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Morphological Evolution Of The Dee Estuary, Eastern Irish Sea, Uk: A Tidal Asymmetry Approach

机译:英国东部爱尔兰海迪河口的形态演化:潮汐不对称方法

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Asymmetry in the tide (unequal ebb and flood duration) is a dominant factor in causing residual sediment transport and morphological changes in estuaries. The evolution of estuarine morphology is a process of dynamic equilibrium in the short-term, while these features are ephemeral in the long-term. In this study we investigate the spatial distribution of tidal distortion and asymmetry in the Dee estuary, UK, by 3-dimensional numerical modelling methods. High resolution LIDAR surveys are used to underpin and explain our numerical modelling results in terms of basin hypsometry and areas of recent erosion and deposition. Harmonic analysis of the numerical modelling results showed that the shallower intertidal areas (sand and mud banks) were the most tidally asymmetric, showing flood dominance. The main navigation channels showed some ebb dominance but the tides here were relatively undistorted. This overall flood dominance is likely to induce net sediment import to the Dee, which explains known historical morphological changes (large scale accretion over the last two centuries) and also recent morphological changes as seen from the LIDAR surveys (which show predominantly net accretion between 2003 and 2006). Hypsometrical analysis suggests the Dee may be approaching equilibrium, and that the flood dominance and sedimentation rate may therefore decrease in the future. In an infilling estuary, an increase in the area and elevation of tidal flats can eventually shift an estuary towards ebb dominance, as shown by previous research and by 'idealised estuary' modelling results presented in this study. The large tidal amplitude to hydraulic depth ratio of the Dee, however, suggests that the tidal flats would have to be very extensive indeed for this to occur.
机译:潮汐不对称(潮起潮落不等)是造成残余泥沙输送和河口形态变化的主要因素。河口形态的演变是短期内动态平衡的过程,而长期来看,这些特征是短暂的。在这项研究中,我们通过3维数值建模方法研究了英国Dee河口的潮汐变形和不对称性的空间分布。高分辨率LIDAR调查用于根据盆地测压法和近期侵蚀和沉积区域来支持和解释我们的数值模拟结果。数值模拟结果的谐波分析表明,潮间带较浅的区域(沙土和泥滩)在潮汐上最不对称,显示出洪水优势。主要的导航通道显示出一些退潮,但这里的潮汐相对没有扭曲。这种总体上的洪灾优势很可能导致净泥沙进入迪伊,这解释了已知的历史形态变化(在过去两个世纪中大量吸积)以及最近的形态变化(从LIDAR调查中可以看出(2003年主要是净吸积))。和2006年)。测压分析表明,迪伊可能正在接近平衡,因此洪水的主导地位和沉积率可能会在未来下降。如先前的研究和本研究中提出的“理想化的河口”建模结果所示,在河口充裕的情况下,潮滩面积和海拔的增加最终会使河口向退潮方向转移。然而,Dee的大潮振幅与水深的比值表明,实际上潮汐平面必须非常大。

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