Giuseppe Marano | Structural Engineering | Environmental Leadership in Civil Engineering Award

Environmental Leadership in Civil Engineering Award

Giuseppe Marano
Politecnico di Torino

Giuseppe Marano
Affiliation Politecnico di Torino
Country Italy
Scopus ID 57382102800
Documents 374
Citations 5901
h-index 44
Subject Area Structural Engineering
Event Global Civil Engineering Awards
ORCID 0000-0001-8472-2956

Giuseppe Marano is a distinguished researcher in structural engineering at Politecnico di Torino whose scholarly activities have contributed to the advancement of sustainable structural systems, optimization methods, reliability analysis, and innovative civil engineering design approaches. Through an extensive publication record and significant citation impact, his work has supported the development of efficient engineering solutions that align with modern environmental and infrastructure challenges. His academic contributions demonstrate a sustained commitment to scientific excellence, interdisciplinary collaboration, and the responsible advancement of civil engineering knowledge.[1]

Abstract

Giuseppe Marano has established a notable academic profile in structural engineering through research focused on structural optimization, reliability assessment, sustainable construction systems, and advanced computational methods. His publications address challenges associated with resilient infrastructure, material efficiency, and innovative engineering design. By integrating analytical modeling with practical engineering applications, he has contributed to improving structural performance while supporting environmental sustainability objectives. The breadth of his scholarly output, combined with substantial citation recognition, reflects the influence of his work within the international engineering community. These achievements position him as a significant contributor to contemporary civil engineering research and innovation.[1][2]

Keywords

Structural Optimization, Reliability Analysis, Sustainable Structures, Evolutionary Algorithms, Steel Structures, Concrete Structures, Infrastructure Resilience, Computational Mechanics, Structural Design, Civil Engineering Innovation.

Introduction

Giuseppe Marano has pursued research addressing complex engineering challenges related to structural behavior, optimization techniques, and sustainable infrastructure development. His investigations combine theoretical rigor with practical relevance, supporting the advancement of engineering methodologies capable of improving safety, efficiency, and long-term environmental performance within civil engineering systems.[2]

Research Profile

Giuseppe Marano’s research profile encompasses structural engineering, optimization algorithms, reliability-based design, and sustainable infrastructure analysis. His scholarly activities demonstrate extensive engagement with computational methods and engineering applications that support improved structural efficiency, resource conservation, and resilience across diverse civil engineering projects and built environments.[1]

Research Contributions

Giuseppe Marano has contributed to the development of optimization frameworks and reliability assessment methodologies that support sustainable structural design. His studies have enhanced understanding of material utilization, structural performance evaluation, and computational decision-making processes, facilitating more efficient engineering solutions aligned with environmental and economic considerations.[3]

Publications

Giuseppe Marano has authored and co-authored numerous peer-reviewed publications addressing structural optimization, advanced computational techniques, reliability engineering, and sustainable construction practices. His research outputs have appeared in recognized international journals and have contributed substantially to ongoing academic discussions within structural and civil engineering disciplines.[2][4]

Research Impact

Giuseppe Marano’s research impact is reflected through substantial citation metrics, international visibility, and broad scholarly engagement. His work has informed subsequent studies in optimization and structural engineering while supporting the adoption of analytical approaches that contribute to sustainable infrastructure planning and evidence-based engineering decision making.[1]

Award Suitability

Giuseppe Marano demonstrates characteristics aligned with the Environmental Leadership in Civil Engineering Award through sustained contributions to efficient structural systems, optimization-driven sustainability, and engineering innovation. His research supports environmentally responsible infrastructure development while advancing scientific knowledge that promotes resource-conscious and resilient engineering practices.[3][5]

Conclusion

Giuseppe Marano has developed an influential body of research within structural engineering that combines scientific rigor, practical relevance, and sustainability-oriented innovation. His publication record, citation performance, and contributions to optimization-based engineering research collectively support recognition within international civil engineering and environmental leadership initiatives.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Giuseppe Marano, Author ID 57382102800. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=57382102800
  2. Google Scholar. (n.d.). Citation metrics and publication overview for Giuseppe Marano.
    https://scholar.google.com/citations?user=55sHnI4AAAAJ&hl=en&oi=sra
  3. Xiong, B., Demartino, C., Xu, J., Simi, A., Marano, G. C., & Xiao, Y. (2024). High-strain rate compressive behavior of concrete made with substituted coarse aggregates: Recycled crushed concrete and clay bricks. Construction and Building Materials, 450, 138924.
    https://doi.org/10.1016/j.conbuildmat.2021.123875
  4. ResearchGate. Research profile and publication archive for Giuseppe Marano.
    https://www.researchgate.net/profile/Giuseppe-Marano-2
  5. Global Civil Engineering Awards. Environmental Leadership in Civil Engineering Award information.
    https://civilengineeringawards.com/

Raafat El-Hacha | Mitigation | Research Excellence Award

Research Excellence Award

Raafat El-Hacha
Affiliation Calgary University
Country Canada
Scopus ID 6507752723
Documents 148
Citations 2641
h-index 28
Subject Area Mitigation
Event Global Civil Engineering Awards

Raafat El-Hacha is affiliated with Calgary University, Canada, and is recognized for scholarly contributions in mitigation engineering, structural systems, and advanced civil engineering research. His academic profile demonstrates extensive publication activity, strong citation performance, and sustained participation in internationally indexed engineering research initiatives.[1] The documented research portfolio reflects interdisciplinary engagement in mitigation-oriented engineering methodologies, infrastructure resilience, and applied structural technologies associated with contemporary civil engineering advancement.[2]

Abstract

This article presents a structured academic recognition overview of Raafat El-Hacha, whose scholarly activities are associated with mitigation engineering, structural resilience, and civil engineering research. The profile reflects substantial indexed publication records, strong citation visibility, and participation in internationally recognized engineering research databases.[1] The article further evaluates publication productivity, technical research impact, and scholarly contribution areas associated with mitigation-oriented engineering sciences and infrastructure systems.

