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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >A simple method to analyse non-cohesive sediment mobility in coastal environment
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A simple method to analyse non-cohesive sediment mobility in coastal environment

机译:一种分析沿海环境非粘性沉积物迁移率的简单方法

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摘要

This paper presents a method to investigate the relative influence of waves, wind-induced currents and tidal currents on sediment mobility in coastal environment. It is based on the assumption that, knowing high uncertainties linked to sediment dynamics studies, simple sediment mobility indicators are sufficient tools to provide useful information. This method is based on five main steps: (1) assessing hydrodynamic conditions and related errors spatially and temporally for an area; (2) evaluating the bottom shear stress induced by these hydrodynamic conditions; (3) providing simple sediment mobility indicators; (4) analysing the sensitivity of these indicators to the existing hydrodynamic uncertainties; (5) interpreting indicators knowing their limits (identified in the sensitivity analysis). This methodology is applied to a test site on the inner shelf, seaward of the Pertuis Charentais region in France. Using wave (SWAN) and sea-level and currents (MARS-2DH) modelling, we study the spatial distribution of the relative contribution of waves, tides and wind-induced current in the non-cohesive sediment mobility under storm conditions. The deduced sediment dynamics indicators reveal the dominant action of waves in sediment initiation in the offshore area, in water depths of up to 60 m. The sensitivity study, performed in order to evaluate the validity of results, shows that the sediment mobility indicators still provide relevant information, even for hydrodynamic uncertainties of +/- 20% or furthermore when only a qualitative sedimentological knowledge of the area is available.
机译:本文提出了一种研究波浪,风生流和潮汐流对沿海环境中沉积物迁移率的相对影响的方法。基于这样的假设,即知道与沉积物动力学研究相关的高度不确定性,简单的沉积物迁移率指标就足以提供有用的信息。该方法基于五个主要步骤:(1)在空间和时间上评估区域的水力条件和相关误差; (2)评估这些水动力条件引起的底部切应力; (3)提供简单的泥沙迁移率指标; (4)分析这些指标对现有水动力不确定性的敏感性; (5)解释知道其极限的指标(在敏感性分析中确定)。此方法适用于法国Pertuis Charentais地区向内的内架测试现场。利用波浪(SWAN)和海平面与海流(MARS-2DH)建模,我们研究了风暴条件下波浪,潮汐和风流对非粘性沉积物迁移的相对贡献的空间分布。推导出的泥沙动力学指标揭示了波浪在近海60 m水深的泥沙引发中的主导作用。为了评估结果的有效性而进行的敏感性研究表明,即使对于该地区仅有定性的沉积学知识,即使对于+/- 20%或更高的流体动力学不确定性,沉积物迁移率指标仍可提供相关信息。

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