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首页> 外文期刊>Continental Shelf Research: A Companion Journal to Deep-Sea Research and Progress in Oceanography >Seismostratigraphic analysis with centennial to decadal time resolution of the sediment sink in the Ganges-Brahmaputra subaqueous delta
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Seismostratigraphic analysis with centennial to decadal time resolution of the sediment sink in the Ganges-Brahmaputra subaqueous delta

机译:恒河-布拉马普特拉地下水三角洲沉积物沉降的百年至年代际解析的地层分析

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The deltas of large rivers have become the focus of many research studies due to their vulnerability in times of expected sea level rise. One major delta in peril is the Ganges-Brahmaputra Delta (Bangladesh) due to its low elevation and high subsidence rate. In this study, high-resolution seismic and sediment echosounder data of the subaqueous part of the delta are analyzed by an integrated seismo-acoustic stratigraphic approach. Transparent Units (TUs) are the most prominent, continuously traceable architectural elements within the sigmoidal clinoform. TUs consist of homogenized sediments and are interpreted to be formed by liquefaction flows generated by subduction-related earthquakes of the nearby plate-boundary. The uppermost TUs are related to the historical well known major earthquakes which occurred in 1762, 1897 and 1950. Using the TUs as time marks the mean annual storage rates for the intervals could be assessed. A direct comparison of echosounder data gathered in 1994, 1997 and 2006 is used as another method to estimate the last decade mean annual storage rate. In general, the averaged decadal to centennial mean annual storage rates in the foreset beds have significantly decreased within the last ~300 years from 22% to 18% and down to 13.8% of the present total annual fluviatile suspension supply to the delta (109ta-1). This decrease, however, is not evenly distributed along the foreset beds. In the western clinoform mean annual storage rates slightly decreased during the last ~300 years, whereas in the eastern clinoform the mean annual storage rate of the last decade is one-third of the initial value in the late eighteenth century. The variation of clinoform slope angles generally coincides with the local accumulation rates but a variable degree of asymmetry gives some new insights in the future trend of the subaqueous delta development. The sink of sediment in the western clinoform depocentre landward of the inflection point, where shape changes from convex to concave, is producing an increase in concavity. The decline in monsoon precipitation over the last centuries is assumed to have significantly contributed to the decreased mean annual storage rate in the eastern clinoform where the convexity of the clinoform increases seaward of the inflection point. It is very likely that the whole depocentre of the fluvial sediment load is shifting toward the western subaqueous delta and to the Swatch of No Ground Canyon and, thereby, increasing the export to the deep-sea fan.
机译:由于在预期海平面上升时期的脆弱性,大河三角洲已成为许多研究的重点。恒河-布拉马普特拉三角洲(孟加拉国)是一个危险的主要三角洲,因为其海拔低且沉降率高。在这项研究中,通过综合的地震声波地层学方法分析了三角洲水下部分的高分辨率地震和沉积物回波数据。透明单元(TU)是S型斜面形式中最突出的,可连续追踪的建筑元素。 TUs由均质的沉积物组成,并被解释为由附近板块边界与俯冲有关的地震产生的液化流形成。最高的TU与历史上众所周知的1762、1897和1950年发生的大地震有关。使用TU作为时间标记,可以评估该间隔的平均年存储率。对1994、1997和2006年收集的echosounder数据进行直接比较是另一种估算过去十年平均年储存率的方法。一般而言,在过去约300年中,前陆床的十年到百年平均年均存储率已从三角洲目前每年可悬浮悬浮液总供应量的22%降至18%并降至13.8%(109ta- 1)。但是,这种减少没有沿着前床均匀分布。在过去的约300年中,西部的斜形年平均储藏率略有下降,而东部的斜形中近十年的年平均储藏率是18世纪后期初始值的三分之一。斜形倾斜角的变化通常与局部堆积速率一致,但是可变的不对称度为水下三角洲发展的未来趋势提供了一些新见识。形状从凸变到凹的西部斜形沉积中心向沉积点的沉积物的沉陷增加了。假定在过去的几个世纪中季风降水的减少是造成东部斜率年平均储藏率下降的主要原因,东部斜率的凸度增加了拐点的海面。整个河流沉积物负荷的分散中心很可能正在向西部水底三角洲和无地面峡谷的色板偏移,从而增加了对深海扇的出口。

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