Fundamentals of Geotechnical Engineering (MindTap Course List)
Fundamentals of Geotechnical Engineering (MindTap Course List)
5th Edition
ISBN: 9781305635180
Author: Braja M. Das, Nagaratnam Sivakugan
Publisher: Cengage Learning
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Chapter 18, Problem 18.4P

A 400-mm diameter and 15 m long concrete pile is driven into a sand where γ = 18.0 kN/m3 and ϕ′ = 31°. Assuming δ′ = 0.65ϕ′ and K = 1.4 Ko, determine the load carrying capacity of the pile with a factor of safety of 3.

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Consider a 13.5 m long concrete pile with a diameter of 0.45 m fully embedded in sand. For the sand, given unit weight, ? = 17.5 kN/m3 ; and soil friction angle, ϕ’ = 36 o . Estimate the frictional resistance according to Coyle and Castello’s method.
A square prestressed concrete pile with a cross section 0.3 m by 0.3 m is driven 15 m into overconsolidated clays with properties as defined: From the ground surface to a depth of 7 m, the unit weight is 17 kN/m3 and the shear strength cohesion cu is 70 kPa; below 7 m, the soil unit weight is 18.5 kN/m3 and cohesion is 105 kPa. Use the total stress α-method to calculate both the design downward axial capacity and upward axial capacity, using a factor of safety of 3 (downward and upward).
Consider a 15 m long concrete pile with a cross section of 0.45 m x 0.45 m fully embedded in sand.For the sand, unit weight, γ = 17 kN/m3 and soil friction angle, ϕ’ = 35o. Estimate the ultimate point??? with each of the following:1.1 Meyerhof’s method (Ans: 1014 kN)1.2 Vesic’s method (Ans: 1754 kN)1.3 Coyle and Castello’s method (Ans: 2479 kN)
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