Area of research
Computational Mechanics · Management, Monitoring, Policy and Law
Research interest
Research interests include Mechanics, Granular material, Rheology, Computer science, Statistical physics, and Classical mechanics.
Advances in Modeling Dense Granular Media
Grain shape effects in bed load sediment transport
Bioinspired, ingestible electroceutical capsules for hunger-regulating hormone modulation
Stabilized mixed material point method for incompressible fluid flow analysis
Analysis and mitigation of spatial integration errors for the material point method
Modelling silo clogging with non-local granular rheology
Surprising simplicity in the modeling of dynamic granular intrusion
A coupled finite volume and material point method for two-phase simulation of liquid–sediment and gas–sediment flows
Efficacy of simple continuum models for diverse granular intrusions
Efficacy of simple continuum models for diverse granular intrusions
Power-Law Scaling in Granular Rheology across Flow Geometries
Mitigating memory effects during undulatory locomotion on hysteretic materials
Expanded scaling relations for locomotion in sloped or cohesive granular beds
Non-locality in Granular Flow: Phenomenology and Modeling Approaches
Modeling of the interaction of rigid wheels with dry granular media
A general fluid–sediment mixture model and constitutive theory validated in many flow regimes
Microscopic Description of the Granular Fluidity Field in Nonlocal Flow Modeling
General scaling relations for locomotion in granular media
Intrusion rheology in grains and other flowable materials
Continuum modeling of projectile impact and penetration in dry granular media
Coupled dynamics of flow, microstructure, and conductivity in sheared suspensions
Foreword on the special issue: from discrete particles to continuum models of granular mechanics
General scaling relations for locomotion in granular media
A Microscopic Description of the Granular Fluidity Field in Nonlocal Flow Modeling
Continuum modelling and simulation of granular flows through their many phases
Modeling growth paths of interacting crack pairs in elastic media
Modeling tensorial conductivity of particle suspension networks
Nonlocal modeling of granular flows down inclines
Continuum Modeling of Secondary Rheology in Dense Granular Materials