基于gis的尼日利亚Uyo大都市城市集水区洪水风险评估

Pub Date : 2022-01-22 DOI:10.47747/ijisi.v2i4.568
Dickson Kinikawo Nsiegbe, V. Weli, G. O. Chukwu-Okeah, Olatunde S Eludovin
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引用次数: 0

摘要

洪水的发生是全球气温上升、降水增加、径流增加以及城市洪水发生率增加的结果。本研究的目的是计算尼日利亚大都市Uyo选定的城市集水区的洪水风险评估。二级数据采用相关研究设计从研究区域的Landsat图像中获得。利用该地区的土地利用监督分类,利用该地区的数字高程模型确定了流域格局、土地利用/土地覆盖和淹没水平。该研究还使用gis辅助的计算机模拟暴雨水,通过增强的DEM来评估暴雨水位和淹没作为土地利用/土地覆盖变化的函数。用于分析数据的水文模型和技术包括暴雨产水评估、淹没模拟、土地覆盖和淹没水平评估以及利用模拟淹没评估山洪易感性。研究结果表明,Uyo有许多不同长度的溪流。根据这项研究,尤约有21个子盆地。在尤尤,总径流量更大(0.74英寸)。在Uyo,集水区降水、节点洪水和径流等集水区行为的变化率随着一天中的时间而增加,而径流量的变化率则有所不同。水文线没有变宽,是因为首都圈中、高洪涝灾害发生率较高(78.03%)。基于这些发现,研究表明需要更好的城市设计来控制研究区域的洪水影响。为防止生命和财产损失,应密切监测易受中高洪水影响的地区,并确保其安全。
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GIS-based Flood Risk Assessment in the Urban Catchment of Uyo Metropolis, Nigeria
Flood occurs as a result of rising global temperatures, more precipitation, increased runoff, and an increase in the rate of urban flooding. The goal of this research is to calculate the flood risk assessment of a selected urban catchment in the Nigerian metropolis of Uyo. Secondary data were obtained from Landsat images of the study area using a correlational research design. Using supervised categorization of landuse in the area, the watershed pattern, landuse/landcover, and inundation level were determined using the area's Digital Elevation Model. The study also used a GIS-assisted computer simulation of storm water created by enhanced DEM to assess storm water level and inundation as a function of landuse/landcover change. Storm water generation assessment, inundation modeling, assessment of land cover and level of inundation, and evaluation of flash flood susceptibility using modeled inundation were among the hydrological models and techniques used to analyze the data. The findings revealed that Uyo has a number of streams with varying flow lengths. Uyo has 21 sub-basins, according to the study. In uyo, the total runoff was greater (0.74) inches. In Uyo, the rate of change in catchment behavior, such as catchment precipitation, node flooding, and runoff, increased with the time of day, whereas the rate of change in runoff volume varied somewhat. The hydrograph was not wider because the sections of Uyo metropolitan that were prone to moderate and high floods were higher (78.03 percent ). Based on these findings, the study suggests that better city design is needed to control the impact of flooding in the study area. To prevent the loss of life and property, areas prone to moderate and high flood vulnerability should be closely monitored and secured.
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