Huang Jun-da, Huang Jin-Ling, Chen Chao-Jin
Guangzhou Urban Planning and Design Survey Research Institute, Guangzhou 510000, China.
Guangzhou Xinhua University, Guangzhou 510000, China.
Ying Yong Sheng Tai Xue Bao. 2024 Jan;35(1):247-254. doi: 10.13287/j.1001-9332.202401.023.
In the context of the national ecological security development strategy, constructing regional ecological networks centered on protected areas and ecological corridors has become an urgent issue in protected areas system development of China. We focused on strengthening ecological connections between protected areas in Guangzhou, identified the ecological resource patches, ecological corridors, and ecological nodes by using Invest model, connectivity analysis, circuit theory models, and graph-theoretical network structure evaluation, and constructed an ecological network for the Guangzhou with nature reserves as the core. The results showed that 52 ecological resource patches were identified in the study area, covering a total area of 1450.01 km. Nature reserves accounted for 76.4% of the total area, forming the main part of the ecological resource patches. 115 ecological corridors were identified, with a total length of 900.56 km and an average length of 7.83 km. Furthermore, 72 ecological key points were identified, covering a total area of 17.57 km, and 81 ecological breakpoints, with a total area of 35.9 km. The network structure indices (α=0.65, β=2.21, and γ=0.77) indicated a reasonably structured and well-connected network. By exploring pathways for constructing regional ecological networks under the protected areas system and enriching the application of circuit theory models in ecological network construction, this study provides scientific basis for regional ecological security and biodiversity conservation.
在国家生态安全发展战略背景下,构建以保护区和生态廊道为核心的区域生态网络已成为中国保护区系统发展中的紧迫问题。我们聚焦于加强广州各保护区之间的生态联系,运用投资模型、连通性分析、电路理论模型和图论网络结构评估方法,识别了生态资源斑块、生态廊道和生态节点,并构建了以自然保护区为核心的广州生态网络。结果表明,研究区域内共识别出52个生态资源斑块,总面积达1450.01平方千米。自然保护区占总面积的76.4%,构成了生态资源斑块的主体部分。识别出115条生态廊道,总长度为900.56千米,平均长度为7.83千米。此外,还识别出72个生态关键点,总面积为17.57平方千米,以及81个生态断点,总面积为35.9平方千米。网络结构指标(α = 0.65,β = 2.21,γ = 0.77)表明该网络结构合理且连通性良好。通过探索保护区系统下区域生态网络构建的途径,丰富电路理论模型在生态网络构建中的应用,本研究为区域生态安全和生物多样性保护提供了科学依据。