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基于遥感生态指数和图论知识的宁波生态安全格局构建。

Construction of ecological security pattern in Ningbo based on remote sensing ecological index and graph theory knowledge.

机构信息

Department of Geography and Spatial Information Techniques, Ningbo University, Ningbo 315211, Zhejiang, China.

出版信息

Ying Yong Sheng Tai Xue Bao. 2023 Sep;34(9):2489-2497. doi: 10.13287/j.1001-9332.202309.027.

Abstract

Constructing ecological security pattern and identifying ecological important areas are the focus of current research on regional ecological security. With Ningbo City as a case study area, we identified ecological sources by remote sensing ecological index, the ecological corridors and pinch point by circuit theory model, and the minimum spanning tree and cuts by graph theory algorithm. The results showed that there were 203 ecological sources in Ningbo, and that the main type of land cover was forest, including a small amount of paddy fields and flooded vegetation. There were 368 ecological corridors with a total length of 573.42 km, being dense in the southwest and sparse in the northeast. There were 91 ecological pinch points, which mainly distributed between coastal areas and closely related ecological sources. According to current situation, we put forward the optimization strategy with 187 primary corridors, 181 secondary corridors, 50 ecological restoration priority areas and 59 long-term ecological restoration areas. The optimization strategy combined with graph theory and circuit theory model would provide a refe-rence for the constructing of ecological security pattern.

摘要

构建生态安全格局和识别生态重要区域是当前区域生态安全研究的重点。以宁波市为例,我们通过遥感生态指数识别生态源,通过电路理论模型识别生态廊道和瓶颈,通过图论算法识别最小生成树和切割。结果表明,宁波市有 203 个生态源,主要的土地覆盖类型是森林,包括少量的稻田和淹没植被。有 368 条生态廊道,总长度为 573.42 公里,西南部密集,东北部稀疏。有 91 个生态瓶颈点,主要分布在沿海地区,与生态源密切相关。根据现状,我们提出了优化策略,包括 187 条主要廊道、181 条次要廊道、50 个生态修复优先区和 59 个长期生态修复区。该优化策略结合图论和电路理论模型为生态安全格局的构建提供了参考。

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