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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Soil moisture response to environmental factors following precipitation events in a small catchment.
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Soil moisture response to environmental factors following precipitation events in a small catchment.

机译:小流域降雨事件发生后土壤水分对环境因素的响应。

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摘要

Moisture variation in upper soil layers following a precipitation event is recognized as an important process in the conversion of rainfall to soil water. To understand the variability of topsoil moisture following a period of precipitation, we explored changes in soil moisture after 12 precipitation events at 38 sampling locations in the Wulongchi catchment (1.92 km2) located in the Danjiangkou Reservoir Area, China. Our results indicated that variation in soil moisture increased with decreasing soil moisture following each of the 12 precipitation events. Using a two-way indicator species analysis (TWINSPAN), the soil moisture measurement periods following each event were classified into three discrete groups: humid periods, moderate periods, and dry periods. For the humid periods, the total variance of soil moisture that could be explained by redundancy analysis was more consistent than those of the moderate and dry periods. For the humid periods on the first axis, soil thickness was the main significant factor, and the topographic wetness index, slope position and aspect were also significant environmental factors. For the moderate and dry periods, however, the effect of aspect on soil moisture decreased, whereas the effect of relative elevation increased. Each environmental factor that was tested for its influence on topsoil moisture variation presented different effects throughout all three of the studied soil moisture periods.
机译:降水事件后上部土壤层的水分变化被认为是将降雨转化为土壤水的重要过程。为了了解降雨后表层土壤水分的变化,我们在丹江口水库库区乌龙池流域(1.92 km 2 )的38个采样点探讨了12次降水事件后土壤水分的变化,中国。我们的结果表明,在12个降水事件的每一个之后,土壤水分的变化都随着土壤水分的减少而增加。使用双向指示剂物种分析(TWINSPAN),将每个事件之后的土壤湿度测量时段分为三个独立的组:潮湿时段,中度时段和干燥时段。对于湿润时期,可以通过冗余分析来解释的土壤水分总变化比中干旱时期更为一致。对于第一轴上的湿润时期,土壤厚度是主要的显着因素,地形湿度指数,斜坡位置和纵横比也是重要的环境因素。然而,在中,干旱时期,长宽比对土壤水分的影响减小,而相对海拔的影响则增加。在研究的所有三个土壤水分时期中,每种环境因子均受其对表层土壤水分变化的影响的测试显示出不同的影响。

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