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景观生态安全动态模拟与耦合协调度分析——以博乐市为例

Dynamic simulation of landscape ecological security and analysis of coupling coordination degree: A case study of Bole.

机构信息

College of Geography and Remote Sensing Sciences, Xinjiang University, Urumqi, China.

Xinjiang Key Laboratory of Oasis Ecology, Xinjiang University, Urumqi, China.

出版信息

PLoS One. 2024 Feb 8;19(2):e0297860. doi: 10.1371/journal.pone.0297860. eCollection 2024.

Abstract

The ecological security of oasis cities in arid and semi-arid regions is highly susceptible to changes in regional landscape patterns and the degree of coordination between human activities and the environment. At the same time, the ecological security of urban landscapes also profoundly affects the success of regional economic and environmental coordination and development. This study is based on land use data from 1990, 2000, 2010, and 2020, as well as land use data from the natural development scenario (NLD), economic development scenario (ECD), ecological development scenario (ELD) and ecological-economic development scenario (EED) simulated by the patch-generating land use simulation (PLUS) model in 2030. From the perspective of production-living-ecological land (PLEL), it analyzes the changes in the past and future landscape ecological security and coupling coordination characteristics of Bole. The results show that from 1990 to 2020, Bole was mainly dominated by grassland ecological land (GEL) and other ecological land (OEL), accounting for a total proportion of 69.51%, with a large increase in production and living land area; the average value of landscape ecological risk is decreasing, and the landscape ecological security of Bole is developing towards benignity; the area of highly coupled coordination zone is decreasing continuously, while that of basic coordination zone and moderate coordination zone is increasing continuously. Under the 2030 EED scenario, the overall changes in various types of land use are not significant, and the average value of landscape ecological risk is the smallest, but it is higher than that in 2020 as a whole; under EED scenario, the area of highly coordinated zone and moderate coordinated zone is the largest among four scenarios, and the best coupling coordination level among the four scenarios. Landscape ecological security and its coupling coordination will be affected by land use patterns. Optimizing regional land use patterns is of great significance for improving urban landscape ecological security and sustainable high-quality development.

摘要

干旱半干旱地区绿洲城市的生态安全极易受到区域景观格局变化和人类活动与环境协调程度的影响。同时,城市景观的生态安全也深刻影响着区域经济与环境协调发展的成败。本研究以博乐市 1990 年、2000 年、2010 年和 2020 年的土地利用数据以及 PLUS 模型模拟的自然发展情景(NLD)、经济发展情景(ECD)、生态发展情景(ELD)和生态经济发展情景(EED)的土地利用数据为基础,从生产-生活-生态用地(PLEL)的角度,分析了博乐市过去和未来的景观生态安全及其耦合协调特征的变化。结果表明,1990 年至 2020 年,博乐市主要以草地生态用地(GEL)和其他生态用地(OEL)为主,占比总计 69.51%,生产生活用地面积增长较大;景观生态风险平均值呈下降趋势,博乐市景观生态安全向良性发展;高度协调区面积持续减少,而基本协调区和中度协调区面积持续增加。在 2030 年 EED 情景下,各种土地利用类型的整体变化不明显,景观生态风险平均值最小,但整体高于 2020 年;在 EED 情景下,高度协调区和中度协调区的面积在四个情景中最大,四个情景中耦合协调水平最佳。景观生态安全及其耦合协调将受到土地利用格局的影响。优化区域土地利用格局,对于提高城市景观生态安全和可持续高质量发展具有重要意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e25/10852307/39987aeaff59/pone.0297860.g001.jpg

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