Keywords

Mitigation Engineering; Civil Engineering; Structural Systems; Infrastructure Resilience; Engineering Research; Citation Analysis; Academic Recognition; Scopus Profile; Structural Mitigation; Applied Engineering.

Introduction

Academic recognition frameworks commonly evaluate researchers based on publication quality, citation performance, interdisciplinary contribution, and sustained scientific engagement. Within civil engineering and mitigation research disciplines, scholarly contributions support advancements in structural safety, infrastructure durability, risk reduction methodologies, and engineering innovation.[3] Raafat El-Hachaโ€™s academic profile demonstrates measurable participation in these technical areas through internationally indexed scientific publications and engineering-oriented research dissemination.[1]

Professional engineering recognition programs frequently assess academic visibility, scientific contribution, and technical influence within applied engineering disciplines. The documented research activities associated with mitigation engineering and structural systems further contribute to broader civil engineering development and applied technological advancement.

Research Profile

According to indexed academic records, Raafat El-Hacha has authored or co-authored one hundred forty-eight scientific documents with a cumulative citation count exceeding two thousand six hundred and an h-index value of twenty-eight.[1] These scholarly metrics indicate sustained academic productivity, technical influence, and continued participation in engineering research dissemination. The research portfolio is primarily associated with mitigation engineering, structural systems, infrastructure materials, and advanced civil engineering methodologies.

Researchers within civil engineering institutions commonly contribute to structural assessment, mitigation analysis, and advanced engineering methodologies relevant to resilient infrastructure development and multidisciplinary engineering applications.

Research Contributions

The available research profile suggests contributions associated with mitigation engineering, structural strengthening systems, resilient construction methodologies, and advanced engineering materials. Mitigation-focused engineering research plays a significant role in infrastructure protection, seismic resistance, sustainability, and structural durability enhancement.[3]

Engineering research within mitigation-oriented scientific domains commonly requires multidisciplinary integration involving structural analysis, material science, computational engineering, and infrastructure assessment. The publication activity attributed to Raafat El-Hacha reflects participation in peer-reviewed scientific communication and internationally indexed engineering dissemination.[2]

Publications

The indexed publication portfolio associated with Raafat El-Hacha includes scientific works documented in internationally recognized engineering databases and peer-reviewed journals. Publication activity serves as an important indicator of technical engagement, collaborative participation, and scholarly communication within civil engineering communities.[1]

Research publications associated with mitigation engineering frequently contribute to structural reinforcement systems, infrastructure resilience methodologies, and applied engineering innovations supporting modern civil engineering practices.[3]

Research Impact

Citation indicators and indexed publication visibility provide measurable evidence of scholarly engagement and engineering dissemination. The citation profile associated with Raafat El-Hacha indicates that the published research has received considerable academic attention within civil engineering and mitigation-related scientific communities.[1]

Research impact in mitigation engineering and structural systems frequently extends beyond publication metrics and contributes to broader technical applications including resilient infrastructure design, engineering safety systems, advanced materials assessment, and sustainable construction methodologies.[3] Indexed publications further support international collaboration, technical innovation, and academic visibility across multidisciplinary engineering environments.

Award Suitability

Based on the available scholarly indicators, Raafat El-Hacha demonstrates characteristics commonly associated with professional engineering recognition programs, including extensive indexed publication activity, strong citation performance, and subject specialization in mitigation engineering and civil infrastructure research. The integration of engineering science with practical infrastructure applications aligns with broader objectives related to engineering innovation and technical advancement.

Professional engineering award frameworks generally emphasize scientific contribution, innovation potential, technical dissemination, and interdisciplinary research relevance within engineering disciplines. The documented publication and citation profile supports consideration under academic recognition categories relevant to mitigation engineering and applied civil engineering sciences.

Conclusion

Raafat El-Hachaโ€™s academic profile reflects active participation in mitigation engineering research and internationally indexed scientific publication. The documented metrics, including publication count, citation visibility, and institutional affiliation, indicate substantial scholarly contribution within engineering-related scientific disciplines.[1] The research record demonstrates alignment with professional academic recognition standards associated with engineering excellence, infrastructure resilience, and technical research contribution.

References

  1. Elsevier. (n.d.). Scopus author details: Raafat El-Hacha, Author ID 6507752723. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=6507752723
  2. ORCID. (n.d.). ORCID profile record for Raafat El-Hacha.
    https://orcid.org/
  3. El-Hacha, R., Rizkalla, S. H. (2011). Near-surface-mounted fiber-reinforced polymer reinforcements for flexural strengthening of concrete structures. Composite Structures, 93(7), 1777-1786.
    https://doi.org/10.1016/j.compstruct.2010.09.014

Hamid Ouadi | Green Infrastructure | Clean Energy Integration in Civil Engineering Award

Prof. Hamid Ouadi | Green Infrastructure | Clean Energy Integration in Civil Engineering Award

Professor | Mohammed V University of Rabat | Morocco

Hamid Ouadi is a Professor of Higher Education at the National School of Arts and Crafts of Rabat, Mohammed V University, specializing in electrical engineering, automatic control, and smart energy systems. He has built a distinguished academic career through teaching, research, and leadership roles across major engineering institutions, with extensive involvement in advanced training and doctoral supervision. He has coordinated and contributed to competitive national and international research projects, demonstrating strong scientific and managerial leadership. His research focuses on smart grids and microgrids, positive-energy buildings, electric vehicle control and energy optimization, and intelligent energy management systems, with substantial contributions through high-impact journal publications, conference papers, books, and book chapters. His academic standing is further reflected by his strong research visibility, with 1,502 citations , 134 publications, and an h-index of 20.

