房彦妮, 巨聆帆, 向明顺, 王春建. 基于景观格局的川西北高原生态风险时空分析[J]. 内江师范学院学报, 2023, 38(2): 92-97. DOI:10.13603/j.cnki.51-1621/z.2023.02.015
引用本文: 房彦妮, 巨聆帆, 向明顺, 王春建. 基于景观格局的川西北高原生态风险时空分析[J]. 内江师范学院学报, 2023, 38(2): 92-97.DOI:10.13603/j.cnki.51-1621/z.2023.02.015
FANG Yanni, JU Lingfan, XIANG Mingshun, WANG Chunjian. Spatial-temporal analysis of ecological risks in Northwest Sichuan Plateau based on landscape pattern[J]. Journal of Neijiang Normal University, 2023, 38(2): 92-97. DOI:10.13603/j.cnki.51-1621/z.2023.02.015
Citation: FANG Yanni, JU Lingfan, XIANG Mingshun, WANG Chunjian. Spatial-temporal analysis of ecological risks in Northwest Sichuan Plateau based on landscape pattern[J].Journal of Neijiang Normal University, 2023, 38(2): 92-97.DOI:10.13603/j.cnki.51-1621/z.2023.02.015

基于景观格局的川西北高原生态风险时空分析

Spatial-temporal analysis of ecological risks in Northwest Sichuan Plateau based on landscape pattern

  • 摘要:以川西北高原地区为研究区,基于2010、2015和2020年土地利用数据,从景观格局的角度构建生态风险评价体系,分析其生态风险时空特征.结果表明:(1)研究期间,草地和林地面积变化显著,草地面积比例由2010年的60.68%减少到2020年的59.03%,林地的面积比例由2010年的30.62%增长到2020年的31.94%;(2)川西北高原生态风险整体呈现西部、东北和东南地区高,东部地区低的空间分布特征;(3)2010—2020年区域生态风险等级由高向低转化了72.834×10 5hm 2,而生态风险等级由低转化为高的面积为66.845×10 5hm 2,生态风险整体降低.

    Abstract:Based on the land use data of 2010, 2015 and 2020, and taking Northwestern Sichuan Plateau as the study area, the ecological risk assessment system was constructed from the perspective of landscape pattern, and the spatial-temporal characteristics of ecological risk were put under examination. The results show that: (1)During the study period, the area of grassland and woodland changed significantly, the proportion of grassland area decreased from 60.68% in 2010 to 59.03% in 2020, and the proportion of woodland area increased from 30.62% in 2010 to 31.94% in 2020. (2)The ecological risk of the northwest Sichuan Plateau as a whole showed the spatial distribution characteristics of high in the western, northeastern and southeastern regions and low in the eastern region; (3) From 2010 to 2020, the regional ecological risk level was converted from high to low by 72.834×10 5hm 2, while the area changing from low to high was 66.845×10 5hm 2, showing that the overall ecological risk was reduced.

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