Numerical Study On Uplift Capacity Of Helical Pile Embedded In Clay

Deep Foundations Institute
Karthick Kumar V Muttharam M
Organization:
Deep Foundations Institute
Pages:
8
File Size:
1934 KB
Publication Date:
Nov 1, 2022

Abstract

Helical piles foundation systems have been extensively used in engineering application. It is commonly adopted to resist the compression, uplift force, overturning moment and lateral forces. Helical pile system is extensively used in many structures such as Transmission towers, Wind farms and other offshore structure because it is easy and quick to install. Realizing the importance of helical pile, an attempt is made in the present investigation to bring out the effect of spacing between the helix, blade thickness, and shaft thickness through numerical analysis. To validate the finite element model experimental investigation was carried out. In this investigation model steel piles with dual helical plate embedded in clay bed with the consistency of 0.4 was tested to study the effect of uplift loading on the behaviour of piles in tensions. Model helical pile with 12.5 mm diameter circular shaft and helix diameter of 25 mm. The model pile embedded in clay bed for a depth of 400 mm. Parametric analysis of helical pile by varying blade thickness, shaft thickness, and the spacing of helix was carried out by using Finite Element tool Plaxis 3D. From this analysis, an increase in thickness from 4 mm to 10mm increase the uplift load. Similarly, an increase in spacing of helices from 0.5 m to 1.5m increase the uplift capacity beyond that it decreases the uplift capacity. By keeping the contact area of the helix as constant as the number of a helix and helical spacing was varied, the critical number of the helix was found as 2 and the critical spacing of helix was found as 1.5 m for this study.
Citation

APA: Karthick Kumar V Muttharam M  (2022)  Numerical Study On Uplift Capacity Of Helical Pile Embedded In Clay

MLA: Karthick Kumar V Muttharam M Numerical Study On Uplift Capacity Of Helical Pile Embedded In Clay. Deep Foundations Institute, 2022.

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