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1502
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134
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Featured Publications

Siau Chen Chian | Geotechnical Engineering | Outstanding Scientist Award

Assoc. Prof. Dr Siau Chen Chian | Geotechnical Engineering | Outstanding Scientist Award

National University of Singapore | Singapore

Dr. Chian Siau Chen (Darren) is a leading geotechnical engineering scholar whose work bridges fundamental soil mechanics with innovative solutions for resilient civil infrastructure. He earned his PhD in Engineering from the University of Cambridge and holds a First-Class Honours degree in Civil and Environmental Engineering from Nanyang Technological University, where he graduated with the Singapore Contractors Association Gold Medal. Currently an Associate Professor in the Department of Civil and Environmental Engineering at the National University of Singapore, he also serves in multiple leadership roles that contribute to advancing geotechnical practice and education. His appointments include Vice Dean of Student Life at the College of Design and Engineering, Director of the Centre for Resilient Underground Infrastructure and Engineering, and President of the Geotechnical Society of Singapore. Dr. Chianโ€™s research spans sustainable materials, ground improvement, earthquake engineering, centrifuge modelling, remote sensing, protective technologies, and post-failure field investigations. His work often integrates experimental, numerical, and field approaches to address infrastructure challenges in hazard-prone and urban environments. He has participated in post-earthquake reconnaissance missions across Asia, Africa, and South America, contributing valuable field insights to global seismic risk understanding. A widely recognized researcher and educator, Dr. Chian has received numerous accolades, including the IAAM Scientist Medal (2024), multiple NUS teaching excellence awards, and recognition among the Top 10 MIT Innovators Under 35 Asia. His distinguished service to the profession is further acknowledged through awards from the Geotechnical Society of Singapore and national accreditation bodies. Through his contributions, Dr. Chian continues to shape resilient, safe, and sustainable geotechnical engineering practices worldwide.

Profiles: Scopus | Google Scholar

Publications

Chian, S. C., Tokimatsu, K., & Madabhushi, S. P. G. (2014). Soil liquefactionโ€“induced uplift of underground structures: Physical and numerical modeling. Journal of Geotechnical and Geoenvironmental Engineering, 140(10), 04014057.

Qin, C. B., & Chian, S. C. (2018). Kinematic analysis of seismic slope stability with a discretisation technique and pseudo-dynamic approach: A new perspective. Gรฉotechnique, 68(6), 492โ€“503.

Fraser, S., Raby, A., Pomonis, A., Goda, K., Chian, S. C., Macabuag, J., Offord, M., โ€ฆ (2013). Tsunami damage to coastal defences and buildings in the March 11th 2011 Mw9.0 Great East Japan earthquake and tsunami. Bulletin of Earthquake Engineering, 11(1), 205โ€“239.

Chian, S. C., & Madabhushi, S. P. G. (2012). Effect of buried depth and diameter on uplift of underground structures in liquefied soils. Soil Dynamics and Earthquake Engineering, 41, 181โ€“190.

Goda, K., Pomonis, A., Chian, S. C., Offord, M., Saito, K., Sammonds, P., Fraser, S., โ€ฆ (2013). Ground motion characteristics and shaking damage of the 11th March 2011 Mw9.0 Great East Japan earthquake. Bulletin of Earthquake Engineering, 11(1), 141โ€“170.

Marie Giroudon | Environmental Engineering | Best Researcher Award

Dr.Marie Giroudon | Environmental Engineering | Best Researcher Award

INSA Toulouse – France

AUTHOR PROFILE

Summary

Dr.โ€ฏMarieโ€ฏGiroudon is an emerging leader in sustainable cementitious materials. In just four years postโ€‘PhD she has published rigorously, secured competitive funding, and established a vibrant teaching and mentoring profile. Her work on biodeterioration in anaerobic and chemically aggressive environments fills a critical knowledge gap for lowโ€‘carbon infrastructure, aligning neatly with the thrust of many โ€œBestโ€ฏResearcherโ€ criteria: originality, societal impact, and future promise.

๐ŸŽ“ Education

Marie Giroudon has built a solid academic foundation in civil and geotechnical engineering, culminating in a PhD in Civil Engineering defended in January 2021 at INSA Toulouse. She also holds a Master’s degree and an Engineering Diploma in Civil and Geotechnical Engineering from UPSSITECH, University Toulouse III Paul Sabatier, awarded with honours in 2017. Her academic journey began with a Bachelorโ€™s degree in Physics, completed with distinction in 2014, following which she undertook a semester abroad at Polytechnique Montrรฉal in Canada, receiving a โ€œvery goodโ€ assessment. Her secondary education concluded with a Scientific Baccalaureate in 2011 with honours.

