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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Implications of tidally-varying bed stress and intermittent estuarine stratification on fine-sediment dynamics through the Mekong's tidal river to estuarine reach
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Implications of tidally-varying bed stress and intermittent estuarine stratification on fine-sediment dynamics through the Mekong's tidal river to estuarine reach

机译:通过湄公河潮汐迁移到河口迁移率的整个不同床应力和间歇性河口分层对细沉积动力的影响

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River gauging stations are often located upriver of tidal propagation where sediment transport processes and storage are impacted by widely varying ratios of marine to freshwater influence. These impacts are not yet thoroughly understood. Therefore, sediment fluxes measured at these stations may not be suitable for predicting changes to coastal morphology. To characterize sediment transport dynamics in this understudied zone, flow velocity, salinity, and suspended-sediment properties (concentration, size, and settling velocity) were measured within the tidal Song Hau distributary of the lower Mekong River, Vietnam. Fine-sediment aggregation, settling, and trapping rates were promoted by seasonal and tidal fluctuations in near-bed shear stress as well as the intermittent presence of a salt wedge and estuary turbidity maximum. Beginning in the tidal river, fine-grained particles were aggregated in freshwater. Then, in the interface zone between the tidal river and estuary, impeded near-bed shear stress and particle flux convergence promoted settling and trapping. Finally, in the estuary, sediment retention was further encouraged by stratification and estuarine circulation which protected the bed against particle resuspension and enhanced particle aggregation. These patterns promote,mud export (similar to 1.7 t s(-1)) from the entire study area in the high-discharge season when fluvial processes dominate and mud import (similar to 0.25 t s(-1)) into the estuary and interface zone in the low-discharge season when estuarine processes dominate. Within the lower region of the distributaries, morphological change in the form of channel abandonment was found to be promoted within minor distributaries by feedbacks between channel depth, vertical mixing, and aggregate trapping. In effect, this field study sheds light on the sediment trapping capabilities of the tidal river - estuary interface zone, a relatively understudied region upstream of where traditional concepts place sites of deposition, and predicts how fine-sediment dynamics and morphology of large tropical deltas such as the Mekong will respond to changing fluvial and marine influences in the future.
机译:河流测量站往往位于潮汐繁殖的上游,其中沉积物运输过程和储存受到淡水影响的广泛不同比例的影响。这些影响尚未彻底理解。因此,在这些站测量的沉积物通量可能不适合于预测对沿海形态的变化。为了在这种清算区域中表征沉积物传输动力学,在越南下湄公河下的潮汐宋浩分布中测量了流速,盐度和悬浮沉积物(浓度,尺寸和沉降速度)。通过近床剪切应力的季节性和潮汐波动以及盐楔和浅沟浊度最大的间歇性存在,促进了细沉积物聚集,沉降和诱捕率。从潮汐河开始,细粒颗粒在淡水中聚集。然后,在潮汐河和河口之间的界面区,阻碍了近床剪切应力和粒子磁通会聚促进沉降和捕获。最后,在河口中,通过分层和偏移循环进一步鼓励沉积物保留,该循环受到保护床的颗粒重悬浮和增强的颗粒聚集。这些图案促进,泥浆(类似于1.7 TS(-1))从高放电季节中的整个研究区域,当河流过程主导和泥浆进口(类似于0.25ts(-1))到河口和界面区在河口流程支配时,在低放电季节。在分布的下部区域内,发现通道遗弃形式的形态变化通过信道深度,垂直混合和聚集捕获之间的反馈在轻微的分布中促进。实际上,该场研究揭示了潮汐河口界面区的沉积物捕获能力,是传统概念沉积地点的上游地区的一个相对读的地区,并预测大沉积物动力学和大型热带Δ的形态学由于湄公河将来会回应不断变化的河流和海洋影响。

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