Area of research
Civil and Structural Engineering · Mechanical Engineering
Research interest
Research interests include Asphalt Pavement Performance Evaluation, Infrastructure Maintenance and Monitoring, Geotechnical Engineering and Underground Structures, and Soil and Unsaturated Flow.
Development of an Artificial Neural Network-Based <i>k</i>-Value Prediction Model to Improve the Sensitivity of Base Layer on Rigid Pavement Performance
Laboratory Approach to Determine Roller Compacted Concrete Mixture Electrical Characteristics Using a New Time-Domain Reflectometry Interpretation Method
Improved Sensitivity of Base Layer on the Performance of Rigid Pavement
3D simulation of deflection basin of pavements under high-speed moving loads
Development of a mechanistic-empirical model to predict equilibrium suction for subgrade soil
Development of a modulus of subgrade reaction model to improve slab-base interface bond sensitivity
Parametric Study of Modified Subgrade Reaction Model Using Artificial Neural Network Approach
Review of mechanistic-empirical modeling of top-down cracking in asphalt pavements
Use of an Artificial Neural Network Approach for the Prediction of Resilient Modulus for Unbound Granular Material
Characteristics of damaged asphalt mixtures in tension and compression
Modeling Stress-Dependent Anisotropic Elastoplastic Unbound Granular Base in Flexible Pavements
Prediction of Soil-Water Characteristic Curve Using Artificial Neural Network Approach
Time-temperature-aging-depth shift functions for dynamic modulus master curves of asphalt mixtures
Numerical Modeling and Artificial Neural Network for Predicting <i>J</i> -Integral of Top-Down Cracking in Asphalt Pavement
Mechanistic-empirical models for better consideration of subgrade and unbound layers influence on pavement performance
Characteristics of undamaged asphalt mixtures in tension and compression
Viscoelasticplastic–Fracture Modeling of Asphalt Mixtures Under Monotonic and Repeated Loads
Modelling cracking damage of asphalt mixtures under compressive monotonic and repeated loads using pseudo J-integral Paris’ law
A mechanistic-empirical approach to quantify the influence of geogrid on the performance of flexible pavement structures
Mechanistic Composition–Specific Fatigue Life of Asphalt Pavements
Microfracture and Repeated Plastic Deformation in Unsaturated Soils as Influenced by Surficial Properties
NSF Traineeships in Civil Infrastructure for the Colonias
Indo-U.S. Workshop on Geotechnical Engineering Perspectives-Expansive Soils Conference, December 1-4, 1987, New Delhi and Roorkee, India, Award in U.S. and Indian Currencies