1980Journal of the Geotechnical Engineering DivisionRequires access

Coefficients of Soil Reaction to Pile Vibration

Toyoaki Nogami, Miloš Novák

Open publisher page 25 citations

Abstract

The dynamic response analysis, the soil reactions must include damping and are often modeled by uncoupled springs and dashpots. The constants of these springs and dashpots of visco-elastic soil may be derived from continuum equations under plane strain conditions. Such approximate soil model con yield reasonable results under the dynamic condition as comparison to examine the nature of the local spring and damping constants in terms of a more rigorous solution in which the three-dimensionality of the soil medium and its dynamic interaction with the pile are accounted for This is the aim of this paper.

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The dynamic response analysis, the soil reactions must include damping and are often modeled by uncoupled springs and dashpots. The constants of these springs and dashpots of visco-elastic soil may be derived from continuum equations under plane strain conditions. Such approximate soil model con yield reasonable results under the dynamic condition as comparison to examine the nature of the local spring and damping constants in terms of a more rigorous solution in which the three-dimensionality of the soil medium and its dynamic interaction with the pile are accounted for This is the aim of this paper.

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Available abstract

The dynamic response analysis, the soil reactions must include damping and are often modeled by uncoupled springs and dashpots. The constants of these springs and dashpots of visco-elastic soil may be derived from continuum equations under plane strain conditions. Such approximate soil model con yield reasonable results under the dynamic condition as comparison to examine the nature of the local spring and damping constants in terms of a more rigorous solution in which the three-dimensionality of the soil medium and its dynamic interaction with the pile are accounted for This is the aim of this paper.

Key concepts: Pile, Vibration, Spring (device), Yield (engineering), Mechanics, Structural engineering, Mathematics, Geotechnical engineering

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