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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Sediment transport measurements with tracers in very low-energy beaches
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Sediment transport measurements with tracers in very low-energy beaches

机译:在极低能量的海滩中用示踪剂测量沉积物的运移

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This study investigates sediment transport at a very low-energy backbarrier beach in southern Portugal, from a spring-to-neap tide period, during fair-weather conditions. Rates and directions of transport were determined based on the application of fluorescent tracer techniques. Wind and currents were collected locally, whereas the dominant small and short-period wind waves were characterized using a morphodynamic modelling system coupling a circulation model, a spectral wave model, and a bottom evolution model, well validated over the study area. For the recorded conditions sediment transport was small and ebb oriented, with daily transport rates below 0.02m~3day~(-1). Tidal currents (mainly ebb velocities) were found to be the main causative forcing controlling sediment displacements. Transport rates were higher during spring tides, tending towards very small values at neap tides. Results herein reported points towards the distinction between tracer advection and tracer dispersion in this type of environment. Transport by advection was low as a consequence of the prevailing hydrodynamic conditions (H_s<0.1m, and max. current velocity of 0.5ms~(-1)) and the tracer adjustment to the transport layer, whereas dispersion was relatively high (few metres per day). Tracer techniques allowed distinguishing the broad picture of transport, but revealed the need for refinement in this type of environments (bi-directional forcing by ebb and flood cycles).
机译:这项研究调查了从南部到春季,在天气晴朗的情况下,葡萄牙南部一个非常低能量的后屏障海滩的泥沙运移。根据荧光示踪技术的应用确定了运输的速率和方向。风和洋流是在本地收集的,而占优势的小和短周期风波是使用形态动力学建模系统来表征的,该系统结合了循环模型,频谱波模型和底部演化模型,并在研究区域内得到了很好的验证。在记录的条件下,泥沙运移小且呈退潮状态,日运移率低于0.02m〜3day〜(-1)。潮汐流(主要是落潮速度)被发现是控制沉积物位移的主要诱因。春季潮汐中的运输速率较高,在潮汐时趋向于很小的值。本文报道的结果指出在这种类型的环境中示踪剂平流和示踪剂分散之间的区别。由于普遍的水动力条件(H_s <0.1m,最大电流速度为0.5ms〜(-1))和示踪剂对输送层的调节,平流输送量较低,而分散度较高(几米)每天)。示踪剂技术可以区分运输的总体情况,但是揭示了在这种类型的环境中进行改进的必要性(通过潮涨潮跌的双向强迫)。

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