Assoc. Prof. Dr. Baitollah Badarloo | Structural engineering | Best Researcher Award
Faculty member at Qom University of Technology, Iran
Dr. Baitollah Badarloo ๐ฎ๐ท is an accomplished civil engineer and academic at Qom University of Technology ๐๏ธ, specializing in structural and seismic engineering ๐. With a Ph.D. in Structural Engineering from Tarbiat Modares University ๐, his research dives deep into masonry structures and their dynamic behavior during earthquakes ๐. Fluent in Persian ๐ฎ๐ท, Turkish ๐น๐ท, and English ๐ฌ๐ง, he passionately contributes to enhancing building safety and resilience ๐๏ธ. A married family man ๐, he actively studies retrofitting and FRP technologies to safeguard infrastructure. His scholarly work is recognized for its innovative insights and dedication to public safety and engineering advancement ๐ .
Professional Profile:
๐ Education & Experienceย
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๐ Ph.D. in Civil Engineering โ Structural Engineering (2010)
Tarbiat Modares University, Tehran, Iran
๐ Thesis: โFailure criteria of brick masonry based on biaxial testsโ -
๐ M.Sc. in Civil Engineering โ Structural Engineering (2004)
Tarbiat Modares University, Tehran, Iran
๐ Thesis: โNonlinear dynamic behavior of eccentric braced framesโ -
๐ B.Sc. in Civil Engineering (2002)
Shahid Chamran University, Ahvaz, Iran -
๐จโ๐ซ Academic Staff at Qom University of Technology
Focused on teaching and research in seismic behavior and structural retrofitting.
๐ผ Professional Developmentย
Dr. Badarloo has consistently advanced his professional expertise through rigorous research ๐งช, collaboration with experts ๐จโ๐ฌ, and academic contributions ๐. He actively engages in the study of structural performance under seismic loads โก, with a focus on improving existing infrastructure through innovative technologies like FRP ๐งต and retrofitting methods ๐๏ธ. Through supervising students, publishing research ๐, and participating in civil engineering seminars ๐, he maintains a cutting-edge knowledge base in seismic engineering. He also emphasizes experimental methodologies and computational modeling ๐ฅ๏ธ in his projects. His strong academic background enables him to deliver impactful solutions for real-world structural challenges ๐.
๐ Research Focusย
Dr. Badarlooโs research lies at the intersection of structural engineering and earthquake engineering ๐๏ธ๐. His key interests include the seismic behavior of masonry buildings ๐งฑ, nonlinear dynamic analysis ๐, and the use of Fiber-Reinforced Polymers (FRP) for structural strengthening ๐งต. He also works on developing innovative criteria for assessing failure in masonry under multi-axial stresses โ๏ธ. Dr. Badarloo’s work contributes to enhancing building safety in seismic zones ๐ and aims to retrofit vulnerable structures to withstand future quakes ๐ ๏ธ. His contributions are essential for developing cost-effective and resilient infrastructure in earthquake-prone regions ๐.
๐ Awards & Honorsย
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๐ Ph.D. Dissertation Grade: 19.00 / 20.00 โ Recognized for outstanding doctoral research
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๐๏ธ M.Sc. Dissertation Grade: 18.50 / 20.00 โ Awarded for excellence in graduate research
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๐ Consistent High Academic GPA across all degrees, reflecting academic excellence
Publication Top Notes
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Mechanical performance of heavy concrete with barite against sulfuric acid rain
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Journal: Innovative Infrastructure Solutions
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Publication Date: 2024-07
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The Effect of Scrap Tires and Reclaimed Asphalt Pavement on the Behavior of Stone Columns
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Journal: Buildings
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Publication Date: 2024-03-08
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Optimal Quantity Investigation of Metakaolin and Silica Fume in Production of Durable Acid Resistance Alkali Activated Slag Concrete
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Journal: Buildings
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Publication Date: 2023-12-20
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Practical Aspects of Correlation Analysis of Compressive Strength from Destructive and Non-Destructive Methods in Different Directions
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Journal: Infrastructures
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Publication Date: 2023-10-24
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Investigating the Effects of Concrete Mix Design on the Environmental Impacts of Reinforced Concrete Structures
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Journal: Buildings
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Publication Date: 2023-05-18
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Correlation study of physical and mechanical properties of concretes with crushed LCD glass
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Journal: Journal of Cleaner Production
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Publication Year: 2023
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ISSN: 09596526
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Nonlinear finite element analysis and parametric study of executable RCS connections
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Journal: Archives of Civil and Mechanical Engineering
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Publication Date: 2022-09-16
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Nonlinear forced vibration analysis of laminated composite doubly-curved shells enriched by nanocomposites incorporating foundation and thermal effects
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Journal: Aerospace Science and Technology
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Publication Date: 2022-08
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Mechanical Properties and Gamma Radiation Transmission Rate of Heavyweight Concrete Containing Barite Aggregates
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Journal: Materials
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Publication Date: 2022-03
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DOI: 10.3390/ma15062173
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Geometrically nonlinear electro-thermo-static analysis of piezoelectric/CNT/GPL/fibre/polymer sandwich panels with double curvature resting on elastic foundation
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Journal: Composite Structures
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Publication Year: 2022
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Numerical and experimental investigation on the modified of hot mix asphalt concrete containing crumb rubber and waste pet
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Journal: Tehnicki Vjesnik
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Publication Year: 2020
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Development and design of a new self-centering energy-dissipative brace for steel structures
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Journal: Journal of Intelligent Material Systems and Structures
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Publication Year: 2019
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Finite Element Analysis and ANFIS investigation of seismic behavior of sandwich panels with different concrete material in two story steel building
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Journal: Frattura ed Integrita Strutturale
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Publication Year: 2019
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A Numerical study on the effect of position and number of openings on the performance of composite steel shear walls
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Journal: Buildings
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Publication Year: 2018
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Failure Criteria of Unreinforced Grouted Brick Masonry Based on a Biaxial Compression Test
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Journal: Scientia Iranica
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Publication Year: 2009
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Conclusion
Dr. Baitollah Badarloo demonstrates strong academic credentials, relevant and high-impact research, and a clear focus on improving structural resilience, especially under seismic loads. His specialization in masonry behavior, dynamic structural analysis, and retrofitting with FRP supports both academic advancement and practical engineering applications.