汪优

副教授 博士生导师 硕士生导师

入职时间:2007-07-01

所在单位:土木工程学院

职务:Associate professor

学历:博士研究生毕业

办公地点:铁道校区世纪楼

性别:女

联系方式:ywang1920@csu.edu.cn

学位:博士学位

在职信息:在职

主要任职:The Secretary of Party Branch of the Department of Railway

毕业院校:湖南大学

学科:土木工程

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Research on structural performance evolution of clay based on distribution force model

发布时间:2022-09-04

点击次数:

影响因子:4.5

DOI码:10.1108/MMMS-09-2021-0158

所属单位:Emerald

发表刊物:Multidiscipline Modeling in Materials and Structures

项目来源:the National Natural Science Foundation of China [grant numbers: 51778633, 51308552]

关键字:Scanning electron microscope; SEM images ; MATLAB image processing; Quantitative statistical parameters; Distribution force model

摘要:Purpose The purpose of this paper is to explore the variation law between the clay microstructure and macro external force by using soil scanning electron microscope (SEM) images. Design/methodology/approach First, SEM images of clay were pre-processed by MATLAB, and quantitative statistical parameters such as directional probability entropy, fractal dimension and shape factor are extracted. Second, the distribution force model was proposed, considering that the microscopic parameters of soil particles were independent of each other, and the distribution coefficient was determined according to the analytic hierarchy process (AHP). Then, the fitted formula of quantitative statistical parameters based on the distribution force model was obtained by taking the macroscopic distribution force as independent variable and the microscopic parameters of soil particles as dependent variable. Finally, the correctness of corresponding fitting formula was verified. Findings The results showed that the change of external consolidation pressure has great influence on the directional probability entropy and fractal dimension, while the shape factor reflecting the regular degree of soil particle shape is less sensitive to the consolidation pressure. The fitting formula has high accuracy, and mostly the R value can reach more than 0.9. All the data have passed the test, which proves that the distribution force model proposed in this paper is rational. Originality/value The model can be used to connect the macroscopic stress of soil with the micro-structure deformation of soil particles through mathematical formula, which can provide reference for engineering practice.

论文类型:期刊论文

学科门类:工学

一级学科:土木工程

文献类型:J

ISSN号:1573-6105

是否译文:

发表时间:2022-04-04

收录刊物:SCI

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