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Decadal flood trends in Bangladesh from extensive hydrographic data

机译:来自广泛的水文数据的孟加拉国的Decadal洪水趋势

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摘要

Bangladesh is a country that comprises much of the world's largest delta, formed from the Ganges, Brahmaputra, and Meghna (GBM) rivers and their tributaries. Flooding is a fact of life in Bangladesh where up to two-thirds of the country is flooded annually from combined monsoonal rains and Himalayan snowmelt. For this reason, understanding flood dynamics on both local and regional scales is critical. However, flood hazard studies to date typically rely on single flooding events to create flood maps and to evaluate flood hazards using satellite imagery. Here we use geographic information systems to analyze weekly water level data from 304 river gauges and over 1200 groundwater gauges from the Bangladesh Water Development Board to determine the spatial and temporal changes in flood depth and extent. These data cover an eight year period from 2002 to 2010 and provide a temporal resolution that match or are better than that of available satellite imagery. Country-wide ground and surface water levels and corresponding annual flooding events were determined along with groundwater level, flooding, and precipitation trends in Bangladesh at multiple scales. We find that while precipitation within the GBM basin has steadily increased through the time series, the average country-wide inundation depth and absolute water level has been decreasing. These respective trends could be attributed to improved flood management strategies in Bangladesh and surrounding countries that are within the GBM basin, as well as fluctuating weather patterns, declining volume of Himalayan snowmelt runoff, dam construction upriver from the GBD both within and outside the Bangladesh border, and increased groundwater abstraction of shallow groundwater aquifers for sustaining life in the eighth most populous country in the world.
机译:孟加拉国是一个由世界上最大的三角洲的国家,由恒河,勃拉姆帕图拉和Meghna(GBM)河流及其支流组成。洪水是孟加拉国生活的事实,最多三分之二的国家每年都从季风雨中和喜马拉雅大昼夜洪水淹没。因此,了解本地和区域尺度的洪水动态至关重要。然而,迄今为止洪水危害研究通常依赖于单次洪水事件来创建洪水图,并使用卫星图像评估洪水危险。在这里,我们使用地理信息系统从304河仪表和来自孟加拉国水开发板的超过1200个地下水量的每周水位数据分析每周水位数据,以确定洪水深度和范围内的空间和时间变化。这些数据从2002年到2010年覆盖了八年期间,并提供了匹配或优于可用卫星图像的时间分辨率。在多种尺度的孟加拉国的地下水位,洪水和降水趋势和地下水位和地表水平和相应的年度洪水趋势以及孟加拉国的地下水位和地表水平。我们发现,虽然GBM盆地的降水通过时间序列稳步增加,但平均全国范围内的淹没深度和绝对水位一直在逐渐降低。这些相应的趋势可以归因于孟加拉国盆地内的孟加拉国及周边国家的洪水管理策略,以及波涛汹涌的天气模式,孟加拉国边境和孟加拉国边境内外的大坝建设上游的大坝施工偏转并且增加了浅层地下水含水层的地下水抽象,在世界上第八个最多的国家的持续生命。

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