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首页> 外文期刊>Earth Surface Dynamics Discussions >Observations and scaling of tidal mass transport across the lower Ganges–Brahmaputra delta plain: implications for delta management and sustainability
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Observations and scaling of tidal mass transport across the lower Ganges–Brahmaputra delta plain: implications for delta management and sustainability

机译:跨恒河-布拉马普特拉河下游平原的潮汐质量迁移的观测和尺度:对三角洲管理和可持续性的影响

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The landscape of southwest Bangladesh, a region constructed primarily by fluvial processes associated with the Ganges River and Brahmaputra River, is now maintained almost exclusively by tidal processes as the fluvial system has migrated east and eliminated the most direct fluvial input. In natural areas such as the Sundarbans National Forest, year-round inundation during spring high tides delivers sufficient sediment that enables vertical accretion to keep pace with relative sea-level rise. However, recent human modification of the landscape in the form of embankment construction has terminated this pathway of sediment delivery for much of the region, resulting in a startling elevation imbalance, with inhabited areas often sitting 1 m below mean high water. Restoring this landscape, or preventing land loss in the natural system, requires an understanding of how rates of water and sediment flux vary across timescales ranging from hours to months. In this study, we combine time series observations of water level, salinity, and suspended sediment concentration with ship-based measurements of large tidal-channel hydrodynamics and sediment transport. To capture the greatest possible range of variability, cross-channel transects designed to encompass a 12.4?h tidal cycle were performed in both dry and wet seasons during spring and neap?tides. Regional suspended sediment concentration begins to increase in August, coincident with a decrease in local salinity, indicating the arrival of the sediment-laden, freshwater plume of the combined Ganges–Brahmaputra–Meghna rivers. We observe profound seasonality in sediment transport, despite comparatively modest seasonal variability in the magnitude of water discharge. These observations emphasize the importance of seasonal sediment delivery from the main-stem rivers to this remote tidal region. On tidal timescales, spring tides transport an order of magnitude more sediment than neap tides in both the wet and dry seasons. In aggregate, sediment transport is flood oriented, likely as a result of tidal pumping. Finally, we note that rates of sediment and water discharge in the tidal channels are of the same scale as the annually averaged values for the Ganges and Brahmaputra rivers. These observations provide context for examining the relative importance of fluvial and tidal processes in what has been defined as a quintessentially tidally influenced delta in the classification scheme of Galloway?(1975). These data also inform critical questions regarding the timing and magnitude of sediment delivery to the region, which are especially important in predicting and preparing for responses of the natural system to ongoing environmental?change.
机译:孟加拉国西南部的景观主要由恒河和雅鲁藏布江的河流作用过程构成,现在由于河流系统向东迁移并消除了最直接的河流输入而几乎完全由潮汐过程维持。在Sundarbans国家森林等自然地区,春季涨潮期间全年都被淹没,提供了充足的沉积物,使垂直堆积物能够跟上相对海平面上升的步伐。然而,最近人类以堤防建设的形式对景观进行了改造,从而终止了该区域大部分地区的泥沙输送路径,导致了惊人的海拔高度失衡,居住区通常位于平均高水位以下> 1 m处。恢复这种景观或防止自然系统中的土地流失,需要了解水和泥沙通量的速率在数小时至数月不等的时间范围内如何变化。在这项研究中,我们将水位,盐度和悬浮泥沙浓度的时间序列观测结果与大型潮汐通道水动力和泥沙输送的舰船测量相结合。为了捕获最大的变化范围,在春季和潮汐季节的干燥和潮湿季节都进行了设计为涵盖12.4?h潮汐周期的跨通道样带。 8月,区域悬浮泥沙浓度开始增加,同时当地盐度下降,这表明恒河-布拉马普特拉-梅格纳河合并后,充满泥沙的淡水羽流到达了。尽管排水量的季节性变化相对较小,但我们观察到了沉积物运输的深远季节性。这些观察结果强调了从主干河到偏远潮汐地区季节性输沙的重要性。在潮汐时间尺度上,无论是在潮湿季节还是干燥季节,春季潮汐的潮汐沉积量都比夏季潮汐多。总体而言,可能是潮汐泵送的结果,沉积物的运输以洪水为导向。最后,我们注意到潮汐河道中的沉积物和水排放速率与恒河和雅鲁藏布江的年均值具有相同的规模。这些观察结果为检验在盖洛韦分类方案中定义为典型潮汐影响三角洲的河流和潮汐过程的相对重要性提供了背景(1975)。这些数据还提供了有关向该地区输送沉积物的时间和规模的关键问题,这对于预测和准备自然系统对持续的环境变化的响应尤其重要。

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