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基于景观连通性指数的长江-淮河流域(安徽)生态网络构建。

Construction of Ecological Network of Yangtze Huaihe River Diversion Project (Anhui) Based on Landscape Connectivity Index.

机构信息

College of Forestry and Landscape Architecture, Anhui Agricultural University, Hefei, Anhui 230036, China.

College of Resources and Environment, Anhui Agricultural University, Hefei, Anhui 230036, China.

出版信息

Comput Intell Neurosci. 2022 Jul 14;2022:9945687. doi: 10.1155/2022/9945687. eCollection 2022.

Abstract

The interbasin water transfer project has realized the optimal allocation of water resources, improved economic benefits, improved people's life and welfare, and had an impact on the ecology. Taking Anhui Jianghuai water transfer project as an example, this study uses morphological spatial pattern analysis (MSPA) to identify the core area, selects the patches in the core area, identifies the source according to the patch importance index, constructs the basic resistance surface according to the resistance factor, modifies the basic resistance surface by using the landscape connectivity index, and constructs the ecological corridor by combining the minimum cumulative resistance (MCR) model and the loop model (curve) to build the ecological network of the completed Huaihe River Water Transfer Project (Anhui). The results show that there are 83 sources, 197 potential ecological corridors, and 80 ecological nodes in the ecological network of Anhui Jianghuai project. Ecological network optimization strategies and protection suggestions are put forward for ecological sources, ecological corridors, and ecological nodes, respectively, so as to provide scientific reference and basis for the ecological environment protection and high-quality development of Anhui Jianghuai water transfer project.

摘要

调水工程实现了水资源的优化配置,提高了经济效益,改善了人民生活和福利,并对生态产生了影响。以安徽江淮调水工程为例,本研究采用形态空间格局分析(MSPA)识别核心区,选择核心区的斑块,根据斑块重要性指数确定源,根据阻力因子构建基本阻力面,利用景观连通性指数对基本阻力面进行修正,结合最小累积阻力(MCR)模型和环模型(曲线)构建生态走廊,构建已建成的淮河流域调水工程(安徽段)的生态网络。结果表明,安徽江淮工程生态网络中有 83 个源、197 条潜在生态廊道和 80 个生态节点。分别对生态源、生态廊道和生态节点提出了生态网络优化策略和保护建议,为安徽江淮调水工程的生态环境保护和高质量发展提供了科学参考和依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7fbc/9303112/d5f8fd15feec/CIN2022-9945687.001.jpg

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