Recent developments in End-of-Life Tires (ELTs) reuse emphasize their value in civil engineering applications. Shredded rubber, when mixed with soils to form Soil-Rubber Mixtures (SoRMs), is particularly promising for Geotechnical Seismic Isolation (GSI) systems. Previous studies with poorly graded soils have confirmed the effectiveness of SoRMs through laboratory and field investigations, but their preparation requires expensive grain-size selection. Alternatively, well-graded soils provide a more practical and economical solution for SoRMs, while preserving good mechanical performance. This research investigates the seismic efficiency of GSI systems employing mixtures made by well-graded gravel and rubber from End-of-Life Tires (wgGRMs) applied underneath a historical bell tower in Bronte (Catania, Italy). Finite Element Method (FEM) analyses were conducted on the fully coupled soil–wgGRM–structure system, employing advanced constitutive models. Specifically, the Hardening Soil with Small Strain Stiffness (HSsmall) and the Generalised Hoek–Brown (GHB) models were adopted to represent nonlinear soil and mixture behavior. FEM analyses of laboratory tests on the wgGRMs were performed for the calibration of the HSsmall model parameters. Dynamic parametric analyses explore different GSI layouts, rubber contents, and seismic inputs. Results confirm the effectiveness of wgGRMs, highlighting their potential as cost-efficient materials for the seismic protection of slender, heritage structures.
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Research Article|
February 17 2026
FEM dynamic analyses of soil-structure system with well-graded GRMs as GSI
A. Fiamingo
;
A. Fiamingo
1Department of Civil Engineering and Architecture,
University of Catania
, Catania, Italy
, E-mail: angela.fiamingo@unict.it
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G. Abate
;
G. Abate
2Department of Civil Engineering and Architecture,
University of Catania
, Catania, Italy
, E-mail: glenda.abate@unict.it
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M. R. Massimino
3Department of Civil Engineering and Architecture,
University of Catania
, Catania, Italy
Corresponding author M. R. Massimino (maria.massimino@unict.it)
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Corresponding author M. R. Massimino (maria.massimino@unict.it)
Publisher: Emerald Publishing
Received:
July 03 2025
Accepted:
October 27 2025
Online ISSN: 1751-7613
Print ISSN: 1072-6349
Funding
Funding Group:
- Funding Statement(s): Financial support provided by the Research Project “CHANGES– Cultural Heritage Active Innovation for Sustainable Society” funded by PNNR “Piano Nazionale di Ripresa e Resilienza, Missione 4“Istruzione e ricerca” – Componente 2“Dalla ricerca all’impresa” – Investimento 1.3, finanziato dall’Unione europea– Next GenerationEU (Avviso n. 341 del 15.03.2022), nell’ambito dello SPOKE 6 “History, Conservation and Restoration of Cultural Heritage”, WP1-Anamnesis/WP2 Knowlegde/WP3 Restoration/WP4 Monitoring/WP5 Sharing” (inItalian). This study was also performed with the financial support provided by the DPC/ReLUIS 2024–26 Research Project, funded by the Civil Protection Department. Finally, this study was partially supported by the University of Catania within the research project ‘Piano di incentivi per la ricerca di Ateneo 2024/2026 (Pia.ce.ri.) – Linea di Ricerca 1 – Progetti collaborativi (MITIGO), Department of Civil Engineering and Architecture.
© 2025 Emerald Publishing Limited
2025
Emerald Publishing Limited
Licensed re-use rights only
Geosynthetics International 1–27.
Article history
Received:
July 03 2025
Accepted:
October 27 2025
Citation
Fiamingo A, Abate G, Massimino MR (2026;), "FEM dynamic analyses of soil-structure system with well-graded GRMs as GSI". Geosynthetics International, Vol. ahead-of-print No. ahead-of-print. https://doi.org/10.1680/jgein.25.00115
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