๐Ÿ—๏ธ Professional Experience

Marie Giroudon is currently serving as a Maรฎtre de Confรฉrences (Assistant Professor) at the National Institute of Applied Sciences (INSA Toulouse), specializing in construction materials durability. Prior to this, she worked as a Postdoctoral Researcher on the ANR WWT Concrete project, focusing on sustainable concrete in wastewater treatment. From 2020 to 2022, she held a full-time A.T.E.R. teaching position at INSA Toulouse, delivering courses in BIM, geotechnics, heat transfer, and prestressed concrete. Her professional career is deeply rooted in applied research, particularly through her PhD and masterโ€™s thesis on biodeterioration and sustainable materials in anaerobic environments.

๐Ÿ”ฌ Research Focus

Dr. Giroudon’s research is centered on the biodeterioration of cementitious materials in chemically aggressive environments, particularly anaerobic digestion systems, and the development of sustainable and low-carbon construction materials. She has contributed significantly to understanding the interactions between organic compounds and various binder types, with emphasis on geopolymers, blast-furnace slag cement, and calcium aluminate cement. Her work also extends to micromechanical characterization, multiphysical behavior analysis, and phase stability of materials exposed to biological and chemical attacks.

๐Ÿ† Awards and Honors

Marie Giroudon received the 3rd prize for young researchers at the XVรจme Forum Jeunes Chercheurs โ€“ Biodรฉtรฉrioration des matรฉriaux in 2019. She is an active member of the RILEM committee (TC 253-MCI) and the AFGC Technical Group on Bio-Cement Interactions, contributing to state-of-the-art documentation on biodeterioration in civil infrastructure. Her engagement in these international communities underlines her growing influence and recognition in the field of construction durability.

๐Ÿ“š ย Publications :

1. Title: Comparison of barley and lavender straws as bioaggregates in earth bricks
Author(s): M. Giroudon, A. Laborel-Prรฉneron, J.E. Aubert, C. Magniont
Year: 2019

2. Title: Blast-furnace slag cement and metakaolin based geopolymer as construction materials for liquid anaerobic digestion structures: Interactions and biodeterioration mechanisms
Author(s): M. Giroudon, M.P. Lavigne, C. Patapy, A. Bertron
Year: 2021

3. Title: Cementitious materials in biogas systems: Biodeterioration mechanisms and kinetics in CEM I and CAC based materials
Author(s): C. Voegel, M. Giroudon, A. Bertron, C. Patapy, M.P. Lavigne, T. Verdier, et al.
Year: 2019

4. Title: Experimental assessment of bio-based earth bricks durability
Author(s): A. Laborel-Prรฉneron, M. Giroudon, J.E. Aubert, C. Magniont, P. Faria
Year: 2019

5. Title: Potential of low carbon materials facing biodeterioration in concrete biogas structures
Author(s): M. Giroudon, C. Patapy, M. Peyre Lavigne, M. Andriamiandroso, R. Cartier, et al.
Year: 2023

6. Title: Insights into the local interaction mechanisms between fermenting broken maize and various binder materials for anaerobic digester structures
Author(s): M. Giroudon, C. Perez, M.P. Lavigne, B. Erable, C. Lors, C. Patapy, A. Bertron
Year: 2021

7. Title: Biodeterioration mechanisms and kinetics of SCM and aluminate based cements and AAM in the liquid phase of an anaerobic digestion
Author(s): M. Giroudon, M.P. Lavigne, C. Patapy, A. Bertron
Year: 2018

8. Title: New insights into aluminosilicate gel from acetic acid attack of hydrated Portland cement: Experimental and thermodynamic characterization
Author(s): C. Roosz, M. Giroudon, L. Lacarriรจre, M.P. Lavigne, C. Patapy, A. Bertron
Year: 2024

9. Title: Laboratory assessment of the contribution of aggressive to concrete chemical compounds to the degradation of Portland cement-based materials during anaerobic digestion
Author(s): M. Giroudon, M. Peyre Lavigne, C. Patapy, A. Bertron
Year: 2021

10. Title: Evaluation des interactions entre biodรฉchets en digestion anaรฉrobie et matรฉriaux cimentaires ร  base de diffรฉrents liants en vue d’une meilleure durabilitรฉ des structures de โ€ฆ
Author(s): M. Giroudon
Year: 2021

โœ… Conclusion

Given her exceptional earlyโ€‘career trajectory, crossโ€‘disciplinary impact, and clear leadership potential, Dr.โ€ฏMarieโ€ฏGiroudon is highly suitable for a Bestโ€ฏResearcher Award in the Earlyโ€‘Career or Risingโ€‘Star category. Addressing the outlined improvement areasโ€”particularly expanding international funding and industry partnershipsโ€”will compound her influence, but her current accomplishments already merit strong consideration for top honors.

Hytham Elwardany | Earthquake and Dynamic Engineering | Best Researcher Award

Assoc. Prof. Dr Hytham Elwardany | Earthquake and Dynamic Engineering | Best Researcher Award

Associate professor, Delta university for science and technology, Egypt

Hytham Elwardany is an Associate Professor of Structural Engineering at Delta University for Science and Technology, Egypt. With 25 years of experience in structural engineering, he specializes in earthquake engineering, seismic analysis, and structural dynamics. He is the General Manager and owner of Power Building for Engineering and Design Services and has served as an expert engineer in Egyptโ€™s Ministry of Justice. His academic contributions include extensive research on seismic pounding and mitigation techniques, with multiple publications in leading engineering journals.

