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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Assessing the relative contributions of the flood tide and the ebb tide to tidal channel network dynamics
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Assessing the relative contributions of the flood tide and the ebb tide to tidal channel network dynamics

机译:评估洪水潮的相对贡献和潮汐频道的潮汐通道网络动态

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摘要

Flood and ebb currents provide different contributions to the initiation and evolution of tidal channel networks, generating diverse network structures and channel cross-sections. In order to separate the effects of these contributions, a physical model of a sloping tidal-flat basin was set up in the laboratory. Depending on the degree of tidal asymmetry imposed offshore, either flood or ebb currents can be enhanced. The experimental results show that the ebb current has a higher capability to initiate and shape tidal networks than the flood current. Headward erosion is mainly induced by the ebb flow. The slightly inclined flat surface tends to reduce the energy of the flood current and to enhance the ebb current, thus prolonging the duration of morphodynamic activity as well as sediment motion. Overall, flood-dominated tides favour the formation of small-scale channel branches in the upper basin zone, while long lasting ebb-dominated tides result in more complex, wider and deeper tidal networks. (c) 2019 John Wiley & Sons, Ltd.
机译:洪水和潮流电流为潮汐通道网络的启动和演进提供了不同的贡献,产生了各种网络结构和频道横截面。为了分离这些贡献的效果,在实验室中建立了倾斜的潮流盆地的物理模型。根据船舶施加的潮汐不对称程度,可以增强洪水或泛滥电流。实验结果表明,EBB电流具有更高的启动和塑造潮汐网络的能力。头部侵蚀主要由退潮流引起。略微倾斜的平坦表面倾向于降低洪水电流的能量,并增强了EBB电流,从而延长了形态学活动的持续时间以及沉积物运动。总体而言,洪水统治潮汐有利于上层盆区中的小规模通道分支,同时持久的EBB主导潮汐导致更复杂,更广泛的潮汐网络。 (c)2019 John Wiley&Sons,Ltd。

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