Centrifuge modeling of pile-soil-pile interaction considering relative density and toe condition

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作者
School of Civil Engineering, Iran University of Science and Technology, Tehran, Iran [1 ]
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来源
Sci. Iran. | / 4卷 / 1330-1339期
关键词
Accuracy prediction - Centrifuge modeling - Elasticity theory - Individual piles - Interaction coefficient - Pile-soil-pile interaction - Relative density - Statistical parameters;
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摘要
In a group of installed piles, the stresses applied from one pile to soil may have overlaps with another pile which leads to the changes in bearing capacity and settlement of each individual pile. In order to predict the performance of those piles, interaction coefficients, based on elasticity theory proposed by Mindlin, are widely applied. In this paper, the effect of soil relative density and also toe condition on the interaction between two similar piles in sandy soil is presented using centrifuge modeling. To achieve this objective, 22 tests have been conducted to investigate the effect of soil relative density and another 11 tests were performed to study the contribution of pile toe and shaft in the interactions. The results showed that the value of soil relative density has an important role in the coefficient of interaction which has not been considered in previously reported correlations. For this reason a modification has been proposed for the Randolph and Wroth equation to consider soil relative density. Accuracy prediction of the new model was compared with the Randolph and Wroth equation with the aid of different statistical parameters. This comparison indicated the superiority of the proposed model over previous methods. © 2014 Sharif University of Technology. All rights reserved.
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