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Urban green space network development for biodiversity conservation: identification based on graph theory and gravity modeling.

机译:用于生物多样性保护的城市绿地网络发展:基于图论和重力模型的识别。

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Urban areas can contain rich flora that contribute significantly to biodiversity, but loss and isolation of habitats due to urban sprawl threaten biodiversity and warrant limits on development. The connectivity provided by urban green spaces offers habitats and corridors that help conserve biodiversity. Researchers and planners have begun using landscape ecology principles to develop green space networks and increase connectivity to preserve and restore biodiversity. In this paper, potential corridors were identified in Jinan City, China, using the least-cost path method, and green space networks were developed and improved based on graph theory and the gravity model. Spatial analysis revealed that the proposed plan decreased fragmentation and increased connectivity. Plaza and roadside green spaces were the main types of green space that increased, but they only weakly improved networks and biodiversity. Identifying potential corridors using least-cost path analysis made the results better approximate the real landscape by including impedance along links. The potential networks revealed problems in the current greening plan. The green space network developed based on graph theory and the gravity model simplified and systematized the complex landscape, helping to identify the significance of each green space and guiding urban planning for biodiversity conservation.
机译:城市地区可能包含丰富的植物,对生物多样性有重要贡献,但由于城市蔓延而造成的栖息地丧失和孤立威胁了生物多样性,并限制了发展。城市绿地提供的连通性提供了有助于保护生物多样性的栖息地和走廊。研究人员和规划人员已开始使用景观生态学原理来开发绿色空间网络并增强连接性,以保护和恢复生物多样性。本文采用最小成本路径法确定了济南市的潜在走廊,并基于图论和引力模型开发并完善了绿色空间网络。空间分析表明,拟议的计划减少了碎片,增加了连通性。广场和路边的绿地是增加的主要绿地类型,但它们只能弱化改善网络和生物多样性。通过使用成本最低的路径分析来识别潜在的走廊,可以通过沿路段添加阻抗来使结果更好地逼近真实景观。潜在的网络揭示了当前绿化计划中的问题。基于图论和重力模型开发的绿地网络简化了复杂的景观并将其系统化,有助于识别每个绿地的意义,并指导城市规划的生物多样性保护。

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