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首页> 外文期刊>International journal of applied mechanics >Combining Historical Remote Sensing, Digital Soil Mapping and Hydrological Modelling to Produce Solutions for Infrastructure Damage in Cosmo City, South Africa
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Combining Historical Remote Sensing, Digital Soil Mapping and Hydrological Modelling to Produce Solutions for Infrastructure Damage in Cosmo City, South Africa

机译:结合历史遥感,数字土程和水文模型,为南非宇宙市基础设施损坏生产解决方案

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摘要

Urbanization and hydrology have an interactive relationship, as urbanization changing the hydrology of a system and the hydrology commonly causing structural damage to the infrastructure. Hydrological modelling has been used to quantify the water causing structural impacts, and to provide solutions to the issues. However, in already-urbanized areas, creating a soil map to use as input in the modelling process is difficult, as observation positions are limited and visuals of the natural vegetation which indicate soil distribution are unnatural. This project used historical satellite images in combination with terrain parameters and digital soil mapping methods to produce an accurate (Kappa statistic = 0.81) hydropedology soil map for the Cosmo City suburb in Johannesburg, South Africa. The map was used as input into the HYDRUS 2D and SWAT hydrological models to quantify the water creating road damage at Kampala Crescent, a road within Cosmo City (using HYDRUS 2D), as well as the impact of urbanization on the hydrology of the area (using SWAT). HYDRUS 2D modelling showed that a subsurface drain installed at Kampala Crescent would need a carrying capacity of 0.3 m(3)h(-1)m(-1) to alleviate the road damage, while SWAT modelling shows that surface runoff in Cosmo City will commence with as little rainfall as 2 mmmonth(-1). This project showcases the value of multidisciplinary work. The remote sensing was invaluable to the mapping, which informed the hydrological modelling and subsequently provided answers to the engineers, who could then mitigate the hydrology-related issues within Cosmo City.
机译:城市化和水文具有互动关系,作为城市化改变了系统的水文和水文通常对基础设施造成结构损坏。水文建模已被用于量化导致结构影响的水,并为问题提供解决方案。然而,在已经城市化的区域中,在建模过程中创建土壤图以使用的输入是困难的,因为观察位置是有限的,并且目的植被的视觉植被是不自然的。该项目使用历史卫星图像与地形参数和数字土壤映射方法组合,以生产南非约翰内斯堡宇宙市郊区的准确(kappa统计= 0.81)水利学土壤图。该地图被用作康德利2D和SWAT水文模型的输入,以量化坎帕拉新兴的道路损伤,康斯波城市(利用Hydrus 2D),以及城市化对该地区水文的影响(使用SWAT)。 Hydrus 2D模型表明,安装在坎帕拉新月的地下排水管需要0.3米(3)小时(-1)m(-1)的承载能力,以缓解道路损伤,而SWAT建模表明COSMO市的表面径流将会降雨量的降雨量很少,因为2 mmmonth(-1)。该项目展示了多学科工作的价值。遥感对映射非常宝贵,这让水文建模通知,随后向工程师提供答案,然后可以减轻宇宙市内的水文相关问题。

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