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Enhancing landscape connectivity through multifunctional green infrastructure corridor modeling and design

机译:通过多功能绿色基础设施走廊建模和设计增强景观连通性

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Landscape connectivity is critical for ecosystem health and biodiversity conservation, yet urbanization is increasing habitat fragmentation. Green corridors that connect isolated remnant habitat patches (e.g. parks) can increase connectivity and provide ecosystem services in cities. Vacant land, especially prevalent in shrinking cities, presents a unique opportunity to reconnect these landscapes. This paper provides a practical and replicable approach for assessing landscape connectivity patterns and identifying priority locations for green corridors. The methodology integrates social and ecological factors coupled with site-scale multifunctional greenway designs and is applied to the city of Detroit as a proof of concept. First, we use FRAGSTATS to evaluate structural landscape connectivity patterns at a census tract scale. A functional connectivity assessment based on graph theory and Conefor software is used to validate the results, which indicate that habitat is highly fragmented in Detroit. To identify opportunities to reduce this fragmentation, we use a least-cost path approach to map potential green corridors linking city parks through vacant parcels, alleys, and smaller green spaces, and prioritize these corridors using a gravity model and network analysis. To make the model more concrete and useful for decision-makers, we develop site-level multifunctional corridor design typologies. This study presents a novel approach to assessing urban connectivity and a multi-scalar, systematic methodology for planning urban green infrastructure networks that connects landscape ecology with practical planning and design considerations to maximize social and ecological functions.
机译:景观连接对于生态系统健康和生物多样性保护至关重要,但城市化正在增加栖息地分散。连接孤立的残余栖息地补丁(例如公园)的绿色走廊可以增加连接和在城市提供生态系统服务。空置的土地,特别是在萎缩的城市中普遍存在,呈现重新连接这些景观的独特机会。本文提供了一种实用且可复制的方法,用于评估景观连接模式和识别绿色走廊的优先位置。该方法集成了与站点规模多功能绿道设计相结合的社会和生态因素,并应用于底特律市作为概念证明。首先,我们使用Fragstats评估人口普查道规模的结构景观连接模式。基于图形理论和CONEFOR软件的功能连接评估用于验证结果,表明栖息地在底特律中很高碎片。为了确定减少这种碎片的机会,我们使用最小的成本路径方法来通过空置包裹,小巷和较小的绿色空间来映射与城市公园连接的潜在绿色走廊,并使用重力模型和网络分析优先考虑这些走廊。为了使模型更加混凝土和对决策者有用,我们开发现场级多功能走廊设计类型。本研究提出了一种评估城市连接和多标量,用于规划城市绿色基础设施网络的多标量的新方法,这些网络与实际规划和设计考虑相连,以最大化社会和生态功能。

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