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黄土高原多沙粗沙区植被适宜性空间分析与制图
引用本文:温仲明,赫晓慧,焦峰,Tim R.McVicar,LingTao Li,Tom G.Van Niel.黄土高原多沙粗沙区植被适宜性空间分析与制图[J].中国水土保持科学,2007,5(1):19-26.
作者姓名:温仲明  赫晓慧  焦峰  Tim R.McVicar  LingTao Li  Tom G.Van Niel
作者单位:1. 西北农林科技大学中国科学院水土保持研究所,712100,陕西杨凌
2. 郑州大学环境与水利学院,450001,郑州
3. CSIRO Land and Water,GPO Box 1666,2601,Canberra,ACT,Australia
基金项目:国家自然科学基金;中国科学院"西部之光"人才培养计划;中国科学院知识创新工程项目;中国科学院知识创新工程基金
摘    要: 以黄土高原多沙粗沙区为研究区,以植物自然分布为基础,利用DEM地形分析方法,对降雨、温度等因素的空间变化进行分析,并结合物种的生态环境需求,利用GIS空间分析功能,对该区38个物种适宜性的空间变化进行分析,并以此为基础,评价立地对植物生长型的适宜性。结果表明:利用DEM地形分析与GIS空间分析,可以很好地将物种适宜性的空间变化表现出来;利用VB编程,结合GIS,将物种适宜性与立地适宜性的空间变化予以图形显示。随着数据的积累和数据采集手段的改进,所采用的方法对于区域植被空间适宜性评价可提供积极的借鉴作用。

关 键 词:植被适宜性  地形分析  薄板样条法
修稿时间:2006-07-06

Mapping the vegetation suitability in the Coarse Sandy Hilly Area of the Loess Plateau, China
Wen Zhongming,He Xiaohui,Jiao Feng,Tim R.McVicar,LingTao Li,Tom G.Van Niel.Mapping the vegetation suitability in the Coarse Sandy Hilly Area of the Loess Plateau, China[J].Science of Soil and Water Conservation,2007,5(1):19-26.
Authors:Wen Zhongming  He Xiaohui  Jiao Feng  Tim RMcVicar  LingTao Li  Tom GVan Niel
Institution:1. Institute of Soil and Water Conservation, NWSUAF, CAS and MWR, 712100,Yangling, Shannxi;2. School of Environment and Water Conservancy, Zhengzhou University, 450001, Zhengzheu,China; 3. CSIRO Land and Water, GPO Box 1666, 2601, Canberra, ACT, Australia
Abstract:Vegetation suitability mapping is valuable for the selection of species for implementing the Re-Vegetation Program in the Coarse Sandy Hilly Catchments of the Loess Plateau, China. A Boolean model was introduced, which used thin plate smoothing spline interpolation method to model the distribution of precipita- tion and temperature, and analyzed the suitability of 38 species using GIS techniques as well as considering the requirement of these species for environmental conditions. Then we overlaid the single suitability map of 38 species, and got the frequency map of species for a specified site. Here high frequency means the higher suitspecies, and got the frequency map of species for a specified site. Here high frequency means the higher suit- ability of a site for re-vegetation. The result showed that with combination of topographic analysis based on DEM and GIS functions the spatial changes of vegetation suitability can be modeled. These spatial changes on the screen using Visual Basic language and GIS functions was also demonstrated, thus helping decision makers to have an intuitionistic view of species and site suitability changes over large area. Although some more powerful models such as GLM and GAM were not employed due to the data limit, yet the method here still can provide some insightful implication for similar studies in this area.
Keywords:vegetation suitability  topographic analysis  thin plate smoothing spline interpolation
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