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Design and application of a Sustainable Urban Surface Rating System (SURSIST)

机译:可持续城市表面评级系统(SURSIST)的设计和应用

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摘要

Urban surfaces reflect the economic, environmental and social idiosyncrasy of cities, playing a crucial role in the sustainable development of modern civilizations. Thus, the planning and efficient management of the skin of urban areas provides an opportunity to facilitate the fulfilment of the needs of present and future generations. However, there is a lack of specific tools to evaluate the contribution of these surfaces to achieving the Sustainable Development Goals (SDGs), which is the current framework adopted by the United Nations to measure progress towards sustainability. Consequently, this paper describes the design and application of a Sustainable Urban Surface Rating System (SURSIST) aimed at producing a composite sustainability index to measure the contribution of the land cover of entire cities to meeting the SDGs. SURSIST was based on a series of indicators proposed in accordance to the targets forming the SDGs, which were processed by combining CORINE Land Cover (CLC) maps with the Analytic Hierarchy Process (AHP) and the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS). The application of SURSIST to the Spanish cities of Santander and Valencia during the time period from 1990 to 2006 demonstrated the progressive decrease in sustainability experienced by their urban surfaces due to the increased presence of impermeable covers. The replacement of a moderate part of the built-up area present in both cities in 2006 by greenspace proved to be a solution for recovering the degree of sustainability lost from 1990.
机译:城市表面反映了城市的经济,环境和社会特质,在现代文明的可持续发展中起着至关重要的作用。因此,城市皮肤的规划和有效管理为促进满足当代和后代的需求提供了机会。但是,缺乏评估这些方面对实现可持续发展目标(SDGs)的具体工具,这是联合国用来衡量在可持续性方面取得进展的当前框架。因此,本文描述了可持续城市表面评级系统(SURSIST)的设计和应用,该系统旨在产生综合可持续性指数,以衡量整个城市的土地覆盖对实现SDG的贡献。 SURSIST基于根据形成SDG的目标提出的一系列指标,这些指标是通过将CORINE土地覆盖(CLC)地图与层次分析法(AHP)和“与理想解决方案相似的优先顺序技术”相结合进行处理的(TOPSIS)。从1990年到2006年,SURSIST在西班牙桑坦德和巴伦西亚的城市中的应用表明,由于不透水覆盖层的增加,城市表面的可持续性逐渐下降。事实证明,2006年在这两个城市中用绿地替换了一部分建筑用地,这是恢复1990年以来丧失的可持续性程度的解决方案。

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