A 12 m long and 300 mm diameter concrete pile is driven in a uniform deposit of sand (p = 36°). The water table is very much down and is not likely to rise in future. The average dry unit weight of sand is 18 kN/m². Calculate the safe load capacity of the pile with factor of safety of 2.5. (use K-1.5 and 8=0.75 q). If the allowable load is increased by 20% what will be the length of the pile.

Principles of Foundation Engineering (MindTap Course List)
9th Edition
ISBN:9781337705028
Author:Braja M. Das, Nagaratnam Sivakugan
Publisher:Braja M. Das, Nagaratnam Sivakugan
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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A 12 m long and 300 mm diameter concrete pile is driven in a uniform deposit of sand (p =
36°). The water table is very much down and is not likely to rise in future. The average dry
unit weight of sand is 18 kN/m². Calculate the safe load capacity of the pile with factor of
safety of 2.5. (use K-1.5 and 8=0.75 q). If the allowable load is increased by 20% what
will be the length of the pile.
Transcribed Image Text:A 12 m long and 300 mm diameter concrete pile is driven in a uniform deposit of sand (p = 36°). The water table is very much down and is not likely to rise in future. The average dry unit weight of sand is 18 kN/m². Calculate the safe load capacity of the pile with factor of safety of 2.5. (use K-1.5 and 8=0.75 q). If the allowable load is increased by 20% what will be the length of the pile.
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