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Methodology for planning urban green areas: the case of Mexicali, Baja California, Mexico

机译:规划城市绿色地区的方法:Mexicali,Baja California,墨西哥的情况

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The city of Mexicali has 2.1 m~2 public green areas per inhabitant while the national regulation establishes 10 m~2 per inhabitant and the World Health Organization establishes 9 m~2 per inhabitant, therefore there is an important deficit of public green areas. This article presents a methodological proposal for planning urban green areas and its application in Mexicali. The approach is based on a sustainability perspective in which green areas are not only considered from the social point of view as recreational and sporting facilities, but also as urban elements that can contribute to environmental improvement as well as to reducing the global warming effect by capturing carbon dioxide, which is a greenhouse effect gas. The methodological proposal is composed of five phases: organization, inventory, assessment, strategy and management and the development of six groups of components: the physical-urban, technological, environmental, financial-economical, legal-regulatory, and public participation. The green area inventory and its assessment were done according to a classification in twelve subsystems using a Quickbird satellite image with a 2.6 m resolution and data was integrated in a geographical information system (Mapinfo). Criterion is presented at the end of this paper for urban green area allocation, according to the social demands of population and the environmental needs as a result of the carbon dioxide emission by the combustion of fuels from automotive vehicles in the city. In addition, several strategies and instruments were defined for the creation, improvement, and preservation of such areas.
机译:墨西米斯市每居民拥有2.1米〜2个公共绿地,而全国监管规定每居民10米〜2,世界卫生组织每居民建立9米〜2,因此有一个重要的公共绿地缺陷。本文介绍了规划城市绿地的方法论建议及其在墨西米的应用。该方法是基于可持续性的观点,其中绿色地区不仅从社会观点考虑为娱乐和体育设施,而且也是可能导致环境改善的城市元素以及通过捕获来降低全球变暖效果二氧化碳,是温室效果气体。方法论提案由五个阶段组成:组织,库存,评估,战略和管理以及六组组件的发展:物理城市,技术,环境,财务 - 经济,法律监管和公众参与。绿色区域库存及其评估根据12个子系统中的分类,使用2.6米分辨率的Quickbird卫星图像,数据集成在地理信息系统(MapInfo)中。根据人口的社会需求和环境需求,根据人口的社会需求,根据城市的汽车燃烧的燃烧的二氧化碳排放,根据城市的社会需求和环境需求,提供标准。此外,若干策略和文书是为这些领域的创造,改进和保护而定义的。

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