Luo Liang | Intelligent Construction | Best Research Award
Dr.Luo Liang , Harbin Institute of Technology , China.
Dr.Luo Liangย is an Assistant Researcher specializing in intelligent construction and bridge engineering. he is a member of the Chinese Communist Party. He is currently pursuing a Ph.D. in Civil Engineering at Harbin Institute of Technology (HIT), focusing on AI-driven sustainable bridge maintenance and intelligent construction. Luo has published over ten high-impact SCI papers and has contributed to key national research projects. His expertise includes AI-driven decision-making for structural health monitoring and high-performance building connections. Luo is skilled in MATLAB, Python, CAD, and simulation software like Abaqus and ANSYS.
Publication Profile
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Education & Experienceย 

- Ph.D. in Civil Engineeringย (2021.09โ2025.01) โ Harbin Institute of Technology (C9)ย
- Research: Sustainable bridge assessment, AI-driven maintenance
- Advisors: Prof. Lรผ Dagang, Prof. Jia Mingming
- GPA: 3.56/4
- M.Sc. in Civil & Transportation Engineeringย (2018.09โ2021.06) โ South China University of Technology (985)ย
- Research: High-performance building connections
- Advisor: Prof. Wang Zhan
- GPA: 3.54/4
- B.Sc. in Civil Engineeringย (2014.09โ2018.06) โ East China Jiaotong Universityย
- GPA: 3.86/4 (Top 5%)
- Courses: Concrete & Steel Structure Design, Bridge Engineering
- Research Projects:
- National Key R&D Program (2022-2025)ย
ย โ AI-based dynamic maintenance for bridges
- National Natural Science Foundation Key Project (2017-2021)ย
ย โ High-performance structural connections
- National Key R&D Program (2022-2025)ย
- Industry Experience:
- Research Assistant (2021-Present)ย
ย โ Assists in national research & academic awards
- China Resources Land Guangzhou (2019-2021)ย
ย โ Participated in project planning & design
- Research Assistant (2021-Present)ย
Suitability Summary
Professional Developmentย 

Dr.Luo Liang is dedicated to advancing intelligent construction through AI and digital modeling. His Ph.D. research focuses on integrating AI-driven maintenance strategies for bridge structures, leveraging big data analytics, IoT sensing, and structural health monitoring. Luoโs expertise extends to high-performance structural connections, enhancing infrastructure resilience. He has hands-on experience with simulation tools like Abaqus, ANSYS, and Midas Civil, as well as programming languages such as Python and MATLAB. Additionally, he actively contributes to national research projects, optimizing AI-driven decision-making in civil engineering. His work bridges the gap between traditional structural engineering and emerging intelligent technologies.
Research Focusย 

Dr.Luo Liangย specializes in Intelligent Construction & Bridge Engineering, integrating AI-driven decision-making into infrastructure maintenance. His research revolves around:
- Sustainable Bridge Assessmentย
ย โ AI-powered maintenance strategies
- Smart Infrastructure Monitoringย
ย โ IoT-based predictive analytics
- Structural Health Diagnosisย
ย โ Digital modeling & 3D reconstruction
- High-Performance Structural Connectionsย
ย โ Experimental studies & simulations
- Lifecycle Structural Analysisย
ย โ Failure probability & serviceability evaluations
His work aims to improve infrastructure safety, sustainability, and efficiency through advanced computational models and intelligent monitoring technologies.ย
Awards & Honorsย 

- National Ph.D. Scholarship & Inspirational Scholarshipย
- Outstanding Graduate & Excellent Party Memberย
- Top 3 in University Bridge Design Competitionย
- Outstanding Student Leader & Three-Good Student Awardย
- Reviewer for SCI-indexed Journalsย
ย โ Conducts annual peer reviews for top research publications
Publication Top Notes
- “Exploration of the behavior and evolution features of beam-column joints with T-stub using the structural strain energy method”ย (2024)
- “Experimental study and analytical modeling of tensile performance of ultra-high-performance concrete incorporating modified recycled aggregates”ย (2024)
- “Experimental study and theoretical prediction of axial compression behavior in PMC-reinforced CFST columns with void defects”ย (2024)
- “The treated recycled aggregates effects on workability, mechanical properties and microstructure of ultra-high performance concrete co-reinforced with nano-silica and steel fibers”ย (2024)
- “Seismic behavior of reduced beam section joints considering concrete floor effect”ย (2024)
- “Evolution characteristics and performance evaluation of extended end-plate joints with single and double side connections under cyclic loading”ย (2024)