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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Intratidal erosion and deposition rates inferred from field observations of hydrodynamic and sedimentary processes: A case study of a mudflat-saltmarsh transition at the Yangtze delta front
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Intratidal erosion and deposition rates inferred from field observations of hydrodynamic and sedimentary processes: A case study of a mudflat-saltmarsh transition at the Yangtze delta front

机译:从水动力和沉积过程的野外观测推断潮间带侵蚀和沉积速率:以长江三角洲前缘的滩涂-盐沼过渡为例

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An understanding of erosional and depositional processes in intertidal wetland environments is of great importance to coastal geomorphologists, ecologists, and engineers. To evaluate the morphodynamic response of intertidal mudflats and saltmarshes to tidal inundation, we measured water depth, wave activity, current velocity profiles, suspended sediment concentration (SSC), and sediment composition at a dynamic mudflat-saltmarsh transition on eastern Chongming Island, at the Yangtze delta front, China. Based on these data, we calculated bed shear stresses generated by the combined current-wave action (tau(cw)), and the critical shear stress required to erode the surface sediments (tau(ce)), and so were able to calculate the erosional (E) and depositional (D) fluxes. The erodibility parameter (M-E) and settling velocity (w(s)) used in the calculations of E and D were calibrated using daily measurements of bed-level change. Our results showed that the mudflat experienced alternating phases of net erosion and net deposition during tidal inundation. The burst-based changes in bed level ranged from -0.92 (net erosion) to +0.43 mm/10 min, and the cumulative bed-level changes over an entire tidal cycle ranged from approximately 0 to -5.4 mm (net erosion), with an average change of -3.4 mm/tide (net erosion) over five consecutive spring tides. In contrast, only net deposition was recorded on the saltmarsh during our observations. The burst-based changes in bed level ranged from around 0 to +0.56 mm/10 min, and the cumulative changes over a tidal cycle ranged from around 0 to +5 mm, with an average of +2.6 mm/tide for the five consecutive spring tides. We conclude that net erosion and net deposition during tidal cycles alternate on the mudflat, but that only net deposition occurs on the saltmarsh. (C) 2014 Elsevier Ltd. All rights reserved.
机译:对于沿海地貌学家,生态学家和工程师而言,了解潮间带湿地环境中的侵蚀和沉积过程非常重要。为了评估潮间带滩涂和盐沼对潮汐淹没的形态动力响应,我们在崇明岛东部的一个动态泥滩-盐沼过渡处测量了水深,波浪活动,流速分布,悬浮泥沙浓度(SSC)和泥沙成分。长江三角洲前,中国。根据这些数据,我们计算了由组合电流波作用产生的床层剪应力(tau(cw)),以及侵蚀表面沉积物所需的临界剪应力(tau(ce)),因此能够计算出侵蚀(E)和沉积(D)通量。 E和D计算中使​​用的可蚀性参数(M-E)和沉降速度(w(s))是通过每天测量床位变化来校准的。我们的结果表明,滩涂在潮汐淹没期间经历了净侵蚀和净沉积的交替阶段。基于爆发的河床水位变化范围为-0.92(净侵蚀)至+0.43 mm / 10 min,并且整个潮汐周期的累积河床水位变化范围约为0至-5.4 mm(净侵蚀),其中在五个连续的春季潮汐中,平均变化为-3.4毫米/潮汐(净侵蚀)。相反,在我们的观测过程中,盐沼上仅记录了净沉积。基于爆发的河床水位变化范围从0到+0.56 mm / 10 min,潮汐周期内的累积变化范围从0到+5 mm,连续5次平均为+2.6 mm /潮汐春季潮。我们得出的结论是,潮汐周期内的净侵蚀和净沉积在滩涂上交替出现,但盐沼上仅发生净沉积。 (C)2014 Elsevier Ltd.保留所有权利。

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