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应用生态学报 ›› 2026, Vol. 37 ›› Issue (8): 2731-2740.doi: 10.13287/j.1001-9332.202608.021

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耦合协调生态系统服务与土地利用强度的环洞庭湖流域生态管理分区

朱宁静, 杨帆*, 范航源, 舒凯, 姜亚东   

  1. 中南大学建筑与艺术学院, 长沙 410083
  • 收稿日期:2026-03-02 修回日期:2026-06-08 出版日期:2026-08-18 发布日期:2027-02-18
  • 通讯作者: *E-mail: yangfancsu@163.com
  • 作者简介:朱宁静, 女, 2001年生, 硕士研究生。主要从事区域生态安全、生态修复治理研究。E-mail: 241312035@csu.edu
  • 基金资助:
    国家自然科学基金项目(72174211,51608535)、湖南省自然科学基金项目(2018JJ3667)、湖南省哲学社会科学基金项目(19YBA347)和湖南省学位与研究生教学改革研究项目(2025JGYB075)

Ecological management zoning of the Dongting Lake basin based on coupling coordination between ecosystem service and land use intensity

ZHU Ningjing, YANG Fan*, FAN Hangyuan, SHU Kai, JIANG Yadong   

  1. School of Architecture and Art, Central South University, Changsha 410083, China
  • Received:2026-03-02 Revised:2026-06-08 Online:2026-08-18 Published:2027-02-18

摘要: 在快速城市化背景下,生态系统服务供需失衡已成为影响流域生态安全和可持续发展的重要问题,探究生态空间供需格局及分区管控,对支撑区域生态风险的高效管理具有重要意义。本研究以环洞庭湖流域为例,采用InVEST模型量化了2020年土壤保持、固碳、生境质量、产水4种典型生态系统服务的单一/综合供需格局,通过双变量局部空间自相关模型和耦合协调模型探究“生态系统服务供需状态-土地利用强度”的耦合关系,进而划分生态管理分区。结果表明:2020年,环洞庭湖流域的生态系统服务供给和需求呈现显著的空间异质性,林地、草地和水域等自然生态用地供给量较高,供需关系空间分布较为均匀,建设用地和耕地需求量较高,供需关系空间分布差异较大。研究区生态系统服务供需比平均值为0.06,以低供给-低需求和低供给-高需求为主;不同土地利用类型的生态系统服务供需比表现出显著差异,其中,建设用地供需比为-0.62,供给赤字最突出,林地(0.43)和草地(0.33)呈现明显的供给盈余。研究区生态系统服务供需比与土地利用强度的耦合协调度整体表现为“外围高、中部低”的空间格局,基于此划分出4个生态管理分区,分别为生态供需协调区、生态提升引导区、生态风险修复区和城镇发展控制区。研究结果可为环洞庭湖流域生态管理提供科学参考。

关键词: 生态系统服务, 供需关系, 土地利用程度, 生态管理分区, 环洞庭湖流域

Abstract: Under the backdrop of rapid urbanization, the imbalance between supply and demand of ecosystem ser-vices has become a major issue affecting watershed ecological security and sustainable development. Exploring the spatial supply-demand pattern of ecological space and zoning-based management and control is of great significance for supporting efficient management of regional ecological risks. Taking the Dongting Lake basin as an example, we employed the InVEST model to quantify the single and comprehensive supply-demand patterns of four typical ecosystem services (soil conservation, carbon sequestration, habitat quality, and water yield) in 2020. We further used the bivariate local spatial autocorrelation model and coupling coordination model to explore the coupling between “supply-demand state-land use intensity”, and delineated ecological management zones. The results showed that the supply and demand of ecosystem services in the Dongting Lake basin exhibited significant spatial heterogeneity in 2020. Natural ecosystems such as forest, grassland, and water body had relatively high supply, and the spatial distribution of the supply-demand relationship was relatively uniform. Construction land and cropland had relatively high demand, with spatial heterogeneity of the supply-demand relationship. The average supply-demand ratio of ecosystem services was 0.06, dominated by the low supply-low demand and low supply-high demand types. The supply-demand ratios of ecosystem services varied significantly among different land use types, with that of construction land being -0.62, showing the most prominent supply deficit, while forest (0.43) and grassland (0.33) exhibiting obvious supply surplus. The coupling coordination degree between the supply-demand ratio of ecosystem services and land use intensity exhibited a spatial pattern of “high in the periphery and low in the central area”. Based on this, four ecological management zones were delineated, namely ecological supply-demand coordination zone, ecological enhancement guidance zone, ecological risk restoration zone, and urban development control zone. Our results would provide scientific reference for the ecological management of the Dongting Lake basin.

Key words: ecosystem service, supply-demand balance, land use intensity, ecological zoning, the Dongting Lake basin