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黄河上游植被覆盖度空间分布特征及其影响因素
引用本文:裴志林,杨勤科,王春梅,庞国伟,杨力华. 黄河上游植被覆盖度空间分布特征及其影响因素[J]. 干旱区研究, 2019, 36(3): 546-555
作者姓名:裴志林  杨勤科  王春梅  庞国伟  杨力华
作者单位:中国科学院水利部水土保持研究所,陕西杨凌712100;中国科学院大学,北京100049;中国科学院水利部水土保持研究所,陕西杨凌712100;西北大学城市与环境学院,陕西西安710127;西北大学城市与环境学院,陕西西安,710127
基金项目:中国科学院战略性先导科技专项(XDA20040202);陕西省教育厅科学研究计划项目(15JK1725)资助
摘    要:
采用2000—2015年MODIS1M NDVI数据计算黄河上游年最大植被覆盖度 (FVC),了解空间分布状况及变化特征;同时,采用了一种基于统计学原理的地理探测器模型,考虑非气候类环境因素、气候类环境因素和人类活动因素,使用相应的代理变量对黄河上游FVC空间分布的影响因素做定量研究。研究表明:① 黄河上游FVC总体上以改善为主,空间分布特征变化不大;②单因子方面,降水量(q值0.669)是该地区FVC空间分布的主要影响因素,其他因子的影响作用存在区域差异;③ 降水分别和土壤类型、土地利用方式的交互作用(q值0.777、0.775)对研究区FVC空间分布起主导作用,土壤类型和土地利用的影响作用在一定高程、降水条件下才得以体现;④ 总体上,气候类环境因素>非气候类环境因素>人类活动因素,人类活动在与降水等环境因子的共同作用能够更充分地解释FVC空间分布;⑤ 对研究区的生态恢复应重点放在降水的充分利用和土地利用方式改进等方面。

关 键 词:植被覆盖度(FVC)  空间分异性  影响因素  地理探测器  黄河上游
收稿时间:2018-07-22

Spatial Distribution of Vegetation Coverage and ItsAffecting Factors in the Upper Reaches of the Yellow River
PEI Zhi-lin,YANG Qin-ke,WANG Chun-mei,PANG Guo-wei,YANG Li-hua. Spatial Distribution of Vegetation Coverage and ItsAffecting Factors in the Upper Reaches of the Yellow River[J]. Arid Zone Research, 2019, 36(3): 546-555
Authors:PEI Zhi-lin  YANG Qin-ke  WANG Chun-mei  PANG Guo-wei  YANG Li-hua
Abstract:
The ecosystem in the upper reachesof the Yellow River is fragile, and it is affected by the unique ecologicalenvironment and relatively simple vegetation types. The distribution offractional vegetation cover (FVC) andits driving factors provide a reference for local vegetation protection. Inthis paper, the monthly data of MODIS1M NDVI (2000-2015) were used to calculate the maximum FVC in the upper reaches of the Yellow River and analyze itsdistribution and characteristics. Moreover, the corresponding proxy variables wereused to quantitatively study the affecting factors of FVC by using the geographical detector (Geodetector) model based onthe statistics theory and considering the topographical, geological andclimatic factors as well as human activities. The study showed that: ① The FVC inthe upper reaches of the Yellow River was improved. The spatial distribution of FVC was stable even if there was aslight fluctuation; ② Thedistribution of FVC was mainlyaffected by annual precipitation. There were some regional differences in theeffects of other factors, for example, the distribution of FVC in the southwest of the study area wassubject to the joint effect of topography and pressure, the effects oftopographic factors in the central and northeast regions were relatively low,and the FVC was mainly subject toprecipitation, humidity, land use types, soil types and underlying surface; ③ The interaction between the annual precipitationand the soil types and land use types was dominant to affect the spatialdistribution of FVC; ④ Holistically, the factors affecting the spatialdistribution of FVC were in an orderof climatic environment factors > non-climatic environmental factors >human activities. The interaction of human activities with environmentalfactors (such as precipitation) could be used to fully explain the spatialdistribution of FVC; ⑤ In the ecological restoration in this area, the fullutilization of precipitation and the improvement of land use ways should be focusedon.
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