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Integral equation method for analysis of piled rafts with dissimilar piles under vertical loading

โœ Scribed by Fayun Liang; Longzhu Chen; Jie Han


Book ID
104015344
Publisher
Elsevier Science
Year
2009
Tongue
English
Weight
605 KB
Volume
36
Category
Article
ISSN
0266-352X

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โœฆ Synopsis


In a piled raft, the length and arrangement of piles has a significant effect on the stresses and deflections of the raft. The use of piles with different dimensions and properties below a raft is an innovative concept and can optimize the design of a piled raft. In this study, an integral equation method with a fictitious pile model was adopted to analyze the piled raft foundation with dissimilar piles. The Fredholm integral equations of the second kind were obtained for this problem. The loads shared by piles and subsoil, the load transfer, and the settlement of the piled raft were obtained using numerical calculation. The results from the present method were compared with those in the literature. An optimization technique was introduced to design piled rafts with dissimilar piles. The stiffening effect of piles on the surrounding soil is also discussed as compared the conventional interaction factor approach.


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An iterative method is described for the analysis of vertically loaded pile groups with a large number of vertical piles. The individual pile response is modelled using load-transfer (t-z) curves while pile-soil-pile interaction is determined using Mindlin's solution. The present method not only kee