Comparative between Behaviour of Single Floating Reinforced Stone Column and Single Pile under Axial Load
International Journal of Science and Research (IJSR)

International Journal of Science and Research (IJSR)
Call for Papers | Fully Refereed | Open Access | Double Blind Peer Reviewed

ISSN: 2319-7064


Downloads: 169 | Views: 310

Research Paper | Civil Engineering | Iraq | Volume 7 Issue 1, January 2018 | Popularity: 6.8 / 10


     

Comparative between Behaviour of Single Floating Reinforced Stone Column and Single Pile under Axial Load

Haifaa A. Ali, Mohammed S. Jabbar


Abstract: In this work, three-dimensional finite, element, analysis of single, floating reinforced, stone, column, (FRSC) and, pile foundation under axial load analyzed using PLAXIS (3D) 2013. The hardening soil and Mohr-Coulomb models are used to simulate the behaviour of clayey soil and FRSC respectively. While linear elastic model is used to simulate the behaviour of structures (pile, footing and geo-grid). Two types of pile foundation are studied, bored and driven concrete pile, the parametric study including the changing of length and diameter of (FRSC) and bored pile, however, the driven pile has constant cross section (28 x 28) mm. For FRSC and bored pile two lengths (6 and 12) m and three diameters (0.4, 0.6 and 0.8) m are analyzed. From the results of finite element analysis, the bored pile has clear advantage of improvement over the driven pile and FRSC, the results of the improvement using the FRSC were better than the driven pile.


Keywords: Finite element, floating reinforced stone column, axial load, bored pile, driven pile, improvement


Edition: Volume 7 Issue 1, January 2018


Pages: 862 - 866



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Haifaa A. Ali, Mohammed S. Jabbar, "Comparative between Behaviour of Single Floating Reinforced Stone Column and Single Pile under Axial Load", International Journal of Science and Research (IJSR), Volume 7 Issue 1, January 2018, pp. 862-866, https://www.ijsr.net/getabstract.php?paperid=ART20179421, DOI: https://www.doi.org/10.21275/ART20179421

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