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首页> 外文期刊>Estuarine Coastal and Shelf Science >Sediment transport on an estuarine intertidal flat: Measurements and conceptual model of waves, rainfall and exchanges with a tidal creek
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Sediment transport on an estuarine intertidal flat: Measurements and conceptual model of waves, rainfall and exchanges with a tidal creek

机译:河口潮间带的泥沙输送:潮汐小溪的波浪,降雨和交换的测量和概念模型

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摘要

Sediment (silt) transport on a wave-dominated estuarine intertidal flat dissected by a tidal creek that connects to the watershed freshwater network is investigated hy analysing field data from Waikopua, New Zealand, and by applying simple models. The intention is to expand understanding beyond the case of the idealised, two-dimensional wave-dominated flat. During fairweather (no waves), there is a continuous exchange of silt between the bed of the tidal creek and the upper flat, and that exchange is controlled by the elevation of the flat with respect to the creek bed. Rainfall in the watershed does not fundamentally alter the way the intertidal flat and the creek interact, but it does increase silt loads in the creek, which in turn increases the amount of silt exchanged with the upper flat. Waves on the flat are fetch-limited, and frictional dissipation causes waves to reduce in height at the edge of the water body. Under some circumstances, a frictional-dissipation zone may occupy the entire middle-plus-upper flat. There is a maximum in wave-orbital speed at the bed (U_(sigb)) in the middle reaches of the flat, which arises from the particular balance between down-fetch wave growth, wave dissipation by bottom friction, and attenuation through the water column of wave-orbital motions under the short-period waves. There is a progressive decoupling of suspended-silt concentration (SSC) from U_(sigb) moving from the bottom to the top of the flat, such that SSC is highest towards the top of the flat, where U_(sigb) is virtually zero. We suggest that this is due to wave activity retarding the settling of suspended silt, and explore that idea with a simple model that is capable of reproducing the essential features of the data set. The results are assimilated in a conceptual model of the system, which shows the balances that control net silt transport in the creek and on the different parts of the flat, three different silt sources, and the role of waves and rainfall. The conceptual model also points at the feedbacks between sediment-transport processes and morphology that are inherent in the system. Implications of those feedbacks to long-term morphodynamics are essentially unexplored.
机译:通过分析来自新西兰怀科普阿的实地数据并应用简单的模型,研究了波浪主导的河口潮间带沉积物(淤泥)的运移,该潮间带连接到分水岭淡水网络。目的是将理解扩展到理想化的二维波为主的平面之外。在晴朗的天气(无波浪)期间,潮汐小溪的河床和上层平坦层之间不断发生淤泥交换,并且这种交换受平坦层相对于小溪层的高度控制。流域的降雨并没有从根本上改变潮间带和小溪相互作用的方式,但确实增加了小溪中的淤泥负荷,这反过来又增加了与上层滩交换的淤泥量。平面上的波浪受到限制,并且摩擦耗散导致波浪在水体边缘降低高度。在某些情况下,摩擦耗散区可能会占据整个中上层平面。在平坦区域的中部,床层的波轨道速度最大(U_(sigb)),这是由于下取波的增长,底部摩擦引起的波耗散和通过水的衰减之间的特殊平衡造成的。短周期波下的波轨道运动列。悬浮泥沙浓度(SSC)从U_(sigb)逐渐从公寓的底部移动到顶部,因此SSC朝向公寓的顶部最高,其中U_(sigb)实际上为零。我们认为这是由于波浪活动阻碍了悬浮泥沙的沉降,并用能够再现数据集基本特征的简单模型探索了这一想法。该结果在系统的概念模型中得到了吸收,该模型显示了控制小河和平坦区域不同部分的净泥沙运移,三种不同泥沙源以及波浪和降雨作用的平衡。概念模型还指出了系统固有的沉积物输送过程和形态之间的反馈。这些反馈对长期形态动力学的影响本质上尚未被探索。

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