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科尔沁沙地不同地形小叶锦鸡儿灌丛土壤水分动态
引用本文:黄刚,赵学勇,黄迎新,苏延桂.科尔沁沙地不同地形小叶锦鸡儿灌丛土壤水分动态[J].应用生态学报,2009,20(3):555-561.
作者姓名:黄刚  赵学勇  黄迎新  苏延桂
作者单位:中国科学院寒区旱区环境与工程研究所奈曼沙漠化研究站,兰州,730000
基金项目:中国科学院知识创新工程重要方向项目,中国科学院野外台站研究项目 
摘    要:根据科尔沁沙地广泛分布的小叶锦鸡儿灌丛的植被调查和土壤水分监测数据,分析了沙地人工固沙灌丛的土壤水分时空动态和土壤储水量变化,并应用水量平衡法测定了灌丛蒸散发.结果表明:丘间地的土壤水分条件最好,丘中次之,丘上最低;灌丛区的土壤水分含量随深度增加而增加,在生长季内不会发生水分胁迫.灌丛区土壤水分与降雨过程高度相关,深层(50~180 cm)土壤水分同降雨的相关性高于表层(0~50 cm)土壤,并且深层土壤水分的变异也大于表层.整个生长期内,小叶锦鸡儿灌丛土壤储水量增加,土壤水分处于积累中,估算蒸散量占同期降雨量的64%以上.

关 键 词:灌丛人工林  土壤水分  水量平衡  蒸散发
收稿时间:2008-8-4

Soil moisture dynamics of artificial Caragana microphylla shrubs at different topographical sites in Horqin sandy land.
HUANG Gang,ZHAO Xue-yong,HUANG Ying-xin,SU Yan-gui.Soil moisture dynamics of artificial Caragana microphylla shrubs at different topographical sites in Horqin sandy land.[J].Chinese Journal of Applied Ecology,2009,20(3):555-561.
Authors:HUANG Gang  ZHAO Xue-yong  HUANG Ying-xin  SU Yan-gui
Institution:Naiman Desert Experimental Research Station, Cold and Arid Regions Environmental and Engineering Research Institute, Chinese Academy of Sciences, Lanzhou 730000, China
Abstract:Based on the investigation data of vegetation and soil moisture regime of Caragana microphylla shrubs widely distributed in Horqin sandy land, the spatiotemporal variations of soil moisture regime and soil water storage of artificial sand-fixing C. microphylla shrubs at different topographical sites in the sandy land were studied, and the evapotranspiration was measured by water balance method. The results showed that the soil moisture content of the shrubs was the highest in the lowland of dunes, followed by in the middle, and in the crest of the dunes, and increased with increasing depth. No water stress occurred during the growth season of the shrubs. Soil moisture content of the shrubs was highly related to precipitation event, and the relationship of soil moisture content with precipitation was higher in deep soil layer (50-180 cm) than in shallow soil layer (0-50 cm). The variation coefficient of soil moisture content was also higher in deep layer than in shallow layer. Soil water storage was increasing in the whole growth season of the shrubs, which meant that the accumulation of soil water occurred in this area. The evapotranspiriation of the shrubs occupied above 64% of the precipitation.
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