Numerical simulation of scale effects in shallow soil anchors interacting with shear bands

Численное моделирование масштабных эффектов в мелкозаглублённых грунтовых анкерах, взаимодействующих с полосами сдвига
Dawei Xue, Giuseppe Buscarnera
2026-01-08

gradient-enhanced plasticitypullout capacityscale effectsshallow plate anchorsshear bands
Abstract The interaction between geotechnical structures and plastic shear zones influences the performance of these systems, particularly in case of nonstandard installations with miniaturized components. This paper examines this problem numerically with an implicit gradient-enhanced plasticity model able to constrain the shear band thickness dictated by the soil microstructure. The model, therefore, enables the quantification of scale effects regulated by differences between system dimensions and interacting shear zone geometry. The effectiveness of the model is demonstrated by examining the pullout capacity scaling of miniaturized shallow plate anchors. The numerical simulations, validated by 1 g experiments, show that decreasing model size leads to an increase in pullout capacity across all levels of anchor uplift, along with thickening and shortening of the corresponding shear bands. Such effects are amplified by anchor burial depth and are also observed in centrifuge tests and corresponding simulations, provided that the model setup involves variations in the relative dimensions between particles and the tested geostructure. Finally, corrective factors are introduced based on the shear band thickness to anchor size ratio, thus facilitating the quantification of the pullout capacity for anchors with nonstandard geometry and miniaturized components, for which such scale effects are expected to be more prominent.
1
An implicit gradient-enhanced plasticity model constrains shear-band thickness according to soil microstructure, enabling numerical quantification of geotechnical scale effects.
2
Corrective factors based on the shear-band-thickness-to-anchor-size ratio quantify pullout capacity for nonstandard and miniaturized anchors.
3
Similar scale effects occur in centrifuge tests and simulations when particle-to-geostructure relative dimensions vary.
4
Smaller anchors develop shear bands that are thicker and shorter; these effects intensify with increasing anchor burial depth.
5
Validated against 1 g experiments, simulations show that reducing shallow anchor size increases pullout capacity at all levels of anchor uplift.

miniaturized shallow plate anchors interacting with soil shear bands

scale effects on anchor pullout capacity and shear-band geometry as functions of anchor size, burial depth, and relative particle-to-structure dimensions

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2026-01-08
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Dawei Xue
Giuseppe Buscarnera
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