Personal profile

Research Interests

Geotechnical Engineering – Analytical, Experimental & Numerical)

 

  • Numerical modelling of behaviour of deep mixing improved soils under dynamic loading

  • Elastoplastical analysis of the interface between clay and stabilised ground incorporating the effect of normal stress history

  • Finite element analysis of performnace of stabilised ground under varying stress conditions such as uniaxial and triaxial stress fields

  • Improvement of weak soils for construction purpose using by-product cementitious materials 

  • Pull out resistance of deep mixing improved soils and treatment of expansive soils for reducing swell potential

  • Behaviour of deep mixing improved soils under multi-cyclic compaction using RDC

  • Development of performance prediction models for stabilised soils

  • Thermal and hydraulic conductivity of deep mixing improved soils and interface performance of stabilised subgrades under cyclic loading.

Fingerprint Fingerprint is based on mining the text of the person's scientific documents to create an index of weighted terms, which defines the key subjects of each individual researcher.

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Research Output 2015 2017

  • 5 Article
  • 2 Literature review
Cements
Soils
Compressive strength
Ashes
Pulverized fuel
Soil cement
Stress concentration
Soils
Forms (concrete)
Shear walls
Delamination
Finite element method
Composite materials
Polymers
Substrates
Soils
Plasticity
Swelling
Cements
Ashes

Mechanism of Hydraulic Fracturing in Cohesive Zone of Embankment Dam Cores - A Review

Poudel, S., Abbey, S. & Ngambi, S. 31 Jul 2017 In : International Journal of Civil Engineering & Technology (IJCIET). 8, 7, p. 1202 - 1213 12 p., 7

Research output: Contribution to journalLiterature review

Hydraulic fracturing
Embankment dams
Dams
Computer simulation
Water