高级检索+

基于SOM和Louvain算法的成渝地区双城经济圈生态安全格局构建

Construction of ecological security pattern in the Chengdu–Chongqing Twin-City Economic Circle based on SOM and Louvain algorithms

  • 摘要: 在成渝双圈快速城镇化、农业用地高强度利用和交通基础设施扩张等共同作用下,生态空间挤压、源地破碎化和廊道阻断等问题日益突出。识别关键生态要素并厘清生态安全格局演变规律,对维护长江上游生态屏障稳定、提升区域生态网络连通性以及支撑农业生态空间保护与国土空间生态修复具有重要意义。该研究以生境质量、产水量、固碳、土壤保持与植物净初级生产力(net primary productivity, NPP)共5项指标构建生态系统服务功能重要性评价体系,耦合自组织映射算法(self-organizing map, SOM)与形态学空间格局分析(morphological spatial pattern analysis, MSPA)识别生态源地,兼顾自然与人文因子构建综合阻力面,依据电路理论提取生态廊道与生态节点并以Louvain社区挖掘阐明生态网络内部的空间耦合分区特征,揭示了成渝双圈2000—2023年生态安全格局的时空演化特征并提出分区治理措施。结果表明:(1)2000—2023年生态源地总体增长,源地数量由34个增至76个,总面积由10 499 km2增至12 540 km2;(2)生态廊道数量与连通性显著增加,廊道由68条增至168条,总长度由8 570 km增加至9 005 km;(3)生态夹点呈数量稳定增长、面积波动上升趋势,数量由1062个升至1688个,面积由1365km2升至1 965 km2,关键通道重要性在上升;生态障碍点数量由40个增至68个,面积由941 km2升至1 712 km2,对廊道的安全性构成威胁;(4)基于Louvain识别出8个聚落并划分出4类生态功能区,提出了农业与生态兼顾的分区治理建议,为成渝双圈生态安全格局优化、农业生态空间保护和区域生态修复管控提供参考。

     

    Abstract: Rapid urbanization, intensified agricultural production, and increasing human activities have exerted growing pressure on regional ecosystems, threatening ecological security and sustainable development in the Chengdu–Chongqing Twin-City Economic Circle. As an important strategic region for ecological protection and high-quality development in the upper Yangtze River Basin, identifying key ecological elements and revealing the evolution of ecological security patterns are essential for balancing agricultural production and ecological conservation. This study developed an integrated framework combining ecosystem service assessment, self-organizing map (SOM) clustering, morphological spatial pattern analysis (MSPA), circuit theory, and ecological network community detection to construct and optimize the regional ecological security pattern. Five ecosystem services, including habitat quality, water yield, carbon storage, soil retention, and net primary productivity, were selected to evaluate ecosystem service importance. The SOM algorithm was applied to identify ecosystem service bundle characteristics, and ecological sources were extracted by integrating high-value ecosystem service areas with MSPA. An integrated resistance surface was subsequently established by incorporating natural and socio-economic factors. Based on circuit theory, ecological corridors, ecological pinch points, and ecological barrier points were identified to characterize ecological connectivity and potential ecological bottlenecks. Furthermore, the Louvain community detection algorithm was used to reveal the spatial organization characteristics of the ecological network and identify ecological functional zones. Finally, the spatiotemporal evolution of the ecological security pattern in the Chengdu–Chongqing Twin-City Economic Circle from 2000 to 2023 was analyzed. The results showed that (1) Ecological sources exhibited an overall increasing trend from 2000 to 2023. The number of ecological sources increased from 34 to 76, and their total area expanded from 10,499 km2 to 12,540 km2. (2) Ecological connectivity was enhanced, with the number of ecological corridors increasing from 68 to 168 and their total length increasing from 8,570 km to 9,005 km. (3) Ecological pinch points increased from 1,062 to 1,688, with their area expanding from 1,365 km2 to 1,965 km2. Meanwhile, ecological barrier points increased from 40 to 68, and their area expanded from 941 km2 to 1,712 km2. (4) Eight ecological network communities were identified using the Louvain algorithm, and four ecological functional zones were delineated accordingly. Differentiated management strategies were proposed to promote coordinated development of agricultural production and ecological conservation. This study provides a systematic approach for optimizing ecological security patterns by integrating ecosystem services, landscape connectivity, and network community characteristics. The findings provide scientific support for ecological restoration, sustainable agricultural development, and ecological management in the Chengdu–Chongqing Twin-City Economic Circle

     

/

返回文章
返回