Mr Mohammadamin Mirdarsoltan | Coastal Protection | Best Researcher Award

Mr Mohammadamin Mirdarsoltan | Coastal Protection | Best Researcher Award

PhD candidate , University of MiAMI ,United States 

Dr. Mohammadamin Mirdarsoltany is a dedicated structural engineer with a strong background in materials science and reinforced concrete design. He holds a PhD in Civil Engineering from the University of Miami, where his research focused on the application of Fiber-Reinforced Polymer (FRP) bars in concrete reinforcement, specifically for seawalls. With a proven track record of excellence, Dr. Mirdarsoltany is an active member of several professional engineering organizations, including the American Concrete Institute (ACI) and the American Society of Civil Engineers (ASCE). His passion for advancing sustainable construction techniques is demonstrated through numerous published research papers and contributions to industry standards. Skilled in various engineering software such as SAP2000, ETABS, and ABAQUS, he continues to contribute to the field of structural engineering by enhancing the durability and performance of reinforced concrete structures through innovative materials and techniques.

Profile

Scopus

Google Scholar

Strengths for the Award:

  • Innovative Research Focus: Dr. Mirdarsoltany’s work on sustainable materials like FRP and hybrid composites has direct applications in improving infrastructure resilience against coastal and seismic challenges. His ability to integrate advanced materials science with structural engineering is commendable.
  • Publication Record: His extensive publication record, particularly in high-impact journals, underscores his contribution to the field of civil engineering. He has authored several highly-cited articles related to innovative reinforcement methods for concrete structures.
  • Professional Engagement: Active membership in leading professional organizations such as ACI and ASCE reflects his commitment to the field and continuous professional development.

Areas for Improvement:

  • Wider Industry Impact: While his research is highly relevant, expanding his influence into large-scale industry applications, including collaborations with engineering firms and governmental bodies, could amplify the real-world impact of his work.
  • Interdisciplinary Projects: Pursuing more interdisciplinary research, particularly involving environmental engineers or urban planners, could broaden the scope of his impact on sustainable infrastructure solutions.

 

Education 

Dr. Mohammadamin Mirdarsoltany completed his PhD in Civil Engineering at the University of Miami, Florida, focusing on the effects of Fiber-Reinforced Polymer (FRP) bars for concrete reinforcement, particularly in seawalls. His dissertation was supervised by Prof. Antonio Nanni. He also holds a Master’s degree in Civil Engineering with an emphasis on Earthquake Engineering from Amirkabir University of Technology in Tehran, Iran, where he researched improving the ductility of composite bars through hybridization, under the guidance of Dr. Alireza Rahai and Dr. Farzad Hatami. Dr. Mirdarsoltany’s academic background is complemented by a Bachelor’s degree in Civil Engineering from Islamic Azad University, South Tehran Branch. Throughout his education, he has gained expertise in advanced structural analysis, finite element analysis, concrete material science, seismic design, and sustainable construction. His diverse academic foundation has equipped him to address critical challenges in structural engineering, particularly in concrete durability and reinforcement systems.

Research Focus 

Dr. Mohammadamin Mirdarsoltany’s research focuses on the development and application of advanced reinforcement materials, such as Fiber-Reinforced Polymers (FRP) and hybrid composite bars, for improving the performance of concrete structures. His work aims to enhance the durability, ductility, and sustainability of reinforced concrete, particularly for infrastructure subjected to harsh environmental conditions like seawalls and buildings in seismic zones. His research explores the mechanical properties, corrosion resistance, and seismic performance of various composite materials, including basalt-carbon and basalt-steel hybrid composites. Through experimental investigations and analytical studies, Dr. Mirdarsoltany strives to optimize the use of sustainable materials in construction, contributing to safer, more efficient, and environmentally friendly engineering practices. His interdisciplinary research bridges materials science, structural engineering, and sustainable construction techniques to address real-world challenges in concrete reinforcement and structural performance.

