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 18.26CTP
To determine

Prove that the unit skin friction f(z) remains the same at all depths, when the value of ξ is 0.50.

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Refer to the pile shown in Figure P 9.1. Estimate the side resistance Qs bya. Using Eqs. (9.40) through (9.42). Use K = 1.5 and ẟ' = 0.6 Φ'b. Coyle and Castello’s method [Eq. (9.44)]
Problem #1 A 20-m-long concrete pile is shown Below. Estimate the ultimate point capacity Op by: a. Meyerhof's method b. Vesic's method c. Coyle and Castello's method Use m= 600 in Eq. (9.26). Estimate the side resistance Qs by: a. Using Eqs. (9.40) through (9.42). Use K = 1.5 and 8 = 0.60 b. Coyle and Castello's method [Eq. (9.44)] l-20 m Concrete pile 460 mm X 460 mm Loose sand $₁ = 30° y = 18.6 kN/m³ 18.6x2 = 372 kr/m² Dense sand $2 = 36 y = 18.5 kN/m²
Q.7 (a) A 500 mm diameter bored concrete pile is to be formed in the soil profile as shown in figure. The ground conditions are as follows: Granular soil: Dense gravel: Glacial clay: Depth (m) Adhesion factor, cat 7.0 m = 120 kPa c at 8.0 m 145 kPa cat 11.0 m 220 kPa 0 3 7 8 Y = 20 kN/m³ $' = 22.5° K₁ = 1.0 Y= 21 kN/m³ ' = 26.25° 11 K, = 2.0 Y = 20 kN/m³ α = 0.6 N = 9.0 Granular soil Dense gravel Glacial clay Determine the ultimate bearing capacity of the pile for: (a) Embedded length of 8 m (b) Embedded length of 11 m
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