Physical characteristics of dynamic vertical–horizontal-rocking response of surface foundations on cohesionless soils

Author:

PAK R.Y.S.,ASHLOCK J.C.,KURAHASHI S.,SOUDKHAH M.

Abstract

A fundamental experimental research programme on the dynamic behaviour of surface foundations on sand in general planar motion and the use of centrifuge modelling in soil–structure interaction studies is presented. Pursued with the dual purpose of extending the conventional formulation of dynamic test programmes as well as generating a physical database with sufficient parametric variations of the key aspects, an extensive experimental study to explore the dynamic soil–structure interaction problem in the small-amplitude regime is described. Through a comparison of the generated data with those from sequential vertical-centric and horizontal load tests, a novel hybrid-mode test concept by way of eccentric excitations is substantiated in terms of its economy and efficiency in capturing the force–response characteristics of the system. Synthesised in the frequency domain for direct qualitative and quantitative insights, multiple forced-response records of the foundation models on sand subjected to random vertical, horizontal and rocking excitations are summarised. As an illustration of the engineering relevance of the experimental database, a critical evaluation of the commonly used homogeneous half-space dynamic foundation solution pertaining to cohesionless soils is also provided.

Publisher

Thomas Telford Ltd.

Subject

Earth and Planetary Sciences (miscellaneous),Geotechnical Engineering and Engineering Geology

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2. Effect of Embedment on Dynamic Response of Block Foundation Under Coupled Vibration;Dynamic Soil-Structure Interaction for Sustainable Infrastructures;2018-10-28

3. Dynamic interaction of plates in an inhomogeneous transversely isotropic space weakened by a crack;ZAMM - Journal of Applied Mathematics and Mechanics / Zeitschrift für Angewandte Mathematik und Mechanik;2017-05-11

4. Dynamic response of a geotechnical rigid model container with absorbing boundaries;Soil Dynamics and Earthquake Engineering;2015-02

5. Dynamic behavior of a square foundation in planar motion on a sand stratum;Soil Dynamics and Earthquake Engineering;2012-11

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