PROFESSIONAL PROFILE

Google Scholar

EDUCATION ๐ŸŽ“

  • Ph.D. in Structural Engineering โ€“ Tanta University (2015)
  • M.Sc. in Structural Engineering โ€“ Tanta University (2007)
  • B.Sc. in Civil Engineering โ€“ Tanta University (2000) (Graduated with Very Good, Project Grade Excellent, Ranked 8th in the Department)

EXPERIENCE ๐Ÿ—

  • Associate Professor of Structural Engineering, Delta University (2016โ€“Present)
  • General Manager & Owner, Power Building for Engineering and Design Services (2019โ€“Present)
  • Expert Engineer, Ministry of Justice, Egypt (2005โ€“2016)
  • Senior Engineer (Part-Time), Consulting Engineering Co. (CEC) (2008โ€“2016)
  • Structural Engineer, General Authority for Educational Buildings, Egypt (2001โ€“2005)

AWARDS & HONORS ๐Ÿ†

  • Egyptian Engineers Syndicate Honor Ship (2001)
  • Congratulation from President Hosni Mubarak (2001)

RESEARCH FOCUS ๐Ÿ”ฌ

Hytham Elwardany’s research expertise includes earthquake engineering, structural dynamics, seismic pounding, experimental methods, and reinforced concrete & steel structures. His studies emphasize the behavior of buildings under seismic loads and innovative strategies for mitigating earthquake-induced damages.

PUBLICATION TOP NOTES๐Ÿ“š

  • Seismic pounding behavior of multi-story buildings in series considering the effect of infill panels (2017)
  • Influence of soilโ€“structure interaction on seismic pounding between steel frame buildings (2019)
  • Experimental study on pounding between structures during damaging earthquakes (2015)
  • Mitigating seismic pounding of multi-story buildings using viscous dampers (2021)
  • New alternative techniques for strengthening deep beams with openings (2023)
  • Effect of earthquake-induced pounding on four adjacent buildings (2022)
  • Comprehensive review on seismic pounding between adjacent buildings (2024)
  • Shear strengthening of wide-shallow beams by inserted fasteners (2022)

CONCLUSION ๐Ÿ…

Hytham Elwardany is a distinguished academic and expert in structural and earthquake engineering. His research on seismic pounding and mitigation techniques has made significant contributions to the field. Through teaching, consulting, and engineering practice, he continues to shape the future of structural engineering in Egypt and beyond.

Alireza Rezaeian | Seismic Design | Best Researcher Award

Dr Alireza Rezaeian | Seismic Design | Best Researcher Award

CEO, sazaninc, Canada

Dr. Alireza Rezaeian is a highly accomplished Structural Civil Engineer with a Ph.D. from Iran University of Science & Technology (IUST). With over two decades of experience, he has worked on diverse projects across Iran, Canada, and the USA. His expertise spans the design and analysis of concrete, steel, and wood structures, as well as seismic behavior and finite element modeling. Dr. Rezaeian has held key roles in engineering firms, including SAZAN Inc., NCK Engineering, and MOGHAVEM SHAHR, where he led structural design teams. His research focuses on seismic performance, moment connections, and energy dissipation in steel structures. He is a published author with numerous citations in reputable journals.

Professional Profile

Google Scholar

Scopus

Education ๐ŸŽ“

Dr. Rezaeian holds a Ph.D. (2010) and an M.Sc. (2002) in Structural Civil Engineering from Iran University of Science & Technology (IUST), Tehran, Iran. He earned his B.Sc. in Civil Engineering (1999) from Imam Khomeini International University, Qazvin, Iran. His academic background laid the foundation for his expertise in structural analysis, seismic design, and finite element modeling.

Experience ๐Ÿ’ผ

Dr. Rezaeian has over 20 years of experience in structural engineering. He has worked with firms like SAZAN Inc., NCK Engineering, and TEG Structures in Canada, focusing on the design and analysis of concrete, steel, and wood structures. In Iran, he served as the Head of the Structural Design Department at MOGHAVEM SHAHR, managing large-scale projects and leading design teams. His roles included reviewing shop drawings, conducting site visits, and coordinating with architects and contractors.

Awards and Honors ๐Ÿ†

While specific awards are not listed, Dr. Rezaeianโ€™s contributions to structural engineering are evident through his extensive research publications and leadership roles in major engineering projects. His work on seismic behavior and steel structures has been widely cited, reflecting his impact on the field.

Research Focus ๐Ÿ”ฌ

Dr. Rezaeianโ€™s research focuses on the seismic performance of steel structures, including eccentrically braced frames, moment connections, and energy dissipation systems. He has extensively studied the cyclic behavior of composite vertical shear links, panel zones, and ConXL moment connections. His work combines experimental and numerical analyses to optimize structural performance under seismic loads.

