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Assessing urban environmental segregation (UES). The case of Santiago de Chile

机译:评估城市环境隔离。智利圣地亚哥案

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摘要

Urban environmental segregation (UES) would differentiate between the environment of poor people and the environment of rich people. We apply selected indicators for the urban environment, especially indicators of urban patterns and of urban environmental quality. These indicators will illuminate the social distribution of environmental quality and the socio-spatial exposure toward urban flooding. The comprehensive approach for the UES assessment is first, to analyze if land-use dynamics expands into areas with high environmental impact, second, to explore where and how social segregation is expressed in the study area, and third, to analyze different indicators for the urban environment. Therefore the key parameters for urban dynamics and UES are the built-up area, degrees of imperviousness, green spaces (indicators of urban patterns), environmental exposure and mitigations measures (indicators of environmental quality). They are linked to the indices of social segregation, i.e. isolation and concentration. The presented approach offers a new dimension in research of social segregation by adding the above mentioned aspects of the urban environment and so gaining a new assessment of UES.In the case of Santiago de Chile, the complex urban landscape is leading to fragmented socio-spatial configurations. The urban problems of Santiago de Chile cannot be framed in a purely social or environmental context. On a large scale it is investigated, if socio-spatial distribution is balanced and whether residents of different social groups have different spatial furnishing of green spaces, different built-up densities, and different exposure to natural hazards.We conclude that land-use dynamics in Santiago produce a higher urban complexity and fragmentation. In the in-depth study area we prove intra-municipal UES in close proximity. Furthermore, social segregation is accompanied by unequal distribution of environmental features. One spatial indicator is the uneven distribution of urban green. As a consequence, environmental differences between different social strata are extremely contrasting.
机译:城市环境隔离(UES)将区分穷人环境和富人环境。我们应用选定的城市环境指标,尤其是城市格局和城市环境质量指标。这些指标将阐明环境质量的社会分布以及城市洪水对社会空间的影响。 UES评估的综合方法是:首先分析土地使用动态是否扩展到对环境影响较大的区域;其次,探索研究区域内社会隔离的位置和方式;第三,分析针对该领域的不同指标。城市环境。因此,城市动态和UES的关键参数是建筑面积,不渗透程度,绿色空间(城市格局的指标),环境暴露和缓解措施(环境质量的指标)。它们与社会隔离的指标,即孤立和集中度有关。提出的方法通过添加上述城市环境方面为社会隔离的研究提供了新的维度,从而获得了对UES的新评估。在智利圣地亚哥,复杂的城市景观导致了社会空间的零散化配置。智利圣地亚哥的城市问题不能仅仅从社会或环境的角度来描述。我们进行了大规模的调查,研究了社会空间分布是否平衡以及不同社会群体的居民是否具有不同的绿色空间空间布置,不同的建筑密度以及对自然灾害的不同暴露。我们得出结论,土地利用动态在圣地亚哥产生更高的城市复杂性和碎片化。在深入的研究领域中,我们证明了市区内的UES非常接近。此外,社会隔离伴随着环境特征的不平等分配。一种空间指标是城市绿地分布不均。结果,不同社会阶层之间的环境差异形成了鲜明对比。

著录项

  • 来源
    《Ecological indicators》 |2012年第2012期|p.76-87|共12页
  • 作者单位

    Laboratory of Environment and Territory, Department of Geography, University of Chile, Portugal 84, 8331051 Santiago, Chile;

    Laboratory of Environment and Territory, Department of Geography, University of Chile, Portugal 84, 8331051 Santiago, Chile,Working Croup Ceomatics, Department Urban and Environmental Sociology, UFZ - HelmholB Centre for Environmental Research, Permoserstr. 15. 04318 Leipzig, Germany;

    Laboratory of Environment and Territory, Department of Geography, University of Chile, Portugal 84, 8331051 Santiago, Chile;

    Laboratory of Environment and Territory, Department of Geography, University of Chile, Portugal 84, 8331051 Santiago, Chile;

    Anhalt University of Applied Sciences, Department of Architecture, Facility Management and Geoinformation, Dessau, Germany;

    Working Croup Ceomatics, Department Urban and Environmental Sociology, UFZ - HelmholB Centre for Environmental Research, Permoserstr. 15. 04318 Leipzig, Germany;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    urban environmental segregation (UES); social segregation indices; indicators for the urban environment; urban segregation; land-use changes; multi-scale approach; urban remote sensing;

    机译:城市环境隔离(UES);社会隔离指数;城市环境指标;城市隔离;土地利用变化;多尺度方法;城市遥感;

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