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
Question
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Chapter 16, Problem 16.1P

(a)

To determine

Whether the statement “In loose sands, foundations fail in general shear failure mode” is true or false.

(a)

Expert Solution
Check Mark

Answer to Problem 16.1P

The given statement is false_.

Explanation of Solution

  • The general shear failure is the bearing capacity failure that occurs when the shear stress exceeds the shear strength of the soil.
  • The local shear failure is the sliding or jerking failure (excessive movements) that occurs at the time when the structure is supported by the soil.
  • The dense sand initially supports the structure, and then fails due to settlement. Hence, the foundations in dense sand fail due to general shear failure.
  • The foundations in loose sand fail due to sudden jerks. Hence, the foundations in loose sand fail due to local shear failure.

Therefore, the statement is false_.

(b)

To determine

Whether the statement “The larger the relative density of a sand, the larger the bearing capacity factors Nq and Nγ” is true or false.

(b)

Expert Solution
Check Mark

Answer to Problem 16.1P

The given statement is true_.

Explanation of Solution

Write the equation of relative density (R.D).

R.D=emaxeemaxemin (1)

Here, emax is the maximum void ratio, e is the natural void ratio, and emin is the minimum void ratio.

Write the equation of bearing capacity factors Nq and Nγ according to modified Terzaghi’s bearing capacity theory.

Nq=tan2(45+ϕ2)eπtanϕ (2)

Nγ=2(Nq+1)tanϕ (3)

  • From Equations (1), (2), and (3), the relative density and bearing capacity factors are the functions of void ratio, and the larger void ratio indicates larger relative density and larger bearing capacity factors.
  • Therefore, the larger relative density of a soil sample clearly explains that the soil sample has the larger bearing capacity factors Nq and Nγ.

Therefore, the given statement is true_.

(c)

To determine

Whether the statement “Eccentricity increases the ultimate bearing capacity” is true or false.

(c)

Expert Solution
Check Mark

Answer to Problem 16.1P

The given statement is false_.

Explanation of Solution

  • When the eccentricity exceeds the limit of eccentricity, the foundation is ineffective to withstand the tensile stresses.
  • Hence, the higher eccentricity reduces the bearing capacity of the foundation.

Therefore, the given statement is false_.

(d)

To determine

Whether the statement “In calculating the ultimate bearing capacity of eccentrically loaded foundations, depth factors are computed using B and not B” is true or false.

(d)

Expert Solution
Check Mark

Answer to Problem 16.1P

The given statement is true_.

Explanation of Solution

  • After the loading, the effective width (B) would be considered for the design of foundation.
  • The depth factor is computed before the eccentric loading because the bearing capacity of the soil depends on soil properties. Hence, use B instead of B for depth factor calculation.

Therefore, the statement is true_.

(e)

To determine

Whether the statement “The three shape factors for a continuous foundation are one” is true or false.

(e)

Expert Solution
Check Mark

Answer to Problem 16.1P

The given statement is true_.

Explanation of Solution

Write the equation of shape factors Fcs,Fqs,andFγs.

Fcs=1+BLNqNc

Fqs=1+BLtanϕ

Fγs=10.4BL

Here, B is the breadth of the footing, L is the length of the footing, Nq and Nc are the bearing capacity factors, and ϕ is the friction angle.

  • For the continuous foundation, the length of footing is infinite. The reciprocal of infinity can be zero. Therefore, the terms BLNqNc, BLtanϕ, and 0.4BL are zero
  • Hence, the shape factors Fcs,Fqs,andFγs are 1 for continuous foundation.

Therefore, the given statement is true_.

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Students have asked these similar questions
A 2 m wide continuous foundation is placed at 1 m depth within a 1.5 m thick sand layer that is underlain by a weaker clay layer. The soil properties are as follows: Upper sand layer: unit weight = 18.0 kN/m2, d' = 38° Lower clay layer: unit weight = 19.0 kN/m, undrained shear strength = 25 kN/m2 Determine the maximum wall load that can be allowed on the foundation with FS = 3.
10- Which of the following statement is NOT correct for shallow foundation? (a) Bearing capacity depends on foundation size (b) For sandy soils; bearing capacity should only be estimated using effective stress analysis (c) For clay soils; bearing capacity should be estimated using both total stress and effective analysis (d) Geometric factors do not depend on soil density
Refer to Figure P6.8. Using the procedure outlined in Section 6.8, determine the average stress increase in the clay layer below the center of the foundation due to the net foundation load of 50 ton.
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