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Effectiveness of water infrastructure for river flood management - Part 1: Flood hazard assessment using hydrological models in Bangladesh

机译:水基础设施对河流洪水管理的有效性第1部分:使用水文模型的孟加拉国洪水灾害评估

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This study introduces a flood hazard assessment part of the global flood risk assessment (Part 2) conducted with a distributed hydrological Block-wise TOP (BTOP) model and a GIS-based Flood Inundation Depth (FID) model. In this study, the 20 km grid BTOP model was developed with globally available data on and applied for the Ganges, Brahmaputra and Meghna (GBM) river basin. The BTOP model was calibrated with observed river discharges in Bangladesh and was applied for climate change impact assessment to produce flood discharges at each BTOP cell under present and future climates. For Bangladesh, the cumulative flood inundation maps were produced using the FID model with the BTOP simulated flood discharges and allowed us to consider levee effectiveness for reduction of flood inundation. For the climate change impacts, the flood hazard increased both in flood discharge and inundation area for the 50- and 100-year floods. From these preliminary results, the proposed methodology can partly overcome the limitation of the data unavailability and produces flood maps that can be used for the nationwide flood risk assessment, which is presented in Part 2 of this study.
机译:本研究介绍了全球洪灾风险评估(第2部分)中的洪灾灾害评估部分,该部分通过分布式水文逐块TOP(BTOP)模型和基于GIS的洪水淹没深度(FID)模型进行。在这项研究中,使用恒河,雅鲁藏布江和梅格纳河(GBM)流域的全球可用数据开发了20 km网格BTOP模型。 BTOP模型是使用孟加拉国观察到的河流排放量进行校准的,并用于气候变化影响评估,以在当前和未来气候下在每个BTOP单元产生洪水排放。对于孟加拉国,使用FID模型和BTOP模拟洪水流量制作了累积洪水淹没图,使我们能够考虑堤防有效性以减少洪水淹没。对于气候变化影响,洪水灾害在50年和100年洪水中的洪水排放量和淹没面积都增加了。从这些初步结果来看,所提出的方法可以部分克服数据不可用的局限性,并产生可用于全国洪水风险评估的洪水图,这将在本研究的第2部分中介绍。

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