Dynamic Analysis of Geosynthetic-reinforced Pile-supported Embankment for a High-Speed Rail
Alsirawan, Rashad
Koch, Edina
2025-09-17T07:47:24Z
2025-09-17T07:47:24Z
2024
1785-8860
hu_HU
http://hdl.handle.net/20.500.14044/33781
Geosynthetic-Reinforced-Pile-Supported (GRPS) embankments are a trustworthy
option ideal to support the railways over soft soils. They are widely used for the time-bound
infrastructure projects. The majority of earlier research concentrated on the analysis of the
GRPS embankments under static loads while the studies on the behavior of these
constructions under dynamic loads are scarce. The fundamental purpose of this study has
been to better comprehend the dynamic behavior of GRPS embankments in terms of
stresses and settlements distribution via 3D modeling employing the finite element method
(FEM). The advanced constitutive model of Hardening soil with small-strain stiffness was
utilized to simulate the behavior of the soils under dynamic loads and the train load was
modeled according to the recommendations of LM71 Eurocode. The results indicate to the
contribution of the piles and geosynthetic reinforcement in the decrease of the settlements.
The behavior of settlements and stresses under static and dynamic loads is similar.
The load efficiency of the piles decreases during the passage of the train remarkably. The
train speed affects obviously on the behavior of the GRPS embankment.
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Dynamic Analysis of Geosynthetic-reinforced Pile-supported Embankment for a High-Speed Rail
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Open access
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Óbudai Egyetem
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Budapest
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Óbudai Egyetem
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