Selected Works of Dr. Alex Remennikov
Dr. Alex Remennikov is a Senior Lecturer in the School of Civil, Mining and Environmental Engineering at the University of Wollongong.
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- A Review of Methods for Predicting Bomb Blast Effects on Buildings
- Application of Experimental Modal Testing for Estimating Dynamic Properties of Structural Components
- Deterioration of dynamic rail pad characteristics
- Determination of dynamic properties of rail pads using an instrumented hammer impact technique
- Experimental and Numerical Studies of Railway Prestressed Concrete Sleepers Under Static and Impact Loads
- Experimental determination of energy absorption capacity for prestressed concrete sleepers under impact loads
- Influence of voids and pockets on vibration characteristics of railway concrete sleepers
- Integrated field measurements and track simulations for condition assessment of railway track
- Investigation of vibration characteristics of prestressed concrete sleepers in free-free and in-situ conditions
- Investigations of static and dynamic performance of railway prestressed concrete sleepers
- Low-velocity impact analysis of railway prestressed concrete sleepers
- Modelling blast loads on buildings in complex city geometries
- Monitoring structural degradation of rail pads in laboratory using impact excitation technique
- Non-destructive evaluation for dynamic integrity of railway track structure
- Non-destructive testing (NDT): A tool for dynamic health monitoring of railway track structures
- Nonlinear finite element modelling of railway prestressed concrete sleeper
- Post-failure mechanism and residual load-carrying capacity of railway prestressed concrete sleeper under hogging moment
- Relationships between wheel/rail interface impact and railseat flexural moment of railway prestressed concrete sleepers
- Resistance of railway concrete sleepers to impact loading
- Response and Prediction of Dymanic Characteristics of Worn Rail Pads Under Static Preloads
- Rotational capacity of railway prestressed concrete sleeper under static hogging moment
- Simulating shock loads in railway track environments: experimental studies
