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首页> 外文期刊>Journal of Geographic Information System >Spatial Distribution Pattern and Terrain Analysis of Urban Flash Floods and Inundated Areas in Maiduguri Metropolis, Borno State, Northeast, Nigeria
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Spatial Distribution Pattern and Terrain Analysis of Urban Flash Floods and Inundated Areas in Maiduguri Metropolis, Borno State, Northeast, Nigeria

机译:尼日利亚东北部博尔诺州Maiduguri大都会的城市山洪和淹没区域的空间分布格局和地形分析

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Maiduguri metropolis Nigeria, lies on a relatively flat terrain of about 350 meters above sea level and is part of the undulating Borno Plain that slopes towards the Lake Chad. The rapid physical expansion of the metropolis and the annual recurrent flash flooding and inundation problems within the city continues to impact devastating socioeconomic effects on the livelihood of residents sometimes leading to loss of lives and property. It is important therefore to understand the spatial pattern of floods and terrain characteristics in Maiduguri for planning purposes. The paper examined the spatial pattern of urban flash floods and inundations, and the terrain characteristics in Maiduguri metropolis. Digital Terrain Model (DTM) generated from the Shuttle Raddar Topography Mission was used to provide the basis for the terrain analysis to generate hydrological parameters such as elevation, flow accumulation and direction, drainage network and slope angle as well as classified elevation images and terrain wetness index to map out potential flood risk areas. The DTM identified potential areas liable to flash flood and inundation. The 3D Digital Terrain Model (DTM) of the area showed where potential floods or traps were located in the metropolis. The findings further revealed that Maiduguri was generally characterized by low lying locations with slope angles of less than 5 degrees covering an area of 144.4 km2 out of 148 km2 making it extremely difficult to drain. The processed flow accumulation of the study area showed a high flow accumulation pixel value of 19,972 that drained into outlet, suggesting that a large proportion of the study area was getting flooded during a rainstorm. Even though the calculated drainage density of 0.73 for the study area indicated a very good drainage system, this was also undermined by the flat terrain and urbanization. The study recommends for improved land use planning; raising awareness of the residents, provision of more drainages and continued vulnerability mapping improved the functionality of bodies responsible for flood management among others for sustainable flood management in the study area.
机译:迈杜古里(Maiduguri)大都会尼日利亚,位于海拔约350米的相对平坦的地形上,是起伏的博尔诺平原的一部分,该平原向乍得湖倾斜。大都市的快速扩张和城市内部每年不断的山洪泛滥和洪水泛滥的问题继续影响着对居民生活的破坏性社会经济影响,有时甚至导致生命和财产损失。因此,重要的是要了解迈杜古里(Maiduguri)洪水和地形特征的空间格局,以进行规划。本文研究了城市山洪和洪水泛滥的空间格局,以及迈杜古里大都市的地形特征。从航天飞机拉德达地形任务生成的数字地形模型(DTM)用于为地形分析提供基础,以生成水文参数,例如海拔,流量积聚和方向,排水网络和坡度以及分类后的海拔图像和地形湿度索引以绘制潜在的洪水风险区域。 DTM确定了可能引起山洪泛滥和淹没的潜在区域。该区域的3D数字地形模型(DTM)显示了大都市中潜在的洪水或陷阱所在的位置。调查结果进一步表明,迈杜古里的特征通常是地势低洼,倾斜角小于5度,覆盖了148平方公里中的144.4平方公里,这使得排水极为困难。研究区域的处理过的流量累积显示出高的像素累积值19,972,该像素累积到出口中,这表明大部分地区的研究区域在暴雨期间被洪水淹没。尽管计算得出的研究区域的排水密度为0.73,表明排水系统非常好,但平坦的地形和城市化也削弱了排水系统。该研究建议改进土地利用规划;提高居民的意识,提供更多的排水系统以及持续绘制脆弱性图,不仅改善了负责洪水管理的机构的功能,而且还促进了研究区的可持续洪水管理。

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