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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Land use/cover change in the Three Gorges Reservoir area, China: Reconciling the land use conflicts between development and protection
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Land use/cover change in the Three Gorges Reservoir area, China: Reconciling the land use conflicts between development and protection

机译:土地利用/封面变动在三峡库区,中国:调和发展与保护之间的土地利用冲突

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Development and protection are both vital human demands in ecologically vulnerable areas. An estimation of the land use/cover changes and their ecological responses could help to understand the regional ecosystem dynamics under various human demands and provide the scientific basis for managing and regulating ecosystems. In this paper, we analysed the spatial-temporal variations in land use/cover types and systematically quantified the relationships between these changes and environmental variables in the Three Gorges Reservoir area. Our results revealed that forestland coverage increased linearly to 53.48%, and that of construction land increased exponentially from 0.25% to 2.75% during 1990-2015. The land use/cover changes exhibited two distinct transformation phases: before and after impoundment. The mutual transformations among vegetation types were significant before 2000, while the forest, water and construction land coverages increased continuously by occupying cropland after 2000. The land use/cover changes were significantly correlated with environmental variables and were sensitive to three topographic variables namely, elevation, surface-height fluctuation and slope. The vegetation dynamics were easily affected by the complex and rugged topography. Moreover, the responses of land use/cover changes varied among topographic variables. The two parameters estimated in the multiple linear regression, elevation and slope, were - 0.164 and - 0.268 for forestland change, -0.391 and 0.378 for water area change, and -0.068 and -0.061 for construction land change. Forest cover was so larger in the regions of higher elevation and steeper slope that afforestation occurred in the regions of moderate elevation and slope. Urbanization and impoundment mainly occurred in the regions of lower elevation, and the regions of steeper slope were more easily submerged, while urbanization mainly occurred in the regions of gentler slope. Therefore, the land use/cover changes due to ecological protection and economic development responded to the interactions among environmental variables and was targeted to different regions to reconcile the land use conflicts, providing a reference for ecosystem management in ecologically vulnerable areas.
机译:开发和保护在生态脆弱地区都有重要人类需求。估计土地使用/掩护变化及其生态反应有助于了解各种人类需求下的区域生态系统动态,并为管理和调节生态系统提供科学依据。在本文中,我们分析了土地使用/覆盖类型的空间时间变化,并系统地量化了三峡库区中这些变化与环境变量之间的关系。我们的研究结果表明,林地覆盖率线性增加至53.48%,建设用地的增加率从1990 - 2015年期间的0.25%增加到2.75%。土地使用/掩护变化表现出两种不同的转化阶段:蓄水前后。植被类型之间的相互转型在2000年之前显着,而2000年后森林,水和建筑土地覆盖率持续增加。土地使用/掩护变化与环境变量明显相关,对三个地形变量敏感,即海拔,表面高度波动和斜坡。植被动态容易受到复杂和坚固的地形的影响。此外,地形变量之间的土地使用/覆盖变化的反应变化。对于多元线性回归,高程和坡度估计的两个参数 - 0.164且 - 0.268用于林地变化 - 0.391和0.378,适用于建筑土地变化-0.068和-0.061。森林封面在高度高度和陡峭坡度的区域中如此较大,即造林在中等高度和坡度的区域发生的造林。城市化和蓄水主要发生在较低海拔地区,陡峭坡度的地区更容易淹没,而城市化主要发生在温德尔坡的地区。因此,由于生态保护和经济发展导致的土地使用/掩护变化对环境变量之间的相互作用作出了反应,并针对不同地区来调和土地利用冲突,为生态脆弱地区的生态系统管理提供了参考。

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