Possible Scenarios for a Micro-Watershed Based on Level of Urbanization: Using Flood Design to Advance Ecohydrological Principles

IF 2.1 Q3 ENVIRONMENTAL SCIENCES Urban science (Basel, Switzerland) Pub Date : 2023-02-15 DOI:10.3390/urbansci7010024
David Campos-Delgado, Carlos Renato Ramos-Palacios, Alicia Anahí Cisneros-Vidales, M. Algara-Siller
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Abstract

Traditional urban schemes that incorporate extended impervious areas can increase surface run-off. Therefore, urban growth that considers eco-hydrological principles can foster sustainability in cities. This work projected three possible urban development patterns for San Luis Potosi’s micro-watershed, characterized by flood design estimations and different urban densities considerations. The selected micro-watershed is located in the western periphery of the city, which is in the process of being urbanized. As the study site is in a semi-arid region where data are scarce, this research used the rational method and the software Rhinoceros for modeling urban scenarios. Models included criteria that allow for comparing a traditional urbanization perspective of what is expected (without green areas) with alternatives that consider green areas as well as different urban densities and that favor eco-hydrological principles. The high urban-density (green area) scenario shows a sustainable alternative for the micro-watershed by which eco-hydrological principles are fostered, as well as an alternative to high urban density without undermining real-estate profitability. Although calculations could be strengthened by using more local data, the results provide insights for urban planners and developers on the sustainable transformation of the micro-watershed.
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基于城市化水平的微流域可能情景:利用洪水设计推进生态水文原则
传统的城市方案包括延伸的不透水区域,可以增加地表径流。因此,考虑生态水文原则的城市增长可以促进城市的可持续性。这项工作预测了圣路易斯波托西微流域的三种可能的城市发展模式,其特点是洪水设计估计和不同的城市密度考虑。选定的微流域位于城市的西部边缘,正处于城市化过程中。由于研究地点位于数据匮乏的半干旱地区,因此本研究使用理性方法和Rhinoceros软件对城市场景进行建模。模型包括一些标准,这些标准允许将传统的城市化前景(没有绿色区域)与考虑绿色区域和不同城市密度并支持生态水文原则的替代方案进行比较。高城市密度(绿化区)场景显示了微流域的可持续替代方案,通过该方案可以促进生态水文原则,以及在不损害房地产盈利能力的情况下实现高城市密度的替代方案。尽管可以通过使用更多的当地数据来加强计算,但研究结果为城市规划者和开发商提供了关于微流域可持续转型的见解。
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来源期刊
CiteScore
4.30
自引率
0.00%
发文量
0
审稿时长
11 weeks
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