EBK PRINCIPLES OF FOUNDATION ENGINEERIN
EBK PRINCIPLES OF FOUNDATION ENGINEERIN
8th Edition
ISBN: 8220100547058
Author: Das
Publisher: CENGAGE L
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Chapter 9, Problem 9.20P
To determine

Find the pile capacity.

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. A steel H-pile (section HP13 x100) is driven by a hammer. The maximum rated hammer energy is 40 kip-ft, the weight of the ram is 12 kip, and the length of the pile is 90 ft. Also, we have coefficient of restitution = 0.35, weight of the pile cap = 2.4 kip, hammer efficiency = 0.85, number of blows for the last inch of penetration = 12, and Ep = 330 x 106 Ib/in.2. Estimate the pile capacity using Eq. (9.114). Take FS = 5.
A steel H-pile (section HP13 × 100) is driven by a hammer. The maximum rated hammer energy is 40 kip-ft, the weight of the ram is 12 kip, and the length of the pile is 90 ft. Also, we have coefficient of restitution pile cap = 2.4 kip, hammer efficiency = 0.85, number of blows for the last inch of penetration = 10, and E, = 30 × 10° lb/in.?. Estimate the pile capacity using Eq. (9.114). Take FS = 6. 0.35, weight of the %3D
age Please round to the nearest Hundredth (i.e., 0.01). No Comma! A square pile, 21 m long is driven into a homogeneous sand layer. The pile's width (diameter) is 0.4 m. The standard penetration resistance near the vicinity of the pile is 29. Use FS = 2 and Briaud & Tucker method. Point force, Qp = Skin friction force, Qs = Q A Ultimate bearing force, Qu = Allowable bearing force, Qa = F1 2 W S F2 kN #3 20 F3 E D kN S4 kN $ KN 000 000, F4 R F % 5 F5 T MacBook Air A 6 G Y ✓ & 7 H U ► 11 * 8 J F8 Next page 1 9 K
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