 

Publications 

  1. “Fiber-reinforced polymer (FRP) in concrete: A comprehensive survey” 📚
  2. “Evaluating GFRP bars under axial compression and quantifying load-damage correlation” 🏗️
  3. “A comprehensive review of the effects of different simulated environmental conditions and hybridization processes on the mechanical behavior of different FRP bars” 🌍
  4. “Influence of metakaolin on fresh properties, mechanical properties and corrosion resistance of concrete and its sustainability issues: A review” 🌿
  5. “Investigating tensile behavior of sustainable basalt–carbon, basalt–steel, and basalt–steel-wire hybrid composite bars” 💪
  6. “Experimental Investigation on the Ductility of Concrete Deep Beams Reinforced with Basalt-Carbon and Basalt-Steel Wire Hybrid Composite Bars” 🏢
  7. “Performance Evaluation of CFRP Strengthened Corrosion-Proof Columns” 🏢⚙️

Conclusion

Dr. Mirdarsoltany’s research on sustainable and resilient structural reinforcement materials makes him an excellent candidate for the Best Researcher Award. His work combines innovative material science with real-world engineering challenges, contributing significantly to both academia and industry. His continued focus on coastal protection and seismic resilience has the potential to shape the future of structural engineering, making him a promising leader in his field.

 

Weijie Li – Civil Structural Health Monitoring – Best Researcher Award

Weijie Li - Civil Structural Health Monitoring - Best Researcher Award

Dalian University of Technology - China

AUTHOR PROFILE

ORCID
GOOGLE SCHOLAR

WEIJIE LI: LEADING RESEARCHER IN SMART MATERIALS AND STRUCTURAL HEALTH MONITORING 🌐

EDUCATION AND EARLY CAREER 🎓

Dr. Weijie Li earned his Ph.D. in Mechanical Engineering from the University of Houston, USA, graduating in 2017. His academic journey has been marked by a focus on innovative technologies and their applications in civil engineering, particularly in the realms of structural health monitoring and smart materials. Prior to his doctoral studies, he pursued his undergraduate and master's degrees at Dalian University of Technology, China, setting a solid foundation in infrastructure engineering.

PROFESSIONAL EXPERIENCE AND CURRENT ROLE 🏢

Currently serving as an Associate Professor in the School of Civil Engineering at Dalian University of Technology, Dr. Li has been instrumental in advancing research in smart materials and structural health monitoring. Previously, he held a prestigious postdoctoral researcher position at Harbin Institute of Technology Shenzhen Graduate School, contributing significantly to the field from 2018 to 2021.

RESEARCH FOCUS AND CONTRIBUTIONS 🛠️

Dr. Li's research is acclaimed for its pioneering contributions to the development and application of fiber optic sensors, piezoelectric sensors, and electromechanical impedance techniques in monitoring structural integrity. His work includes breakthroughs such as the development of spherical smart aggregates for concrete crack repair monitoring and innovative methods for strain measurement using smartphone-based technologies.

PUBLICATIONS AND ACADEMIC IMPACT 📚

With over 73 publications in esteemed journals like Smart Materials and Structures, Sensors, and Structural Health Monitoring, Dr. Li's research has garnered significant citations and recognition in the academic community. His contributions extend to multiple disciplines, including civil engineering, materials science, and sensor technology, reflecting his interdisciplinary approach and commitment to advancing knowledge in his field.

AWARDS AND RECOGNITIONS 🏆

Dr. Li's expertise and dedication have been recognized through numerous awards and accolades within the academic and research communities. His work has been pivotal in enhancing the understanding and application of smart materials in civil infrastructure, paving the way for safer and more resilient structural designs.

PROFESSIONAL NETWORK AND ENGAGEMENT 🌟

Dr. Weijie Li maintains an active presence in the academic community through memberships in professional societies and collaborations with international research institutions. His leadership in research projects and mentorship of students underscores his commitment to fostering the next generation of scholars and innovators in civil engineering and smart materials.

FUTURE DIRECTIONS AND INNOVATIONS 🚀

Moving forward, Dr. Li continues to explore new frontiers in smart materials and structural health monitoring, aiming to integrate cutting-edge technologies into practical applications that enhance the safety and efficiency of civil infrastructure worldwide. His visionary research promises to shape the future of structural engineering, addressing global challenges through innovative solutions.

