Andrew Cudzo Amenuvor
Dr. X has made significant contributions to the field of geotechnical engineering through their research spanning Railway Engineering & Dynamics, Soil and Unsaturated Flow, Geotechnical Engineering & Analysis, Advanced Fiber Optic Sensors, Embedded Systems & FPGA Design, Landslides & Hazard Assessment, and Structural Behavior of Reinforced Concrete. Their work integrates methodologies from various disciplines, emphasizing the integration of soil mechanics with engineering systems and advanced technologies for enhanced geotechnical solutions.
Faculty Biography
A lecturer in the Department of Geological Engineering, with research and work experience in expansive soils, slope stability analysis, and soft soil improvement. Authored high-level scientific publications in high profile journals. Proficient in a wide range of geotechnical/geological engineering software.
Advanced Fiber Optic Sensors
Embedded Systems and FPGA Design
Geotechnical Engineering and Analysis
Geotechnical Engineering and Soil Stabilization
Landslides and related hazards
Railway Engineering and Dynamics
Soil and Unsaturated Flow
Structural Behavior of Reinforced Concrete
Dependence of stress relaxation behavior of prestressed GFRP bar anchor structures on environmental pH and temperature
Coupled effects of earthquake and rainfall on landslide susceptibility in non-tropical coastal areas: assessing governing mechanisms and innovative slope protection strategy
Open AccessNumerical Modeling of Contributing Factors to Rainfall-Induced Slope Failure: New Jersey Case Study
The use of natural non-expansive soil cover to prevent water loss and crack formation in underlying expansive soil slope
Crack development in a physical model of undisturbed expansive soil slope and core sample under wet-dry cycles
Determining representative elementary volume size of in-situ expansive soils subjected to drying-wetting cycles through field test
An image-based method for quick measurement of the soil shrinkage characteristics curve of soil slurry
Erratum for “Effect of Open-Ended PHC Pile Installation during Embankment Widening on the Surrounding Soil” by Guowei Li, Andrew Cudzo Amenuvor, Yuzhou Hou, Xiaocen Lu, Jiantao Wu, and Thang Ngoc Nguyen
Open AccessEffect of Open-Ended PHC Pile Installation during Embankment Widening on the Surrounding Soil
Vibration velocity of X-section cast-in-place concrete (XCC) pile–raft foundation model for a ballastless track
Experimental Investigations on Load Transfer of PHC Piles in Highway Foundation Using FBG Sensing Technology
Settlement Prediction of Surcharge Preloaded Low Embankment on Soft Ground Subjected to Cyclic Loading
Research on Unmanned Helicopter Communication System Based on μC/OS-II Operating System
Department of Geological Engineering
Kwame Nkrumah University of Science and Technology