EPS beads-sand mixtures for geotechnical seismic isolation: performance and mechanisms

Expanded polystyrene (EPS) possesses material properties well suited for geotechnical seismic isolation (GSI), including low modulus, low density, and very low seismic impedance. When incorporated into foundation soils, such low-modulus materials reduce both the horizontal and rocking stiffnesses of the foundation system, while the pronounced impedance contrast with surrounding soils modifies seismic wave transmission. In this way, both inertial and kinematic soil-foundation-structure interaction can be deliberately exploited as isolation mechanisms. This study investigates the potential of EPS beads-sand mixtures for GSI by examining the seismic response of two GSI configurations. A series of geotechnical centrifuge tests was conducted using 12 input earthquake ground motions. The results demonstrate that EPS beads-sand mixtures can provide effective seismic isolation, with peak structural response demands reduced by over 50% on average, while also limiting foundation uplift and mitigating shaking-induced ground settlement, thereby providing new experimental evidence for GSI mechanisms and isolation performance.

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Publication Details

Journal
Geosynthetics International
Published
2026-09-11
DOI
https://doi.org/10.1680/jgein.26.00015
Primary Topic
Seismic Performance and Analysis
Type
article
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article

EPS beads-sand mixtures for geotechnical seismic isolation: performance and mechanisms

Hing‐Ho Tsang, D. P. Tran
Geosynthetics International
Seismic Performance and Analysis
article

EPS beads-sand mixtures for geotechnical seismic isolation: performance and mechanisms

Hing‐Ho Tsang, D. P. Tran
article en

Abstract

Expanded polystyrene (EPS) possesses material properties well suited for geotechnical seismic isolation (GSI), including low modulus, low density, and very low seismic impedance. When incorporated into foundation soils, such low-modulus materials reduce both the horizontal and rocking stiffnesses of the foundation system, while the pronounced impedance contrast with surrounding soils modifies seismic wave transmission. In this way, both inertial and kinematic soil-foundation-structure interaction can be deliberately exploited as isolation mechanisms. This study investigates the potential of EPS beads-sand mixtures for GSI by examining the seismic response of two GSI configurations. A series of geotechnical centrifuge tests was conducted using 12 input earthquake ground motions. The results demonstrate that EPS beads-sand mixtures can provide effective seismic isolation, with peak structural response demands reduced by over 50% on average, while also limiting foundation uplift and mitigating shaking-induced ground settlement, thereby providing new experimental evidence for GSI mechanisms and isolation performance.

Geosynthetics International
University of Dundee (GB), Swinburne University of Technology (AU)
Sustainable cities and communities
Openalex Percentile: Top 16%
Seismic Performance and Analysis
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EPS beads-sand mixtures for geotechnical seismic isolation: performance and mechanisms — Hing‐Ho Tsang, D. P. Tran · Geosynthetics International (2026) | TGRS Research Map | TGRS