Publication Top Notes ๐Ÿ“š

  1. Experimental study of cyclic behavior of composite vertical shear link in eccentrically braced frames
  2. Seismic behavior of ConXL rigid connection in box-columns not filled with concrete
  3. Experimental investigation of panel zone in rigid beam to box column connection
  4. Seismic performance of eccentrically braced frame with vertical link using PBPD method
  5. Numerical study of panel zone in a moment connection without continuity plates
  6. Assessment of the seismic behavior of eccentrically braced frame with double vertical link (DV-EBF)
  7. The experimental study of eccentrically braced frames with double vertical links
  8. Investigation of the ConXL moment connection cyclic behavior in box columns without filling concrete with different arrangement of collar bolts
  9. Deviation from target debt ratio, cash flow imbalance and capital structure adjustment
  10. Evaluation of damage index of steel moment resistance frames before and after seismic rehabilitation by steel braces and shear wall
  11. Evaluation of steel plate shear walls based on performance based plastic design
  12. Optimal design of eccentrically braced frames with vertical link (V-EBFs) in order to maximize energy dissipation
  13. Seismic behavior of eccentrically braced frames with composite vertical shear link (CV-EBFs)
  14. Test program on stiffened column bases subjected to cyclic loading
  15. Evaluation of non-linear cyclic behavior of CONXL moment connection with different detail in the column and optimizing the arrangement of bolts
  16. Improvement of seismic behavior of concentrically braced frames making use of fuse elements in brace members
  17. Experimental and Analytical Observations of the Effect of Leveling Nuts on the Stiffened Column Bases Behavior
  18. The influence of national and patriotic Persian epic in the Poetry of Iqbal Lahori
  19. EVALUATION OF DIRECT ANALYSIS METHOD ON HEAVY OIL STRUCTURES BY INCREMENTAL DYNAMIC ANALYSIS

Conclusion ๐ŸŒŸ

Dr. Alireza Rezaeian is a distinguished structural engineer with a strong academic background and extensive professional experience. His contributions to seismic design and steel structures have advanced the field, as evidenced by his numerous publications and leadership roles. His work continues to influence both research and practical applications in structural engineering.

Nurhan Ecemis | Earthquake Engineering | Best Researcher Award

Prof Nurhan Ecemis | Earthquake Engineering | Best Researcher Award

Civil Engineering, Izmir Institute of technology, Turkey

Dr. Nurhan Ecemis is a distinguished professor in Civil Engineering, specializing in Geotechnical Earthquake Engineering. He earned his Ph.D. from the State University of New York at Buffalo and has made significant contributions to soil liquefaction, soil dynamics, and earthquake engineering. With extensive academic and industry experience, Dr. Ecemis has worked as a professor at Izmir Institute of Technology and a visiting professor at the University of British Columbia. His research has been published in leading journals, focusing on seismic liquefaction, numerical modeling, and geotechnical applications.

PROFESSIONAL PROFILE

Google Scholar

Orcid

Scopus

EDUCATION ๐ŸŽ“

  • Ph.D. in Civil, Structural, and Environmental Engineering (Geotechnical Engineering), State University of New York at Buffalo, USA (2004-2008)
  • M.S. in Civil Engineering (Geotechnical Engineering), Istanbul Technical University, Turkey (2001-2003)
  • B.S. in Civil Engineering (Geotechnical Engineering, First-Class Honors), Istanbul Kultur University, Turkey (1997-2001)

PROFESSIONAL EXPERIENCE ๐Ÿ—๏ธ

  • Professor & Department Chair (from August 2024), Civil Engineering, Izmir Institute of Technology, Turkey (2021-Present)
  • Visiting Professor, Civil Engineering, University of British Columbia, Canada (2022-2023)
  • Associate Professor, Izmir Institute of Technology, Turkey (2015-2021)
  • Assistant Professor, Izmir Institute of Technology, Turkey (2009-2015)
  • Staff Engineer III, LANGAN Engineering and Environmental Services, USA (2008-2009)
  • Research & Teaching Assistant, State University of New York at Buffalo, USA (2004-2008)
  • Geotechnical Engineer, ENAR Geotechnical Engineering, Turkey (2002-2003)

AWARDS & HONORS ๐Ÿ…

  • Recognized for outstanding research in Geotechnical Earthquake Engineering
  • Multiple Best Paper Awards in top geotechnical and earthquake engineering journals
  • Recipient of Marie Curie Fellowship under the EU 7th Framework Program
  • Acknowledged for contributions to seismic liquefaction modeling & soil dynamics

RESEARCH FOCUS ๐Ÿ”ฌ

Dr. Ecemis focuses on geotechnical earthquake engineering, soil liquefaction, seismic soil behavior, and numerical modeling. His expertise includes experimental and computational studies on liquefaction resistance, seismic-induced ground deformation, and geotechnical hazard mitigation. His work aims to develop innovative solutions for earthquake resilience in infrastructure.

PUBLICATION TOP NOTES ๐Ÿ“š

  • Laminar box system for 1-g physical modeling of liquefaction and lateral spreading
  • Simulation of seismic liquefaction: 1-g model testing system and shaking table tests
  • Time-dependent physicochemical characteristics of Malaysian residual soil stabilized with magnesium chloride solution
  • Sand-granulated rubber mixture to prevent liquefaction-induced uplift of buried pipes: a shaking table study
  • The use of neural networks for CPT-based liquefaction screening
  • Experimental and numerical modeling on the liquefaction potential and ground settlement of silt-interlayered stratified sands
  • Influence of consolidation properties on the cyclic re-liquefaction potential of sands
  • Influence of non-/low plastic fines on cone penetration and liquefaction resistance
  • The use of neural networks for the prediction of cone penetration resistance of silty sands
  • Soil liquefaction-induced uplift of buried pipes in sand-granulated-rubber mixture: Numerical modeling
  • Effects of permeability on liquefaction resistance and cone resistance
  • Effects of permeability and compressibility on liquefaction screening using cone penetration resistance
  • Effect of soil-type and fines content on liquefaction resistanceโ€”shear-wave velocity correlation
  • Liquefaction remediation in silty soils using dynamic compaction and stone columns
  • Geotechnical reconnaissance findings of the October 30, 2020, Mw7.0 Samos Island (Aegean Sea) earthquake
  • Usage of Tyre Derived Aggregates as backfill around buried pipelines crossing strike-slip faults; model tests
  • CPT-based liquefaction resistance of clean and silty sands: a drainage conditions-based approach
  • Validation of porosity in 2D-DEM CPT model using large-scale shaking table tests in saturated sands
  • Effects of permeability and compressibility on liquefaction assessment of silty soils using cone penetration resistance
  • Effects of fines on liquefaction screening using penetration resistance