NOTABLE PUBLICATION

Authors: Weijie Li, Changhang Xu, Siu Chun Michael Ho, Bo Wang, Gangbing Song
Publication date: 2017/3/22
Journal: Sensors
Publisher: Multidisciplinary Digital Publishing Institute.
Authors: Guangping Li, Mingzhang Luo, Jinping Huang, Weijie Li
Publication date: 2023/3/1
Journal: Mechanical Systems and Signal Processing
Publisher: Academic Press.
Authors: Weijie Li, Tiejun Liu, Huangbin Xiang
Publication date: 2021/9
Journal: Journal of Intelligent Material Systems and Structures
Publisher: SAGE Publications
Authors: Weijie Li, Jianjun Wang, Tiejun Liu, Mingzhang Luo
Publication date: 2020/1/27
Journal: Smart Materials and Structures
Publisher: IOP Publishing

Yassir Wardi – Composite structures – Best Researcher Award

Yassir Wardi - Composite structures - Best Researcher Award

INSA Rennes/LGCGM - France

AUTHOR PROFILE

Scopus
ORCID

EARLY ACADEMIC PURSUITS

Yassir Wardi's academic journey began with a Bachelor's degree in Civil Engineering from Ecole Mohammadia d'Ingenieurs (EMI) in Morocco, where he laid the groundwork for his future in structural engineering. He furthered his education with a Master's degree in Structural Engineering from Budapest University of Technology and Economics (BUTE), Hungary, enhancing his knowledge in areas such as structural dynamics and seismic design. This journey culminated in a Ph.D. in Structural Engineering from INSA de Rennes, France, focusing on composite structures and finite element analysis.

PROFESSIONAL ENDEAVORS

As a structural engineer at ARC-S Group, Yassir Wardi gained hands-on experience in structural design and modeling of various constructions, including concrete, steel, and Cross-Laminated Timber (CLT) houses. His in-house R&D projects honed his skills in innovative structural systems and prepared him for his current role as a professor at Hubei University of Economics.

CONTRIBUTIONS AND RESEARCH FOCUS

Yassir's research focuses on composite structures, particularly the development of finite element models to analyze the behavior of composite beams under different loading conditions. His work has contributed to the understanding of structural response to time effects such as creep and shrinkage, enhancing the accuracy of structural predictions and design methodologies.

IMPACT AND INFLUENCE

Yassir's research has made a significant impact on the field of structural engineering, particularly in the analysis and design of composite structures. His publications in reputable journals and conferences have garnered attention, contributing to the advancement of knowledge and methodologies in the field.

ACADEMIC CITES

Yassir's publications have been cited multiple times, reflecting the relevance and impact of his research in the academic community. His work serves as a foundational resource for researchers and practitioners in the field of composite structures and finite element analysis.

LEGACY AND FUTURE CONTRIBUTIONS

Yassir Wardi's legacy lies in his dedication to advancing the understanding and design of composite structures. His future contributions are poised to further push the boundaries of knowledge in this field, paving the way for safer, more efficient, and sustainable structural solutions.

NOTABLE PUBLICATION

3D formulation of mono-symmetrical composite beams with deformable connection 2024

Luo Yong – Civil Engineering – Best Researcher Award

Luo Yong - Civil Engineering - Best Researcher Award

Guangzhou University - China

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Luo Yong's academic journey showcases a strong foundation in geological engineering and resource exploration engineering, culminating in his current pursuit of a Ph.D. in Civil Engineering at Universiti Sains Malaysia. His research interests have evolved from studying geological processes to focusing on enhancing the durability of bamboo fiber reinforced concrete.

PROFESSIONAL ENDEAVORS

With extensive experience as a teacher at Fujian Forestry Vocational and Technical College, Luo Yong has led and participated in various research projects focused on bamboo fiber reinforced concrete and asphalt. His work involves applying natural fibers to enhance the mechanical properties and durability of concrete, particularly for applications in civil engineering infrastructure such as electrically heated bridge decks.

CONTRIBUTIONS AND RESEARCH FOCUS

Luo Yong's research focuses on leveraging the "100 billion bamboo industry" in Nanping to develop innovative solutions for civil engineering challenges. By applying bamboo fibers to concrete and asphalt, he aims to improve their mechanical properties, durability, and electrical conductivity. His work also involves finite element analysis to optimize the design of electrically heated bridge decks and simulate dynamic energy output for optimal performance.

IMPACT AND INFLUENCE

Through his research on bamboo fiber reinforced concrete and asphalt, Luo Yong seeks to address critical issues in civil engineering infrastructure, such as enhancing the durability of bridge decks and improving pavement performance. His findings have the potential to contribute to more sustainable and resilient infrastructure solutions, impacting the field of civil engineering positively.

