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首页> 外文期刊>African Journal of Agricultural Research >Shear parameters associated with compaction states and degrees of water saturation in two Hapludox
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Shear parameters associated with compaction states and degrees of water saturation in two Hapludox

机译:与两个Hapludox的压实状态和含水饱和度相关的剪切参数

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摘要

The aim of the study was to evaluate the impact of three states of compaction and two degrees of initial water saturation in direct shear parameters in two Hapludox. We studied a Hapludox-LVd (0.55 kg kg-1?clay) and a Hapludox-LVdf (0.62 kg kg-1 de argila), in Brazil. We made a map of isolines of soil resistance to of the 0.07-0.12 m layer, which had a higher compaction state and, along with the soil density, we characterized three compaction states which were used as treatments. Statistical analysis consisted of comparing cohesion averages (C) and internal friction angle of the soil (f), in the three states of compaction, degrees of initial water saturation and depths. To analyze the behavior of C and?f, depending on the initial density (Dsi) clay content (Arg) and the degree of initial water saturation (Gsi), we generated regressions involving the variables. The states of compaction did not promote significant changes in the values of C, but the depth of 0.07-0.12 m, which concentrated the largest deformation, showed values of C higher than the others. The?f?did not vary with the Dsi or soil moisture and proved to be the most affected by the clay content of the soil. The C increased with the reduction of Gsi and with increasing Dsi and was more influenced by than Dsi by Gsi, showing that the state compaction or history of tensions already experienced influenced by the soil has more strongly influenced the resistance to shear than the degree of water saturation.
机译:该研究的目的是评估三个Hapludox的三个压实状态和两个初始水饱和度对直接剪切参数的影响。我们在巴西研究了Hapludox-LVd(0.55 kg kg-1?粘土)和Hapludox-LVdf(0.62 kg kg-1 de argila)。我们绘制了0.07-0.12 m层的土壤抗力等值线图,该层具有较高的压实状态,并且随着土壤密度的变化,对三种压实状态进行了特征化处理。统计分析包括比较压实度,初始水饱和度和深度这三种状态下的内聚平均值(C)和土壤内部摩擦角(f)。为了分析C和Δf的行为,根据初始密度(Dsi),粘土含量(Arg)和初始水饱和度(Gsi),我们生成了涉及变量的回归。压实状态并没有促进C值的显着变化,但集中最大变形的深度为0.07-0.12 m,表明C值高于其他值。水分含量随Dsi或土壤湿度的变化而变化,并被证明受土壤黏土含量的影响最大。 C随Gsi的减少和Dsi的增加而增加,并且比Gsi的Dsi影响更大,这表明土壤的状态压实或已经经历过的张力历史对水力的抵抗力比对水的影响更大。饱和。

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