Millward A A, Mersey J E
Department of Geography, University of Waterloo, Waterloo, Ontario, Canada N2L 3G1.
J Environ Manage. 2001 Apr;61(4):329-43. doi: 10.1006/jema.2000.0415.
This research demonstrates the predictive modeling capabilities of a geographic information system (GIS)-based soil erosion potential model to assess the effects of implementing land use change within a tropical watershed. The Revised Universal Soil Loss Equation (RUSLE) was integrated with a GIS to produce an Erosion Prediction Information System (EPIS) and modified to reflect conditions found in the mountainous tropics. Research was conducted in the Zenzontia subcatchment of the Río Ayuquíla, located within the Sierra de Manantlán Biosphere Reserve (SMBR), México. Expanding agricultural activities within this area will accentuate the already high rate of soil erosion and resultant sediment loading occurring in the Río Ayuquíla. Two land-use change scenarios are modeled with the EPIS: (1) implementation of soil conservation practices in erosion prone locations; and (2) selection of sites for agricultural expansion which minimize potential soil loss. Confronted with limited financial resources and the necessity for expedient action, managers of the SMBR can draw upon the predictive capacity of the EPIS to facilitate rapid and informed land-use planning decisions.
本研究展示了基于地理信息系统(GIS)的土壤侵蚀潜力模型的预测建模能力,以评估在热带流域内实施土地利用变化的影响。修订后的通用土壤流失方程(RUSLE)与GIS集成,生成了侵蚀预测信息系统(EPIS),并进行了修改以反映热带山区的情况。研究在墨西哥马纳特兰生物圈保护区(SMBR)内的阿尤基拉河(Río Ayuquíla)的森松蒂亚子流域进行。该地区农业活动的扩张将加剧阿尤基拉河已经很高的土壤侵蚀率和由此产生的泥沙负荷。利用EPIS对两种土地利用变化情景进行了建模:(1)在易发生侵蚀的地点实施土壤保护措施;(2)选择农业扩张地点,以尽量减少潜在的土壤流失。面对有限的财政资源和迅速采取行动的必要性,SMBR的管理人员可以利用EPIS的预测能力,以促进快速和明智的土地利用规划决策。