利用二元逻辑回归法,在刚果民主共和国东部地区建立土地利用/土地覆被 (LULC) 变化模型并绘制易受影响地区图

Q3 Social Sciences
Jean Nacishali Nteranya, Andrew Kiplagat, E. Ucakuwun, C. K. Nzabandora
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引用次数: 0

摘要

土地利用和土地覆被 (LULC) 变化通常用于确定地貌条件,对地球表面过程有重大影响。过去三十年间,刚果民主共和国东部的土地利用和土地覆被变化加速。然而,尽管了解这些驱动因素对于土地利用规划和环境变化的空间建模非常重要,但在该地区的领土层面上,对这些变化的驱动因素却没有一个全面的概述。本研究以卡莱亥地区为案例,试图通过分析 1987-2020 年间土地利用、土地利用变化和土地利用变化的驱动因素来填补这一空白。研究采用了遥感、地理信息系统和逻辑回归模型相结合的混合方法。研究结果表明,研究区域主要的 LULC 变化是森林砍伐、建筑面积扩大、耕地扩大和灌木林扩大。这些变化在不同程度上受到生物物理因素(坡度、海拔和土壤类型)、保护分区、人口动态和可达性因素的重大影响。保护区的出现降低了森林砍伐、建筑用地和耕地扩张的可能性。相反,邻近因素(与公路的距离、手工采矿和地理位置)会增加土地利用、土地利用变化的易感性。可将这些因素纳入空间模型,以预测该地区土地利用、土地利用变化的易感性。此外,由于土地利用、土地利用变化和林业变化的易感性呈现出空间趋势,因此刚果民主共和国东部地区未来土地利用管理政策的制定应针对具体空间。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Land use/land cover (LULC) changes modeling and susceptibility mapping using the binary logistic regression at the territorial level in eastern DR Congo
The Land Use and Land Cover (LULC) changes are commonly used to determine the landscape conditions and have significant impacts on the earth's surface processes. During the last three decades, there has been an acceleration of LULC changes in Eastern DR Congo. However, there is no comprehensive overview of the drivers of these changes at the territorial level in this region, even though the knowledge of these drivers is important for land use planning and spatial modeling of environmental changes. Using the Kalehe Territory as a case study, this work sought to fill this gap by analyzing the drivers of LULC changes during the 1987-2020 period. A mixed approach combining remote sensing, Geographic Information System, and logistic regression modeling was used. The results indicated that the prominent LULC changes in the study area are deforestation, built-up area expansion, cropland expansion, and shrubland expansion. These changes are significantly influenced by biophysical factors (slope, altitude, and soil type), conservation zoning, population dynamics, and accessibility factors at different levels. The occurrence of conservation zones decreases the susceptibility to deforestation, built-up land, and cropland expansions. In contrast, the proximity factors (distance to road, artisanal mining, and locality) increase the susceptibility to LULC changes. These factors can be integrated into spatial models to forecast LULC changes susceptibility in this region. Furthermore, the establishment of future land use management policy at the territorial level in eastern DR Congo should be space-specific as the susceptibility of LULC changes shows a spatial trend.
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来源期刊
Journal of Degraded and Mining Lands Management
Journal of Degraded and Mining Lands Management Environmental Science-Nature and Landscape Conservation
CiteScore
1.50
自引率
0.00%
发文量
81
审稿时长
4 weeks
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