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Orientation of aggregates of fine-grained soil: quantification and application

机译:细粒土壤团聚体的取向:量化与应用

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摘要

The orientation of aggregates in line-grained Soil is an important factor that influences the anisotropy and the engineering property of the line-grained soil. This paper reviews the basic principle and functions of the computer image processing system for Soil fabric, and proposes two new quantitative indices to assess the orientation of aggregates of fine-grained Soil, which include alignment entropy (H_m) and frequency distribution function of clay aggregate orientation Q(#alpha#). The significance of H_m and its differences with anisotropy index (I_a) are discussed. Q(#alpha#) enables the orientation of the aggregates to be continuously represented from 0 to 180 deg and is also taken as a quantitative parameter reflecting the anisotropy of the fine-grained Soil in the microstructural mechanical model. The latter sections in this paper give two examples showing the applications of these indices. The first example appraises the changes of fabrics of fine-grained soil during the process of compacting. The examination results confirm the phenomenon that the deformation of the soil samples during the process of compacting is mainly due to the re-alignment and deformation of clay aggregates rather than clay platelets; the other example represents the application of the Q(#alpha#) in fitting the creep of anisotropic fine-grained soil by the micromechanics model. The fitting results indicate that it is proper to take f(n) = Q(#alpha#).
机译:粒状土壤中团聚体的取向是影响粒状土壤各向异性和工程性质的重要因素。本文综述了土壤织物计算机图像处理系统的基本原理和功能,并提出了两个新的定量指标来评价细粒土壤团聚体的取向,包括取向熵(H_m)和黏土团聚体的频率分布函数。方向Q(#alpha#)。讨论了H_m的意义及其与各向异性指数(I_a)的差异。 Q(#alpha#)可以从0到180度连续表示聚集体的方向,并且在微观结构力学模型中还可以作为反映细颗粒土各向异性的定量参数。本文后面的部分提供了两个示例,显示了这些索引的应用。第一个实例评估了压实过程中细粒土壤织物的变化。检验结果证实了土样在压实过程中的变形主要是由于黏土团聚体的重新排列和变形而不是黏土片状的现象。另一个示例表示Q(#alpha#)在通过微力学模型拟合各向异性细粒土的蠕变中的应用。拟合结果表明,取f(n)= Q(#alpha#)是适当的。

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