ACADEMIC CITES

Luo Yong's research has been recognized and published in reputable journals, including MATERIALI IN TEHNOLOGIJE, Vegetos, and Construction and Building Materials. These publications highlight his contributions to advancing knowledge in the field of civil engineering, particularly in the application of natural fibers to enhance concrete and asphalt performance.

LEGACY AND FUTURE CONTRIBUTIONS

As Luo Yong continues his research in civil engineering, his work holds promise for shaping the future of infrastructure materials and design. By developing innovative solutions using bamboo fibers, he aims to contribute to the sustainability, durability, and performance of civil engineering infrastructure, leaving a lasting legacy in the field.

NOTABLE PUBLICATION

The structural and performance characterization of bamboo fibers treated with calcium hydroxide solution 2024

Finite element simulation and falling ball impact model for cement concrete pavement considering void under slab 2024

Roberto Alonso Gonzalez Lezcano – Building and Construction – Best Researcher Award 

Roberto Alonso Gonzalez Lezcano - Building and Construction - Best Researcher Award 

CEU San Pablo University - Spain

AUTHOR PROFILE

Scopus
ORCID
Researcher ID

EARLY ACADEMIC PURSUITS

Roberto Alonso Gonzalez Lezcano's academic journey began with a strong foundation in Mechanical and Industrial Engineering at Universidad Tecnológica de Panamá. He furthered his education with postgraduate studies in Mechanical Engineering and Higher Education, laying the groundwork for his future career in academia and research.

PROFESSIONAL ENDEAVORS

With a solid academic background, Roberto Alonso Gonzalez Lezcano embarked on a career dedicated to academia and research. From teaching roles at Universidad Tecnológica de Panamá to tenured professorships at prestigious institutions like Universidad CEU San Pablo, his professional journey reflects a commitment to excellence in the field of Architecture and Design.

CONTRIBUTIONS AND RESEARCH FOCUS

Roberto Alonso Gonzalez Lezcano's research focus lies in the realm of Building and Construction, as evidenced by his numerous projects and contracts. From studying the mechanical behavior of materials to investigating the energy impact of residential building permeability, his contributions have advanced our understanding of structural engineering and architectural design.

IMPACT AND INFLUENCE

Through his tenure as a professor and involvement in research projects, Roberto Alonso Gonzalez Lezcano has made a significant impact on his field. His work has not only contributed to academic knowledge but has also influenced practical applications in the construction industry, shaping the future of building technology.

ACADEMIC CITES

Roberto Alonso Gonzalez Lezcano's research has garnered recognition, as evidenced by his PhD Extraordinary Award and active participation in funded projects. His contributions have likely been cited in academic literature, further solidifying his reputation as a thought leader in Building and Construction.

LEGACY AND FUTURE CONTRIBUTIONS

As Roberto Alonso Gonzalez Lezcano continues his academic and research endeavors, his legacy will be marked by his dedication to advancing the field of Building and Construction. His future contributions hold promise for further innovations in architectural design, structural engineering, and sustainable construction practices.

NOTABLE PUBLICATION

Influence of various fibers on the physico-mechanical properties of a sustainable geopolymer mortar-based on metakaolin and slag  2023 (2)

Micheal Sakr – Structural Health Monitoring – Best Researcher Award

Micheal Sakr - Structural Health Monitoring - Best Researcher Award

Western University of Ontario - Canada

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Micheal Sakr commenced his academic journey with a Bachelor of Science in Civil Engineering from the University of Balamand, Lebanon, where he achieved outstanding academic performance, earning a cumulative average of 90.06% and graduating with distinction. He further enriched his academic background with graduate coursework in Structural Engineering at the University of Western Ontario, Canada, where he is currently pursuing a Ph.D. under the supervision of Dr. Ayan Sadhu. His research focus revolves around Digital Twins for Structural Health Monitoring, showcasing his commitment to advancing the field of structural engineering.

PROFESSIONAL ENDEAVORS

Throughout his academic career, Micheal has demonstrated versatility and excellence, serving as a Teaching Assistant at Western University, where he contributed to courses such as Engineering Statics, Advanced Structural Dynamics, and Professional Communication for Engineers. Additionally, his experience as an AutoCAD Drafter equipped him with practical skills in handling structural detailing and drawings for civil engineering projects.