Silvia Pinasco | Earthquake Engineering | Best Researcher Award

Mrs Silvia Pinasco | Earthquake Engineering | Best Researcher Award

PhD student,University of Genoa, Italy

Silvia Pinasco is a dedicated researcher in civil engineering, specializing in risk and resilience engineering for natural, industrialized, and built environments. She is currently pursuing her Ph.D. at the University of Genoa, focusing on structural vulnerability and seismic risk assessment of masonry buildings. She has actively contributed to multiple research projects and conferences in the field of earthquake engineering. With a strong academic background and professional experience in structural analysis, she has worked on building modeling, cost estimation, and engineering assessments. Her research is published in high-impact journals and presented at international conferences. Silviaโ€™s expertise lies in numerical simulations, seismic fragility assessment, and machine learning applications for structural vulnerability analysis. Her commitment to advancing knowledge in earthquake engineering is evident in her numerous contributions to academia.

PROFESSIONAL PROFILE

Scopus

STRENGTHS FOR THE AWARD

  1. Strong Educational Background ๐ŸŽ“ โ€“ Silvia Pinasco holds a Masterโ€™s degree in Civil Engineering with top honors (110/110) and is pursuing a Ph.D. in Risk and Resilience Engineering, demonstrating academic excellence.
  2. Specialized Research Focus ๐Ÿ“š โ€“ Her research on seismic vulnerability, risk assessment, and machine learning applications in structural engineering is crucial for disaster resilience.
  3. High-Impact Publications ๐Ÿ“– โ€“ She has authored multiple papers in reputed journals and conferences, such as Procedia Structural Integrity, Bulletin of Earthquake Engineering, and WCEE.
  4. Practical Experience ๐Ÿ—๏ธ โ€“ Hands-on work in building modeling and cost estimation complements her academic research, bridging theory with real-world applications.
  5. International Recognition ๐ŸŒ โ€“ Collaborations with international researchers and participation in global conferences position her research at a high level.

AREAS FOR IMPROVEMENTS

  • Broader Application of Research ๐Ÿ”ฌ โ€“ Expanding her work beyond seismic vulnerability to include climate resilience or AI-driven predictive models could enhance impact.
  • Industry Collaborations ๐Ÿค โ€“ Strengthening partnerships with engineering firms and government agencies can increase the practical applications of her findings.
  • Funding & Leadership Roles ๐Ÿ’ฐ โ€“ Leading large-scale funded research projects or mentoring young researchers would solidify her reputation.

EDUCATION ๐ŸŽ“

  • Master’s Degree in Civil Engineering โ€“ University of Genoa, Department of Civil, Chemical, and Environmental Engineering (Graduated: March 30, 2021, Final Grade: 110/110)
  • State Examination for Civil and Environmental Engineer Qualification โ€“ University of Genoa (First session, 2021, Final Score: 50/50)
  • Certification of 24 CFU for Teaching โ€“ University of Genoa (Completed: July 15, 2020)
  • Ph.D. in Risk and Resilience Engineering for the Natural, Industrialized, and Built Environments โ€“ University of Genoa, Department of Civil, Chemical, and Environmental Engineering (37th Cycle, Ongoing since November 2021)

PROFESSIONAL EXPERIENCE ๐Ÿ—๏ธ

  • Building Modeling & Structural Analysis โ€“ Utilized Edilclima software for structural modeling and analysis.
  • Cost Estimation & Metric Calculations โ€“ Conducted financial assessments and material calculations for construction projects.
  • Engineering Consultancy โ€“ Worked at General Engineering SRL, Genoa, Italy (April 2021 โ€“ October 2021), contributing to various civil engineering projects.
  • Seismic Vulnerability Studies โ€“ Focused on earthquake engineering, particularly seismic fragility and resilience of masonry structures.
  • Numerical Simulations & Machine Learning โ€“ Applied computational techniques for structural safety assessments.

AWARDS AND HONORS ๐Ÿ…

  • Best Research Contribution Award โ€“ Recognized for outstanding work in earthquake engineering.
  • Scholarship for Doctoral Studies โ€“ Awarded funding for Ph.D. research in seismic vulnerability.
  • Conference Presentation Recognition โ€“ Acknowledged for high-impact presentations at international conferences.
  • Top Performer in Civil Engineering โ€“ Achieved top academic ranking in masterโ€™s degree (110/110).
  • Publication Excellence Award โ€“ Recognized for contributions to computational modeling and structural risk assessment.

RESEARCH FOCUS ๐Ÿ”ฌ

Silvia Pinasco’s research primarily focuses on seismic vulnerability assessment of historical masonry buildings, with a special emphasis on structures in urban aggregates. She applies numerical simulations, fragility curves, and machine learning to predict structural behavior under seismic loads. Her work aims to develop resilient engineering solutions for mitigating earthquake damage. She collaborates on international research projects addressing earthquake-induced risks, structural dynamics, and safety assessments. Her research contributions are widely recognized in earthquake engineering conferences and journals, helping advance structural resilience methodologies.

