Mr. Mohsen bagheri | Civil Engineering | Best Researcher Award

Mr. Mohsen bagheri | Civil Engineering | Best Researcher Award

Babol Noshirvani University of Technology | Iran

Mohsen Bagheri is a civil engineer and independent researcher with over a decade of expertise in geotechnical and earthquake engineering. He holds an M.Sc. in Civil/Geotechnical Engineering from Babol Noshirvani University of Technology and has collaborated extensively with international institutions including Aalborg University, Virginia Tech, Newcastle University, and Western Sydney University. His research focuses on soil-structure interaction, liquefaction, breakwater stability, foundation design, and offshore geotechnical structures, contributing to advancements in both theory and practice. Bagheri has successfully completed or contributed to more than 10 major research projects, while also providing geotechnical consulting services for landmark projects such as the Arak Car Manufacturing Tower and South Pars LNG Breakwater. He has published over 10 peer-reviewed articles in SCI and Scopus-indexed journals, including Q1-ranked outlets like International Journal of Geomechanics and Soil Dynamics and Earthquake Engineering. His scholarly impact is reflected in a Google Scholar h-index of 8, Scopus h-index of 7, Publons h-index of 6, and total citations reaching 463 across 110 documents. Recognized with multiple distinguished engineer awards, Bagheri continues to drive innovation in geotechnical solutions with a strong focus on soil improvement, sustainable infrastructure, and earthquake resilience, positioning his work at the intersection of research and industry application.

Profile:  Google Scholar 

Featured Publications

“Numerical simulation of improvement of a liquefiable soil layer using stone column and pile-pinning techniques”

“Effect of Seismic Soil–Pile–Structure Interaction on Mid- and High-Rise Steel Buildings Resting on a Group of Pile Foundations”

“Deformation mechanisms for offshore monopile foundations accounting for cyclic mobility effects””Advanced seismic analysis of soil-foundation-structure interaction for shallow and pile foundations in saturated and dry deposits: Insights from 3D parallel finite element modeling”

“Numerical evaluation of seismic response of shallow foundation on loose silt and silty sand”

“Seismic resilience of pile groups to lateral spreading in liquefiable soils: 3D parallel finite element modeling”

“Response of monopiles in sand subjected to one-way and transient cyclic lateral loading”