment is characterized by rapid slope decrease and by loss of confinement of turbidity currents. It results in the deposition of Channel-Mouth-Lobes that can be separated from the channel mouth by an erosional (scoured) or by-pass dominated Channel-Lobe Transition Zone. Several factors can control the occurrence, extent and morphologic expression of the area such as the slope break angle, the upslope and downslope angle and the mud/sand ratio in flows. Disentangling these factors remains challenging due to the scarcity of outcrops and to the usual faint morphologies and low thickness of deposits. With bathymetric and seismic data we calculated the morphometric parameters of 8 channel-levees and their Channel-Mouth Lobes from the deepest area of the Rhone fan, a mud-sand rich system, and among which the youngest one (called neofan) was deposited at the end of the Last Glacial Maximum between 21.5 and 18.3 ka cal. BR Emplacement and shape (finger-shaped or pear-shaped bulges) of Channel-Mouth Lobes is controlled by the seabed morphology (adjacent channel-levees and salt diapirs). A less prominent morphology of the neofan is attributed to premature quiescence related to the post sea-level rise sediment starvation. We show that the occurrence and expression of a Channel-Lobe Transition Zone is controlled by the gradient upstream of the channel mouth slope break. The extended Channel-Lobe Transition Zone and detached lobe of the neofan are attributed to the high upslope gradient (0.26 degrees) while the less detached or attached lobes of other channel-levees is attributed to lower upslope gradient (0.13 degrees). We show that scouring and scours concatenation into flutes at the ChannelLobe Transition Zone is a major driver for the inception of channels and further confinement of turbidity current. For the first time we show that concatenation of scours in shingled disposition developed an incipient channel sinuosity at this very early stage of channel development. The channel-levee can extend downslope nearly instantaneously by tens of kilometers when isolated nascent channels connect to the channel mouth. (C) 2020 Elsevier B.V. All rights reserved.
机译:深海浊度渠道的终止代表了海洋或湖泊中的人沉积物的终极沉降。这种环境的特点是快速坡度减少,浊度损失浊度损失。它导致沉积通道口叶,其可以通过侵蚀(彻底)或旁路主导的通道过渡区与沟道口分离。若干因素可以控制倾斜断裂角,上升坡和下坡角度等面积的发生,程度和形态学表达以及流动中的泥浆/砂比。由于露头的稀缺以及通常微弱的形态和低厚度的沉积物,解开这些因素仍然具有挑战性。对于碱度和地震数据,我们计算了8个通道平板的形态测量参数,以及来自罗纳风扇的最深区域,泥砂富型系统的最深处,以及沉积最年轻的(称为Neofan)最后的冰川最大末期在21.5和18.3 ka cal之间。沟道口裂片的Br施加和形状(手指形或梨形凸起)由海底形态(相邻的通道 - 堤和盐涂抹物)控制。 Neofan的突出形态不太突出的形态归因于与海拔后级沉积物饥饿相关的过早静脉。我们表明,通道叶片过渡区的发生和表达由通道口斜率断裂的梯度控制。 Neofan的扩展通道叶片过渡区和分离的叶片归因于高上升梯度(0.26度),而其他通道levees的脱离或附着的叶片归因于下坡梯度(0.13度)。我们表明,在Channellobe过渡区的凹槽中彻底划清并进行级联是一个主要驱动器,用于终止通道,进一步禁止浊度电流。我们首次表明,在凸起的处置中的冲刷的串联在渠道开发的这一早期阶段开发了初期的信道。当隔离的新频道连接到通道口时,通道堤坝几乎延长了几十公里的下坡。 (c)2020 Elsevier B.v.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2020年第15期|107368.1-107368.23|共23页
  • 作者单位

    Inst Univ Europeen Mer UMR 6538 Lab Geosci Ocean CNRS Pl Nicolas Copern F-29280 Plouzane France;

    Inst Univ Europeen Mer UMR 6538 Lab Geosci Ocean CNRS Pl Nicolas Copern F-29280 Plouzane France;

    Inst Univ Europeen Mer UMR 6538 Lab Geosci Ocean CNRS Pl Nicolas Copern F-29280 Plouzane France;

    Unite Rech Geosci Marines IFREMER CS 10070 F-29280 Plouzane France;

    Ctr Sci & Tech Jean Feger Total Ave Larribau F-64018 Pau France;

    Univ Barcelona Fac Earth Sci Dept Earth & Ocean Dynam CRG Marine Geosci Barcelona 08028 Spain;

    Univ Barcelona Fac Earth Sci Dept Earth & Ocean Dynam CRG Marine Geosci Barcelona 08028 Spain;

    Univ Barcelona Fac Earth Sci Dept Earth & Ocean Dynam CRG Marine Geosci Barcelona 08028 Spain;

    Inst Univ Europeen Mer UMR 6538 Lab Geosci Ocean CNRS Pl Nicolas Copern F-29280 Plouzane France;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Rhone Fan; Turbidite system; Terminal lobes; Geophysics;

    机译:罗纳风扇;浊度系统;终端裂片;地球物理;

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