CONTRIBUTIONS AND RESEARCH FOCUS

Micheal's research interests center on Structural Health Monitoring, a field critical for ensuring the safety and integrity of civil infrastructure. His work involves utilizing specialized equipment for structural testing, such as displacement sensors, accelerometers, and acoustic emission sensors, to assess the strength and response of various structural elements. By actively participating in research projects and mentoring initiatives, Micheal demonstrates his dedication to advancing knowledge and addressing real-world engineering challenges.

IMPACT AND INFLUENCE

Micheal's contributions to the field of Structural Health Monitoring have the potential to make a significant impact on civil engineering practices, particularly in ensuring the safety and resilience of infrastructure systems. His involvement in community aid groups and volunteer activities further underscores his commitment to making a positive difference in society.

ACADEMIC CITES

Micheal's academic achievements, including his outstanding performance in coursework and research, have positioned him as a promising scholar in the field of structural engineering. His contributions to research projects and mentorship activities reflect his dedication to academic excellence and professional development.

LEGACY AND FUTURE CONTRIBUTIONS

As Micheal continues to pursue his Ph.D. and engage in research endeavors, he is poised to leave a lasting legacy in the field of Structural Health Monitoring. His passion for innovation, coupled with his strong academic foundation and practical skills, sets the stage for future contributions that will advance the safety, sustainability, and resilience of civil infrastructure worldwide.

NOTABLE PUBLICATION

Visualization of structural health monitoring information using Internet-of-Things integrated with building information modeling.  2023 (4)

Olaolu George Fadugba – Highway Materials – Best Researcher Award

Olaolu George Fadugba - Highway Materials - Best Researcher Award

FEDERAL UNIVERSITY OF TECHNOLOGY AKURE - Nigeria

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Olaolu George Fadugba embarked on his academic journey with a Bachelor of Engineering degree in Civil Engineering from the Federal University of Technology Akure, Nigeria, in 2008. He continued his studies with a Master of Engineering degree in Geotechnical Engineering, specializing in In-situ Chemical Oxidation (ISCO) Remediation of Hydrocarbon Contaminated Groundwater, which he completed in 2014. Fadugba further pursued his academic aspirations by obtaining a Ph.D. in Geotechnical Engineering from the Federal University of Technology Akure, Nigeria, in 2018, focusing on the in-situ pilot-scale remediation of hydrocarbon-contaminated groundwater.

PROFESSIONAL ENDEAVORS

Fadugba's professional career spans over nine years, primarily in the academia, where he has excelled in teaching, research, and mentoring. He has been recognized for his excellence and significant contributions to knowledge in geotechnical and geo-environmental engineering. Fadugba's strengths lie in collaborative research, academic writing, and public engagement, backed by his expertise in civil engineering and science communication.

CONTRIBUTIONS AND RESEARCH FOCUS

Fadugba's research focuses on site remediation in Nigeria, employing both proven and innovative technologies. His expertise lies in geotechnical and geo-environmental engineering, with a specific interest in remediation techniques for hydrocarbon-contaminated groundwater. He has conducted extensive research in this field, contributing to advancements in environmental engineering practices.

IMPACT AND INFLUENCE

Fadugba's contributions to the field of highway materials have made a significant impact, as evidenced by his citations and h-index on Google Scholar and Scopus. His research findings and publications have influenced academia, industry, and government policies, shaping practices in site remediation and environmental engineering.

ACADEMIC CITATIONS

Fadugba's research has garnered citations from peers and researchers in the academic community, reflecting the relevance and impact of his work in highway materials. His citations on Google Scholar and Scopus attest to the recognition and influence of his contributions to the field.

LEGACY AND FUTURE CONTRIBUTIONS

Olaolu George Fadugba's dedication to teaching, research, and mentoring ensures a lasting legacy in the field of geotechnical and geo-environmental engineering. His continued efforts in advancing knowledge, collaborating with stakeholders, and mentoring future generations of engineers will contribute to sustainable practices and innovations in highway materials and environmental engineering.

NOTABLE PUBLICATION

Laboratory treatability of hydrocarbon contaminated groundwater using engineered nanotechnology.  2021 (1)