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应用生态学报 ›› 2025, Vol. 36 ›› Issue (12): 3612-3624.doi: 10.13287/j.1001-9332.202512.028

• 山水林田湖草沙保护修复专栏(专栏策划: 岳文泽、肖武) • 上一篇    下一篇

国土空间规划语境下洞庭湖生态经济区多尺度嵌套的生态安全格局构建和优化

蔡雪琪1,2, 吕焕哲1,2*, 曾毅1,2, 赵旷纬1,2, 李程威3   

  1. 1湖南省国土资源规划院, 长沙 410007;
    2国土资源评价与利用湖南省重点实验室, 长沙 410007;
    3湖南省长株潭一体化发展事务中心, 长沙 410004
  • 收稿日期:2025-07-10 修回日期:2025-10-21 出版日期:2025-12-18 发布日期:2026-07-18
  • 通讯作者: *E-mail: 348465242@qq.com
  • 作者简介:蔡雪琪, 女, 1993年生, 硕士。主要从事国土空间规划研究。E-mail: 20600749@qq.com
  • 基金资助:
    部省合作试点项目(2023ZRBSHZ072)

Construction and optimization of multi-scale nested ecological security pattern in the context of territorial space planning in Dongting Lake Ecological Economic Zone

CAI Xueqi1,2, LYU Huanzhe1,2*, ZENG Yi1,2, ZHAO Kuangwei1,2, LI Chengwei3   

  1. 1Hunan Planning Institute of Land and Resources, Changsha 410007, China;
    2Hunan Key Lab of Land Resource Evaluation & Utilization, Changsha 410007, China;
    3Hunan Changsha-Zhuzhou-Xiangtan Integrated Development Affairs Center, Changsha 410004, China
  • Received:2025-07-10 Revised:2025-10-21 Online:2025-12-18 Published:2026-07-18

摘要: 多尺度生态安全格局构建作为协调生态保护与经济发展的重要空间途径,对保障区域生态系统的完整性、适应性和可持续性具有重要意义。在国土空间规划体系重构背景下,本研究以洞庭湖生态经济区(区域尺度)、常德市域(市域尺度)和常德市中心城区(城区尺度)为研究对象,集成最小累积阻力模型、ArcGIS空间分析和电路理论等跨学科方法,开展“区域-市域-城区”多尺度生态安全格局构建和优化研究。结果表明: 研究区生态源地传导效率呈显著尺度衰减特征,区域-市域尺度耦合度较市域-城区尺度降低20.1%,其中,15处生态源地在跨尺度传导中成为空间连接空白区。因多元价值认知不足导致生态廊道传导效率低下,18条跨尺度生态廊道中仅4条实现有效连接,需优先修复14条潜在生态廊道以提升连通性。关键生态节点传导效率因尺度关联性不足而出现衰减,区域-市域与市域-城区尺度分别存在4处和5处共有生态夹点,16处共有生态障碍点形成跨尺度阻隔带。运用“格局识别-嵌套诊断-协同优化”的全流程分析方法,在识别上述基础格局潜在问题的基础上提出靶向优化方案,最终构建含38个生态源地、52条生态廊道和158个生态节点的多尺度嵌套生态安全格局。本研究可为洞庭湖生态经济区的生态保护修复、土地资源优化配置及生态系统精确管理提供重要理论支撑和实践指导。

关键词: 国土空间规划, 多尺度嵌套, 生态安全格局, 洞庭湖生态经济区

Abstract: The construction of multi-scale ecological security patterns, as a crucial spatial approach for coordinating ecological protection and economic development, is of great significance for ensuring the integrity, adaptability, and sustainability of regional ecosystems. In the context of the reconstruction of the territorial space planning system, we assessed the construction and optimization of ‘regional-municipal-urban’ multi-scale ecological security pattern across the Dongting Lake Ecological Economic Zone (regional scale), Changde City (city scale), and the central urban area of Changde City (urban scale), integrating interdisciplinary methods such as minimum cumulative resistance model, ArcGIS spatial analysis, and circuit theory. The results showed that the conduction efficiency of ecological sources in the study area presented a characteristic of scale-decay. The regional-municipal scale coupling degree decreased by 20.1% compared to the municipal-urban scale, and among them, 15 ecological sources became spatial connection blank areas during cross-scale conduction. The conduction efficiency of ecological corridors was low due to insufficient cognition of multi-values. Among the 18 cross-scale ecological corridors, only four achieved effective connection, and 14 potential ecological corridors required priority restoration to enhance connectivity. The conduction efficiency of key ecological nodes attenuated due to insufficient scale correlation. There were four and five common ecological pinch points at the regional-municipal and municipal-urban scales, respectively. 16 common ecological barrier points formed cross-scale barrier zones. We employed a ‘pattern identification-nesting diagnosis-collaborative optimization’ full-process analytical framework to propose a targeted optimization scheme based on identifying potential problems in the foundational pattern, and ultimately constructed a multi-scale nested ecological security pattern comprising 38 ecological sources, 52 ecological corridors, and 158 ecological nodes. Our results would provide important theoretical support and practical guidance for the ecological protection and restoration, optimal allocation of land resources, and smart management of the ecosystem in the Dongting Lake Ecological Economic Zone.

Key words: territorial space planning, multi-scale nesting, ecological security pattern, Dongting Lake Ecological Economic Zone