Thanh T. Nguyen
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Recent Grants
Grant: Open
Novel green stabilisation technique for soil foundation under transport infrastructure
Open Date: 2023-01-01
Close Date: 2027-01-01
Grant: Close
Stabilising soil foundation with biopolymer for enhanced rail transport
Open Date: 2023-01-01
Close Date: 2026-01-01
Grant: Close
Characterisation of soil micro-structure and its influence on cyclic behaviour of rail track foundation
Open Date: 2023-01-01
Close Date: 2023-01-01
Grant: Close
A Novel Non-destructive Method to Assess Fluidization Failure of Subgrade Soils under Heavy Railways
Open Date: 2021-01-01
Close Date: 2022-01-01
Grant: Close
A novel biodegradable approach to stabilize mud pumping rail tracks (approx. $150K)
Open Date: 2020-01-01
Close Date: 2022-01-01
Articles (18)
The influence of soil fabric on the monotonic and cyclic shear behaviour of consolidated and compacted specimens
While the fabric of soil can significantly influence its behaviour, the effect of varying fabric parameters on the subgrade shear response is still not well understood. This study creates soil specimens with different fabrics which are then captured through X-ray microscopic-computed tomography scanning and quantified by image processing techniques. A comprehensive laboratory investigation is conducted to understand how the soil fabric affects its monotonic and cyclic shear behaviour. The results indicate that the consolidation method creates a more homogeneous fabric with mainly small-to-medium interconnected pores, whereas the compaction technique creates significantly large and mostly inter-aggregate pores with lower connectivity. In this regard, the consolidated specimens exhibit an elastic-perfectly plastic behaviour, while the compacted specimens show strain-hardening transformation during isotropic monotonic shearing. Under anisotropic conditions, the compacted specimens exhibit a greater strain softening response and excess pore pressure than the consolidated specimens because they have a weaker fabric. Furthermore, the compacted specimens show a smaller threshold strain at a lower critical number of cycles due to the collapse of large pores. These current findings prove the decisive role that soil fabric plays in determining the shear response and failure of subgrade soils.
Year:
2023
Recent Advancements in Geosynthetic Engineering for Sustainable Construction
Sustainable construction has become increasingly crucial recently due to the massive negative impacts that construction, including various geotechnical activities, can have on the surrounding environment [...]
Year:
2023
Collaborators (4)
Cholachat Rujikiatkamjorn
University of Sydney
Buddhima Indraratna
Distinguished professor and Director of Transport Research Centre
University of Sydney
Trung Ngo
Senior Lecturer
University of Technology, Sydney
Subhani Medawela
University of Sydney

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