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渭北黄土高原刺槐林—草地景观界面土壤水分影响域及其动态变化规律研究

Depth of Edge Influence and Spatial Heterogeneity of Soil Moisture at Forestlnand-Grassland Landscape Boundary in Weibei Loess Plateau

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【作者】 张永宋西德叶彦辉曾德慧尤文忠

【Author】 ZHANG Yong1,SONG Xi-de1,,YE Yan-hui1,ZENG De-hui2,YOU Wen-zhong2(1.College of Forestry,Northwest A & F University,Yangling, Shaanxi 712100;2.Institute of Applied Ecology,Chinese Academy of Sciences, SHenyang,Liaoning 110016)

【机构】 西北农林科技大学林学院中国科学院沈阳应用生态研究所中国科学院沈阳应用生态研究所 陕西杨陵712100陕西杨陵712100辽宁沈阳110016

【摘要】 对渭北黄土高原刺槐林—草地景观界面土壤水分影响域及其时空动态变化规律进行了研究。采用移动窗口法分析得出刺槐林—草地景观界面土壤水分影响域为林内4 m到林外12 m之间,宽度16 m,为渐变型界面,由此可将刺槐林—草地景观划分为3个区域:草地区、界面区和刺槐林区。经典统计分析表明,历经3个区域,不同层次的土壤水分在水平方向上随着水平距离梯度的变化表现出不同的上升或下降的趋势,在界面区域土壤含水量变化最为显著。基于标准差和变异系数两个指标,可将草地和林地区域土壤剖面水分垂直变化划分为4层,界面区域划分为3层。3个区域土壤含水量的季节变化表现为基本一致的“高-低-高”规律,可以划分为3个时期,4~5月中旬为土壤水分贮存期,6~7月中旬为土壤水分消耗期,8~10月中旬土壤水分恢复期。水分在时间和空间上的这种变化主要受植被类型、根系分布、降水资源再分配的影响。

【Abstract】 The depth of edge influence,the temporal and spatial variation of soil moisture in different soil layer in Weibei loess plateau were discussed.By using moving split-window method,it was obtained that the depth of edge influence was 16 m from 4 m inside forestland to 12 m outside forestland,the ectone between forestland and grassland was gradual type.The forestland-grassland landscape could be divided into 3 parts;grassland area,ecotone area and forestland area.By traditional analysis methods,it was obtained that soil water in different layers absent or descent with the change of horizontal distance,and that the change of soil water on ecotone area were most significant.The vertical change of soil water in the profile could be divided into four layers in grassland and forestland,and three layers in ecotone area.Based on the seasonal variation of soil moisture,it can be divided into three phase:the soil moisture stocking phase from April to May,the 1ose phase from June to July,the refill phase from August to October.The temporal and spatial variation of soil moisture is mainly affected by the difference of vegetation,soil mechanical composition.

【基金】 国家重点基础研究发展规划资助项目(2002CB111506)
  • 【文献出处】 水土保持学报 ,Journal of Soil and Water Conservation , 编辑部邮箱 ,2007年03期
  • 【分类号】S714
  • 【被引频次】14
  • 【下载频次】398
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