Shear Strength Parameters and Consolidation of Clay Reinforced with Single and Group Bottom Ash Columns

被引:0
|
作者
Aminaton Marto
Muzamir Hasan
Masayuki Hyodo
Ahmad Mahir Makhtar
机构
[1] Universiti Teknologi Malaysia,Faculty of Civil Engineering
[2] Universiti Malaysia Pahang,Faculty of Civil Engineering and Earth Resources
[3] Yamaguchi University,Department of Civil Engineering
来源
Arabian Journal for Science and Engineering | 2014年 / 39卷
关键词
Ground improvement; Bottom ash column; Shear strength parameters; Consolidation;
D O I
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中图分类号
学科分类号
摘要
Stone column could be used as a ground improvement technique where a portion of the soil is replaced with granular material such as crushed rocks or sand which is proven to increase bearing capacity and accelerate the dissipation of pore water pressure. Since “bottom ash”, as the waste of coal burning, possesses similar properties to sand, there is a potential of using bottom ash as stone columns. This paper discusses the results of the improvement in shear strength parameters of clay when reinforced with single and group bottom ash columns (BAC). A total of 39 specimens of kaolin samples were isotropically consolidated and sheared using Consolidated Undrained Triaxial Tests with pore pressure measurement to determine the shear strength parameters. Test variables include the diameter and height of columns and effective confining pressure. Results indicate that the installation of BAC in clay specimens increased the apparent cohesion but did not show any significant difference in the effective friction angle. Generally, the apparent cohesion of soft clay reinforced with partially penetrating columns is higher than that of fully penetrating columns. It is also found that during consolidation, the dissipation of pore water pressure was accelerated with the presence of BAC. Hence, it can be concluded that the consolidation and shear strength of soft clay could be improved by the installation of BAC.
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页码:2641 / 2654
页数:13
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