城市农业作为土地利用规划的绿色基础设施战略

IF 0.8 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
C. M. Rogers, Colleen C. Hiner
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引用次数: 7

摘要

绿色基础设施指的是一种土地利用设计,它通过利用植被、土壤和其他自然过程的渗透能力来模拟自然水循环,以减轻雨水径流。作为一种多功能景观,城市农业应该被视为城市规划的一个非常有益的工具,不仅因为它作为一种绿色雨水管理策略的能力,而且还因为它提供了多种社会和环境效益。2012年,奥斯汀市采用了一项名为 œImagine奥斯汀综合规划 (IACP)的主要规划方法,概述了到2039年城市未来发展和土地使用的愿景。该计划明确将绿色基础设施作为未来土地利用的目标,并将城市农业作为核心组成部分。解决这一土地利用规划领域的问题,需要能够在城市中找到适合发展绿色基础设施的合适区域的工具。在这项研究中,开发了一个过程,以创建一个空间明确的方法,在奥斯汀东部的水文敏感地区或易发生径流的地区,将城市农业作为绿色基础设施工具进行选址。该方法使用地理空间软件对开放获取的数据集进行空间分析,包括土地利用、数字高程模型和主要农田土壤。通过这种方法,可以在高地表径流区域和城市农场优先放置的位置之间建立空间关系,作为绿色基础设施的有用组成部分。规划者或地理空间分析人员可以利用这些信息,连同其他重要因素和社区投入,帮助决策者在城市农业的布局方面作出决定。这种空间明确的方法定位潜在的城市农场,将支持城市农业的整合,作为奥斯汀土地利用规划的一部分。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Siting Urban Agriculture as a Green Infrastructure Strategy for Land Use Planning in Austin, TX
Green infrastructure refers to a type of land use design that mimics the natural water cycle by using the infiltration capacities of vegetation, soils, and other natural processes to mitigate stormwater runoff. As a multifunctional landscape, urban agriculture should be seen as a highly beneficial tool for urban planning not only because of its ability to function as a green stormwater management strategy, but also due to the multiple social and environmental benefits it provides. In 2012, the city of Austin adopted a major planning approach titled the “Imagine Austin Comprehensive Plan†(IACP) outlining the city’s vision for future growth and land use up to 2039. The plan explicitly addresses the adoption of green infrastructure as a target for future land use with urban agriculture as a central component. Addressing this area of land use planning will require tools that can locate suitable areas within the city ideal for the development of green infrastructure. In this study, a process was developed to create a spatially explicit method of siting urban agriculture as a green infrastructure tool in hydrologically sensitive areas, or areas prone to runoff, in east Austin. The method uses geospatial software to spatially analyze open access datasets that include land use, a digital elevation model, and prime farmland soils. Through this method a spatial relationship can be made between areas of high surface runoff and where the priority placement of urban farms should be sited as a useful component of green infrastructure. Planners or geospatial analysts could use such information, along with other significant factors and community input, to aid decision makers in the placement of urban agriculture. This spatially explicit approach for siting potential urban farms, will support the integration of urban agriculture as part of the land use planning of Austin.
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来源期刊
Challenges in Sustainability
Challenges in Sustainability GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY-
CiteScore
3.10
自引率
0.00%
发文量
6
审稿时长
4 weeks
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