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Low Carbon, Low Risk, Low Density: Resolving choices about sustainable development in cities

机译:低碳,低风险,低密度:解决城市可持续发展的选择

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摘要

Urban areas face a conundrum, they need to reduce their greenhouse gas emissions and consumption of resources, whilst also increasing their resilience to climate change and extreme weather, and improving wellbeing. However, it is widely recognized that well intended intervention to address one of these sustainability objectives in isolation can undermine other objectives. This paper presents a framework to efficiently identify spatial development strategies that provide the best outcomes against multiple objectives. The framework has been applied to London (UK) to identify strategies that can simultaneously: (i) minimize exposure to future heat wave events; (ii) minimize the risk from flood events; (iii) minimize transport emissions; (iv) minimize urban sprawl; (v) maximize brownfield development; and, (vi) prevent development of greenspace that is recognized as important to wellbeing. Prioritizing,each objective in isolation leads to considerably different spatial planning structures, exposing conflicts between many objectives. These include tradeoffs between urban heat risk and transport emissions; and also previously undocumented conflicts between minimizing flood and heat risks. Allowing greater flexibility in development density is shown to provide benefits in terms of heat risk reduction, whilst not significantly affecting mitigation objectives. The framework is shown to significantly improve upon the London Spatial Development Strategy for the objectives analyzed. Further analysis identifies optimal spatial strategies to achieve a Low Carbon, Low Risk or Low Density city - however, these cannot be simultaneously maximized. This work shows there are difficult, and often irreconcilable, choices to be made in the spatial planning of sustainable cities. Spatial search and optimization tools strengthen the evidence-base for planning. Rapid identification of development strategies that satisfy, and minimize conflicts between, multiple objectives helps planners to develop strategies that simultaneously improve urban sustainability and reduce the risks from natural hazards.
机译:城市地区面临着一个难题,他们需要减少温室气体排放和资源消耗,同时还要增强其对气候变化和极端天气的适应能力,并改善人们的福祉。但是,众所周知,孤立地解决这些可持续发展目标之一的良好干预措施可能会破坏其他目标。本文提出了一个框架,可以有效地确定针对多个目标提供最佳结果的空间发展战略。该框架已应用于伦敦(英国),以确定可以同时进行的策略:(i)尽量减少暴露于未来的热浪事件; (ii)将洪灾的风险降至最低; (iii)减少运输排放; (iv)尽量减少城市蔓延; (v)最大限度地发展棕地; (vi)防止开发对福祉至关重要的绿色空间。优先排序,每个目标孤立地导致不同的空间规划结构,从而暴露了许多目标之间的冲突。其中包括城市热风险与交通排放之间的权衡;以及以前最大程度地减少洪水和热灾风险之间未记录的冲突。在开发密度上允许更大的灵活性将在减少热风险方面提供好处,同时不会显着影响减排目标。事实证明,该框架大大改善了伦敦空间发展战略的目标。进一步的分析确定了实现低碳,低风险或低密度城市的最佳空间策略-但是,这些策略不能同时最大化。这项工作表明,在可持续城市的空间规划中很难做出选择,而且常常是不可调和的。空间搜索和优化工具增强了规划的证据基础。快速确定满足并最小化多个目标之间冲突的发展策略,有助于规划人员制定可同时改善城市可持续性并减少自然灾害风险的策略。

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