PUBLICATION TOP NOTES๐Ÿ“š

  • On the vulnerability features of historical masonry buildings in aggregate โ€“ Procedia Structural Integrity, 2023
  • Numerical investigation of the seismic response of an unreinforced masonry residential building hit by the Zagreb earthquake in 2020 โ€“ 2CroCEE, 2023
  • Machine learning-based identification of vulnerability factors for masonry buildings in aggregate: The historical centre of Casentino hit by the 2009 Lโ€™Aquila earthquake โ€“ COMPDYN 2023
  • Development of fragility curves of masonry buildings built in a regular row aggregate โ€“ 18th WCEE, 2024
  • Seismic fragility assessment of existing masonry buildings in aggregate located in Zagreb โ€“ Under review, Bulletin of Earthquake Engineering, Springer
  • Unreinforced Masonry Buildings in Aggregate of Urban Settlements: Current Approaches and Critical Issues for the Seismic Vulnerability Assessment โ€“ Under review, Structures, Elsevier

CONCLUSION

Silvia Pinasco is an outstanding candidate for the Best Researcher Award due to her expertise in structural dynamics, seismic risk assessment, and advanced engineering methodologies. While expanding her research scope and industry ties could further elevate her profile, her current achievements already place her among the top researchers in her field. ๐Ÿš€

CHEONG, TAE SUNG – Disaster Risk Management – Best Researcher Award

CHEONG, TAE SUNG - Disaster Risk Management - Best Researcher Award

National Disaster Management Institute - South Korea

AUTHOR PROFILE

SCOPUS

CHAIRMAN OF THE KOREA IPCC PROFESSIONAL COMMITTEE:

CHEONG, TAE SUNG serves as the Chairman of the Korea IPCC Professional Committee (K-IPCC), playing a pivotal role in shaping climate change policies and strategies in Korea. His leadership and expertise are crucial in guiding the committeeโ€™s work and ensuring impactful contributions to the global climate change discourse.

COORDINATING LEAD AUTHOR AND RESEARCH CONTRIBUTOR:

As the Coordinating Lead Author of Chapter 10 (Asia) in the IPCC WGII AR6 and Lead Author of Chapter 9 in the IPCC SREX Report, CHEONG contributes significantly to the understanding of climate change impacts and adaptation strategies. His work informs global climate policies and enhances scientific knowledge on climate resilience and sustainability.

MEMBER OF NATIONAL AND INTERNATIONAL COMMITTEES:

CHEONG is an influential member of several prestigious committees, including the Presidential Commission on Carbon Neutrality and Green Growth, the Crisis Management Manual Committee, and the Pre-disaster Impact Review Committee. His involvement ensures that climate and disaster management policies are robust, scientifically sound, and effective in mitigating risks.

AWARD-WINNING RESEARCHER AND CONTRIBUTOR:

CHEONG has received numerous awards for his outstanding contributions to disaster risk management, climate change research, and public administration. Notable recognitions include the Outstanding Researcher Award of the National Disaster Management Institute, the Ministry of Environment Award for IPCC work, and the Korean Society of Civil Engineers Award for Outstanding Research Paper.

EDITOR AND DIRECTOR IN PROFESSIONAL JOURNALS:

CHEONG serves as Editor in Chief of the Journal of Disaster Science and Management and holds editorial positions in renowned journals such as Water Resources Research, the Journal of Hydraulics, and the Journal of Hydroinformatics. His editorial roles ensure the dissemination of high-quality research and advancements in disaster science and water resource management.

DIRECTOR AND SENIOR RESEARCH OFFICER:

As the Director on the Climate Change Adaptation and Disaster Risk Reduction Division of the Korean Society of Hazard Mitigation, and Senior Research Officer on the Disaster Risk Reduction Division at NEMA, Ulsan, Korea, CHEONG leads critical initiatives to enhance disaster preparedness and resilience. His strategic direction strengthens national disaster management capabilities.

DISTINGUISHED AUTHOR AND PEER-REVIEWED RESEARCHER:

CHEONG has authored numerous influential publications in peer-reviewed journals, contributing significantly to the fields of flood risk management, climate change adaptation, and disaster resilience. His research outputs, including developments in early warning systems and comprehensive heat wave measures, provide valuable insights and practical solutions for managing environmental challenges.

NOTABLE PUBLICATION

Development of Flood Early Warning Frameworks for Small Streams in Korea
Authors: Cheong, T.-S., Choi, C., Ye, S.-J., Kim, S., Koo, K.-M.
Year: 2023
Journal: Water (Switzerland)

The development of design-width prediction equation by using 12 local governments data collected from small stream of Korea
Authors: Choi, C., Cheong, T.S.
Year: 2023
Journal: Journal of Korea Water Resources Association

Development of priority setting process for the small stream restoration projects using multi criteria decision analysis
Authors: Seo, J.P., Cho, W., Cheong, T.S.
Year: 2015
Journal: Journal of Hydroinformatics

Development of GIS-based disaster assessment system to reduce flood risks in urbanized creeks
Authors: Cheong, T.S., Felix, M.L.A., Jeong, S.M.
Year: 2014
Journal: Desalination and Water Treatment

Case studies
Authors: Murray, V., Mc Bean, G., Bhatt, M., Warner, K., Zodrow, I.
Year: 2012
Book: Managing the Risks of Extreme Events and Disasters to Advance Climate Change Adaptation: Special Report of the Intergovernmental Panel on Climate Change