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Planning low carbon urban-rural ecosystems: An integrated transport land-use model

机译:规划低碳城乡生态系统:综合运输土地利用模型

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As urbanization gradually modifies natural ecosystems and affects environmental sustainability, urban spatial planning can be used as a tool to address to Urban Metabolism and meet sustainable development targets. The concentration of people in urban areas makes these increasingly requiring for primary products and services as food and energy, and the fulfilment of such needs result in significant carbon emissions. The inclusion of spatial functions as agriculture and renewables in the urban planning can address to this environmental impact, but would require support-planning tools able to explore new land-use allocation strategies within an integrated urban-rural ecosystem. In this paper, we propose an optimization framework for the planning of low carbon urban-rural ecosystems that integrates transport and land-use planning and cope with urban metabolism, involving urban mobility, food transportation, energy supplies. This framework contributes to the literature as it formulates a network between urban, agricultural, energy, and carbon mitigation land-covers and optimizes the horizontal carbon fluxes within an integrated urban-rural environment. In order to minimize carbon emissions by mobility and resources (i.e. food) transportation, the framework aids identifying trade-offs between accessibility and density over the spatial distribution of resource-generating and resource-consuming land-covers. Proof of concept is provided with a realistic numerical example, propelled by real-world data from an Italian region. The land-use allocation solution makes the exemplifying urban-rural ecosystem behaving as carbon sink due to the established green areas and the configuration of the spatial uses. A sensitivity analysis is finally carried out to assess the impacts of mobility and resources transportation on the spatial urban-rural structure and associated carbon emissions. It comes out that the optimal urban configuration to mitigate carbon emissions from transportation integrates urban and rural uses and guarantees accessibility to several functions as cultivated areas, renewables and green covers, responsible to provide food, energy and air cleaning respectively to dwellers. (C) 2019 Elsevier Ltd. All rights reserved.
机译:随着城市化逐渐修改自然生态系统并影响环境可持续性,城市空间规划可作为解决城市新陈代谢的工具,并满足可持续发展目标。城市地区人民集中在越来越需要作为食品和能源的主要产品和服务,以及这种需求的实现导致了显着的碳排放。将空间函数作为城市规划中的农业和可再生能源纳入这种环境影响,但需要支持计划的工具,能够探索综合城乡生态系统内的新土地使用分配策略。在本文中,我们为低碳城乡生态系统的规划提出了一项优化框架,纳入了运输和土地利用规划和应对城市代谢,涉及城市移动,食品运输,能源供应。该框架有助于文献,因为它在城市,农业,能源和碳减缓陆地覆盖之间提供了网络,并优化了综合城乡环境中的水平碳通量。为了通过移动和资源(即食品)运输最小化碳排放,框架有助于识别在资源产生和资源消费土地覆盖物的空间分布上的可访问性和密度之间的权衡。概念证明是提供了一个现实的数字示例,由来自意大利地区的真实数据推进。土地利用分配解决方案使得城市农村生态系统的表现为碳汇,由于已建立的绿地和空间用途的配置。终于进行了敏感性分析,以评估流动性和资源运输对空间城乡结构和相关碳排放的影响。它阐述了减轻运输碳排放的最佳城市配置集成城乡用途,并保证了几种功能,作为耕地,可再生能源和绿色覆盖,负责为居民提供食品,能源和空气清洁。 (c)2019 Elsevier Ltd.保留所有权利。

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