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Climate change adaptation: A green infrastructure planning framework for resilient urban regions.

机译:适应气候变化:针对具有弹性的城市地区的绿色基础设施规划框架。

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摘要

The research explores multiple facets of a green infrastructure planning framework for climate change adaptation in urban regions. The research is organized in three distinct, but related parts. The first develops an adaptation implementation model based on triggering conditions rather than time. The approach responds to policy makers' reluctance to engage in adaptation planning due to uncertain future conditions. The model is based on planning and adaptation literature and applied to two case studies. Uncertainty during implementation may be reduced by incremental and flexible policy implementation, disbursing investments as needs arise, monitoring conditions, and organizing adaptation measures along no-regrets to transformational measures. The second part develops the green infrastructure transect as an organizational framework for mainstreaming adaptation planning policies. The framework integrates multi-scalar and context aspects of green infrastructure for vertical and horizontal integration of policy. The framework integrates literature from urban and landscape planning and tested on Boston. Prioritization of adaptation measures depends on location. Results suggest that green infrastructure adaptation policies should respond to configuration of zones. Cross jurisdiction coordination at regional and parcel scales supports mainstreaming. A secondary conclusion suggests that green infrastructure is space intensive and becomes the basis of the empirical study in part three. A spatial assessment method is introduced to formulate opportunities for green infrastructure network implementation within land-uses and across an urban-rural gradient. Spatial data in GIS for Boston is utilized to develop a percent pervious metric allowing the characterization of the study area into six zones of varying perviousness. Opportunities across land uses were assessed then maximum space opportunities were defined based on conservation, intensification, transformation and expansion. The opportunities for transformation of impervious surfaces to vegetal surfaces are highest in the urban center and its surrounding. Intensification of vegetation on pervious surfaces along all land uses is high across the gradient. Conservation of existing forested land is significant for future climate proofing. The concluding section argues for a green infrastructure planning framework for adaptation based on integration into existing infrastructural bodies, regional vision, incremental implementation, ecosystem benefits accounting, and conditions based planning rather than time based.
机译:该研究探索了绿色基础设施规划框架的多个方面,以应对城市地区的气候变化。该研究分为三个不同但相关的部分。第一种基于触发条件而非时间来开发适应实施模型。该方法响应了决策者由于未来条件不确定而不愿进行适应计划的情况。该模型基于计划和适应文献,并应用于两个案例研究。实施过程中的不确定性可以通过增加和灵活地执行政策,根据需要支付投资,监控条件以及沿着无悔态度组织适应措施来适应转型措施来减少。第二部分将绿色基础设施样板开发为将适应计划政策纳入主流的组织框架。该框架集成了绿色基础设施的多标量和上下文方面,以实现政策的纵向和横向整合。该框架整合了来自城市和景观规划的文献资料,并在波士顿进行了测试。适应措施的优先顺序取决于位置。结果表明,绿色基础设施适应政策应响应区域的配置。区域和地域范围的跨辖区协调支持主流化。次要结论表明,绿色基础设施占用大量空间,并成为第三部分实证研究的基础。介绍了一种空间评估方法,以制定在土地利用范围内和城乡梯度范围内实施绿色基础设施网络的机会。利用波士顿GIS中的空间数据来开发百分比渗透率度量标准,从而可以将研究区域表征为六个不同渗透率的区域。评估了各种土地利用的机会,然后根据保护,集约化,改造和扩展确定了最大的空间机会。在城市中心及其周边地区,将不透水表面转变为植物表面的机会最大。在整个坡度上,沿所有土地利用的透水表面上的植被集约化程度很高。保护现有的林地对于未来的气候防护具有重要意义。结论部分提出了一个绿色基础设施规划框架,以适应现有基础设施机构,区域愿景,增量实施,生态系统效益核算以及基于条件而非时间的规划。

著录项

  • 作者

    Abunnasr, Yaser.;

  • 作者单位

    University of Massachusetts Amherst.;

  • 授予单位 University of Massachusetts Amherst.;
  • 学科 Urban and Regional Planning.;Agriculture Urban Forestry.;Landscape Architecture.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 242 p.
  • 总页数 242
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:52

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