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首页> 外文期刊>Eurasian Soil Science >Changes in the rheological properties and bulk density of soddy-podzolic soils under dynamic loads.
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Changes in the rheological properties and bulk density of soddy-podzolic soils under dynamic loads.

机译:动力作用下泥质-坡积土的流变特性和容重变化。

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Field studies of the rheological properties of loamy sandy soddy-podzolic soils were performed. Within the studied ranges of the soil moistening and bulk density values, the soils behaved as viscoelastic bodies. The dynamic deformation of such soils under compressive stress was modeled by a differential equation of the first order linking the compressive stress, the rate of its changes, and the relative soil deformation in the vertical direction. Correlative relationships between the viscoelastic soil properties, the soil bulk density, the soil water content, and the angular frequency of the harmonic law of the soil deformation were obtained. The methods of calculation of the soil bulk density as dependent on the initial bulk density and the mode of the soil deformation upon cyclic loads by rigid cylinders and by elastic wheels were developed. These methods were realized in a computer program for the quantitative assessment of the effect of the major factors on the changes in the rheological properties, the indices of the soil deformation, and the soil bulk density under the impact of compressive loads. It was shown that an increase in the number of loading-unloading cycles leads to the transformation of the viscoelastic soil properties into elastic properties.
机译:田间研究了壤质沙质肥沃土壤的流变特性。在研究的土壤湿度和堆积密度值范围内,土壤表现为粘弹性体。用一阶微分方程对这种土壤在压应力下的动态变形进行建模,该方程将压应力,其变化速率和垂直方向上的相对土壤变形联系在一起。得到了粘弹性土的性质,土的容重,土的含水量以及土变形的谐律角频率之间的相关关系。提出了根据初始容重和刚性圆柱体和弹性轮在周期性载荷作用下土壤变形模式计算土壤容重的方法。这些方法是在计算机程序中实现的,用于定量评估在压缩载荷作用下主要因素对流变特性,土壤变形指标和土壤容重变化的影响。结果表明,装卸循环次数的增加导致粘弹性土壤特性转化为弹性特性。

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