首页> 外文期刊>中国海洋大学学报(英文版) >Vertical Migration of Fine-Grained Sediments from Interior to Surface of Seabed Driven by Seepage Flows-‘Sub-Bottom Sediment Pump Action’
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Vertical Migration of Fine-Grained Sediments from Interior to Surface of Seabed Driven by Seepage Flows-‘Sub-Bottom Sediment Pump Action’

机译:细流沉积物由渗流驱动的海底内部垂直迁移至海床表面-“下部底泥泵作用”

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摘要

A scientific hypothesis is proposed and preliminarily verified in this paper:under the driving of seepage flows,there might be a vertical migration of tine-grained soil particles from interior to surface of seabed,which is defined as ‘sub-bottom sediment pump action’ in this paper.Field experiments were performed twice on the intertidal flat of the Yellow River delta to study this process via both trapping the pumped materials and recording the pore pressures in the substrate.Experimental results are quite interesting as we did observe yellow slurry which is mainly composed of fine-grained soil particles appearing on the seabed surface;seepage gradients were also detected in the intertidal flat,under the action of tides and small wind waves.Preliminary conclusions are that ‘sediment pump’ occurs when seepage force exceeds a certain threshold:firstly,it is big enough to disconnect the soil particles from the soil skeleton;secondly,the degree of seabed fluidization or bioturbation is big enough to provide preferred paths for the detached materials to migrate upwards.Then they would be firstly pumped from interior to the surface of seabed and then easily re-suspended into overlying water column.Influential factors of ‘sediment pump’ are determined as hydrodynamics (wave energy),degree of consolidation,index of bioturbation (permeability) and content of fine-grained materials (sedimentary age).This new perspective of ‘sediment pump’ may provide some implications for the mechanism interpretation of several unclear geological phenomena in the Yellow River delta area.
机译:本文提出了一个科学的假设并进行了初步验证:在渗流的驱动下,可能会有尖齿颗粒土壤颗粒从海床内部垂直迁移到海床表面,这被定义为“底部沉积物泵作用”。在黄河三角洲的潮间带进行了两次野外试验,通过捕获泵送的物质并记录基质中的孔隙压力来研究这一过程。初步结论是,当渗流力超过一定阈值时,“泥沙泵”就会发生,在潮汐和小风浪的作用下,潮间带也出现了渗流梯度。 :首先,其大小足以使土壤颗粒与土壤骨架分离;其次,海底流化或生物扰动的程度大足以为分离出的物料提供向上迁移的优选路径,然后将它们首先从内部泵送到海床表面,然后轻松地重悬到上覆的水柱中.``泥沙泵''的影响因素被确定为流体动力学(波浪)能量,固结度,生物扰动指数(渗透率)和细粒物质含量(沉积年龄)。这种“沉积泵”的新观点可能为黄河中几种不清楚的地质现象的机理解释提供一些启示。三角洲地区。

著录项

  • 来源
    《中国海洋大学学报(英文版)》 |2017年第1期|15-24|共10页
  • 作者单位

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    College of Marine Geosciences,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Shandong Provincial Key Laboratory of Marine Environment and Geological Engineering,Ocean University of China,Qingdao 266100,P.R.China;

    Functional Laboratory for Marine Geology,Qingdao National Laboratory for Marine Science and Technology,Qingdao 266200,P.R.China;

    College of Environmental Science and Engineering,Ocean University of China,Qingdao 266100,P.R.China;

  • 收录信息 中国科学引文数据库(CSCD);中国科技论文与引文数据库(CSTPCD);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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  • 入库时间 2022-08-19 03:49:05
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