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

机译:单根和群底灰柱加固的黏土的抗剪强度参数和固结

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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.
机译:石柱可以用作地面改良技术,其中一部分土壤被粒状材料(如碎石或沙子)代替,事实证明,这种材料可以增加承载力并加速孔隙水压力的消散。由于底灰作为燃煤的废物,具有与沙子相似的特性,因此有可能将底灰用作石柱。本文讨论了用单根和群根底灰柱(BAC)加固时粘土的抗剪强度参数改善的结果。总共39个高岭土样品被各向同性固结并使用固结不排水三轴试验和孔隙压力测量进行剪切,以确定抗剪强度参数。测试变量包括色谱柱的直径和高度以及有效围压。结果表明,在粘土试样中安装BAC可以增加表观内聚力,但在有效摩擦角上没有任何显着差异。通常,用部分渗透柱加固的软黏土的表观粘结力要比完全渗透柱加固。还发现在固结过程中,BAC的存在加速了孔隙水压力的消散。因此,可以得出结论,通过安装BAC可以改善软土的固结和抗剪强度。

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