Q3) For the pile-soil system shown in Fig. (3), estimate the required pile length to carry an ultimate vertical load of 2000 kN. Use Meyerhof's method in computing the end bearing resistance and the a-method for the skin resistance. Ans.: L= 20.21 m P = 2000 kN G.L. XX Sand y = 18.1 kN/m3 $ = 30° k = 0.7 5 m W.T. Dense Sand Ysat = 21 kN/m³ $ = 35° k = 0.82 Concrete Pile + + d = 0.3 m

Principles of Foundation Engineering (MindTap Course List)
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Chapter12: Pile Foundations
Section: Chapter Questions
Problem 12.2P: A 20 m long concrete pile is shown in Figure P12.2. Estimate the ultimate point load Qp by a....
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Q3) For the pile-soil system shown in Fig. (3), estimate the required pile length to carry an
ultimate vertical load of 2000 kN. Use Meyerhof's method in computing the end bearing
resistance and the a-method for the skin resistance.
Ans.: L= 20.21 m
Pu = 2000 kN
G.L.
XX
Sand
Y = 18.1 kN/m3
$ = 30°
k = 0.7
5 m
W.T.
Dense Sand
Ysat = 21 kN/m3
$ = 35°
k = 0.82
Concrete Pile
+ + d = 0.3 m
Fig. (3)
Transcribed Image Text:Q3) For the pile-soil system shown in Fig. (3), estimate the required pile length to carry an ultimate vertical load of 2000 kN. Use Meyerhof's method in computing the end bearing resistance and the a-method for the skin resistance. Ans.: L= 20.21 m Pu = 2000 kN G.L. XX Sand Y = 18.1 kN/m3 $ = 30° k = 0.7 5 m W.T. Dense Sand Ysat = 21 kN/m3 $ = 35° k = 0.82 Concrete Pile + + d = 0.3 m Fig. (3)
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