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不同坡度和植被覆盖黄土对降雨入渗的响应规律

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[目的]植被类型和坡度是影响黄土斜坡土体水分对降雨响应规律的控制因素。[方法]分别选取裸土、蒿草和刺槐覆盖的平地,裸土、蒿草、刺槐和刺槐蒿草混合覆盖的15°斜坡,以及刺槐蒿草混合覆盖的35°斜坡,共8个样地设置原位观测点,测定剖面含水率及基本物理指标,观测降雨后剖面的湿润锋深度,分析植被类型和坡度对降雨入渗的影响。在室内设置6个坡度的模型试验,研究坡度与竖直入渗深度和垂直于坡面入渗厚度的关系。[结果]植被类型显著影响斜坡土体的湿润锋深度、含水率和饱和度,刺槐蒿草混合地的湿润锋深度最浅,湿润带饱和度可达73。0%;裸土地的湿润锋最深,湿润带的饱和度最小,最大饱和度仅为52。4%。坡度对相同植被斜坡的湿润锋深度、含水率和饱和度的影响较小,但短期内历经多次降雨后,平地湿润带含水率和饱和度略高于斜坡。通过室内模型试验发现,不同坡度黄土斜坡的竖直入渗深度不随坡度增加而变化,垂直于坡面入渗厚度随坡度增加而减小。[结论]研究结果可为黄土斜坡浅层滑移和水土流失治理提供理论依据。
Responses of Loess Ground with Different Slopes and Vegetation Covers to Rainfall Infiltration
[Objective]To investigate the soil moisture response to rainfall in loess ground with different slopes and vegetation types.[Methods]Eight in-situ observation plots were established,including flat surfaces with bare soil,Artemisia cover,and Robinia pseudoacacia cover,15° slope with bare soil,Artemisia cover,R.pseudoacacia cover,and R.pseudoacacia-Artemisia complex cover,and 35° slope with R.pseudoacacia-Artemisia complex cover.Soil moisture content and basic physical parameters of the profiles were measured.The wetting front depth after rainfall was observed and the impact of vegetation type and slope gradient on rainfall infiltration was analyzed.Additionally,laboratory model tests with six different slope gradients were conducted to study the relationships between slope gradient,as well as vertical infiltration depth,and infiltration thickness normal to the slope surface.[Results]The results suggest that vegetation types significantly affected the depth of the wetting front,soil moisture content,and saturation of slope soils.The R.pseudoacacia-Artemisia complex cover had the shallowest wetting front depth with a saturation of 73.0%.The bare soil exhibited the deepest wetting front and the lowest saturation,which was only 52.4%.The slope gradient had a minimal impact on the wetting front depth,soil moisture content and saturation for slopes with identical vegetation.However,after a number of short-term rainfall events,the moisture content and saturation in the wetting zone were slightly higher in flat ground than those in slopes.Laboratory model tests revealed that the vertical infiltration depth in slope was independent of slope gradient.In contrast,the infiltration thickness normal to the slope surface decreased with increasing slope gradient.[Conclusion]The study can provide a theoretical support for shallow landslide mitigation and soil erosion control for loess slopes.

rainfallloessvegetation typeslopewetting frontmoisture content

张丽娜、李萍、胡向阳、钟建平、杨恺、赵枝艳、李同录

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长安大学地质工程与测绘学院,西安 710054

黄土高原水循环与地质环境教育部野外科学观测研究站,甘肃 正宁 745399

中国电建集团西北勘测设计研究院有限公司,西安 710065

陕西省水土保持生态环境监测中心,西安 710199

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降雨 黄土 植被类型 坡度 湿润锋 含水率

2024

水土保持学报
中国土壤学会 中国科学院水利部水土保持研究所

水土保持学报

CSTPCD北大核心
影响因子:1.226
ISSN:1009-2242
年,卷(期):2024.38(6)