Dynamic Models of Piled Foundations

Author:

Kuo Kirsty A.1,Hunt Hugh E. M.2

Affiliation:

1. e-mail:

2. e-mail:  Engineering Department, University of Cambridge, Trumpington St. Cambridge B2 1PZ, UK

Abstract

The vibration behavior of piled foundations is an important consideration in fields such as earthquake engineering, construction, machine-foundation design, offshore structures, nuclear energy, and road and rail development. This paper presents a review of the past 40 years' literature on modeling the frequency-dependent behavior of pile foundations. Beginning with the earliest model of a single pile, adapted from those for embedded footings, it charts the development of the four pile-modeling techniques: the “dynamic Winkler-foundation” approach that uses springs to represent the effect of the soil; elastic-continuum-type formulations involving the analytical solutions for displacements due to a subsurface disk, cylinder, or other element; boundary element methods; and dynamic finite-element formulations with special nonreflecting boundaries. The modeling of pile groups involves accounting for pile-soil-pile interactions, and four such methods exist: interaction factors; complete pile models; the equivalent pier method; and periodic structure theory. Approaches for validating pile models are also explored.

Publisher

ASME International

Subject

Mechanical Engineering

Reference105 articles.

1. Seismic Effects on Structures Supported on Piles Extending Through Deep Sensitive Clays,1964

2. Soil-Pile Foundation Interaction,1970

3. Tajimi, H., 1969, “Dynamic Analysis of a Structure Embedded in an Elastic Stratum,” Proc. 4th World Conference on Earthquake Engineering, Chile.

4. Dynamic Response of Footings to Vertical Loading;ASCE J. Soil Mech. Found. Div.,1966

5. Finite Dynamic Model for Infinite Media;ASCE J. Eng. Mech. Div.,1969

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