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基于GIS、RS的野鸭湖及周边湿地资源动态变化分形研究
引用本文:张志锋,宫辉力,赵文吉,付瑞海.基于GIS、RS的野鸭湖及周边湿地资源动态变化分形研究[J].国土资源遥感,2004,15(3):42-45.
作者姓名:张志锋  宫辉力  赵文吉  付瑞海
作者单位:1. 北京市环境保护监测中心,北京,100044;首都师范大学三维空间信息显示与地学应用省部共建教育部重点实验室,北京,100037
2. 首都师范大学三维空间信息显示与地学应用省部共建教育部重点实验室,北京,100037
3. 北京市林业局野保站,北京,100035
基金项目:北京市重点实验室开放基金项目; 北京市自然科学基金项目(200000511); 北京市自然科学基金项目(6032003).
摘    要:介绍了分形几何学理论及其特点。首先,基于GIS、RS技术,利用多源遥感影像融合技术和GIS叠置对比分析功能、人机交互解译,得出北京市野鸭湖湿地自然保护区及周边区域在1998年、2000年和2002年湿地资源现状;再利用方正智慧软件统计出各类型湿地图斑的周长和面积,并求出面积、周长的对数,根据二维欧氏空间分形维计算模型,计算出各类型湿地资源的分形维数值和稳定性指数;最后,根据分行维数和稳定性指数的物理意义,揭示了野鸭湖地区湿地资源的动态变化情况。研究表明,沼泽和湖泊是该区域湿地环境的主体,也是最脆弱的湿地要素;湿地资源分形维数(D)和稳定性指数(SK)可以为湿地环境评价、湿地资源的合理利用与可持续发展提供决策依据。

关 键 词:野鸭湖  湿地  多源遥感影像融合  叠置分析  分形维数(D)  稳定性指数(SK)
文章编号:1001-070X(2004)03-0042-04
收稿时间:2003-09-25
修稿时间:2003年9月25日

FRACTAL RESEARCH ON DYNAMIC CHANGE OF THE BEIJING WILD DUCK LAKE WETLAND RESOURCES BASED ON GIS AND RS
ZHANG Zhi-feng.FRACTAL RESEARCH ON DYNAMIC CHANGE OF THE BEIJING WILD DUCK LAKE WETLAND RESOURCES BASED ON GIS AND RS[J].Remote Sensing for Land & Resources,2004,15(3):42-45.
Authors:ZHANG Zhi-feng
Institution:1.
1. Beijing Municipal Environmentalitoring Center, Beijing 100044, China;
2. Beijing Municipal Environmental Monitoring Center, Beijing Lersity, Beijing 100037, China;
3. Wildlife Peoterction and Nature Protection Region Management Station, Beijing Forest Bureau, Beijing 100035, China
Abstract:The theory and characteristics of the fractal theory are described. The wetland data of the Beijing Wild Duck Lake in 1998, 2000 and 2002 were obtained on the basis of RS and GIS technology. Using the fractal dimension numerical model on two dimensional Euclidean space, the authors worked out the fractal dimension values and the stability levels of all kinds of wetland resources. The dynamic changes of wetland resources in the study area was finally obtained according to the physical meaning of fractal dimension and the level of stability. The results of the study indicate that marshes and lakes constitute the most key elements and also the most unstable wetland elements in wetland environments. It has been proved in practice that fractal theory has ample application scope in the study of wetland dynamic change. The fractal dimension and the level of stability can supply the decision-making basis for the appraisal of wetland environments and the sustainable utilization of wetland resources.
Keywords:Wild duck lake  Wetland  Data fusion in multi-sources remotely sensed imagery  Superposition analysis  Fractal dimension  Level of stability  
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