Abbas Akbarzadeh | Engineering | Best Researcher Award

Best Researcher Award

Abbas Akbarzadeh
Sharif University of Technology

Abbas Akbarzadeh
Affiliation Sharif University of Technology
Country Iran
Scopus ID 15057635400
Documents 53
Citations 1,678
h-index 23
Subject Area Engineering
Event International Invention Awards

Abbas Akbarzadeh is a researcher affiliated with Sharif University of Technology in Iran, with a research profile classified within Engineering. The available bibliographic information records 53 documents, 1,678 citations, and an h-index of 23 in the supplied Scopus profile information. These indicators provide a bibliometric context for consideration under the Best Researcher Award.

Abstract

Abbas Akbarzadeh is an engineering researcher affiliated with Sharif University of Technology in Iran. The supplied Scopus profile information identifies 53 documents, 1,678 citations, and an h-index of 23, providing bibliometric indicators of sustained scholarly activity and research visibility. His profile is considered here in the context of the Best Researcher Award associated with the International Invention Awards. The assessment presented on this page is descriptive rather than evaluative, emphasizing documented affiliation, subject area, publication volume, citation activity, and indexed research impact. These indicators may provide supporting evidence for academic recognition when considered alongside substantive research contributions and verified publications.

Keywords

Abbas Akbarzadeh, Best Researcher Award, Sharif University of Technology, Engineering, research profile, Scopus, bibliometrics, scholarly publications, citation impact, h-index, research contributions, academic recognition, International Invention Awards, engineering research, scientific research.

Introduction

Academic recognition commonly considers several forms of evidence, including scholarly publications, research contributions, citation activity, institutional affiliation, and disciplinary relevance. For Abbas Akbarzadeh, the supplied bibliometric record places the researcher within Engineering and associates the profile with Sharif University of Technology. The reported Scopus indicators provide a structured starting point for documenting research activity. [1]

Research Profile

The available profile identifies Abbas Akbarzadeh with Sharif University of Technology and the Engineering subject area. The supplied Scopus record lists 53 documents, 1,678 citations, and an h-index of 23. Together, these figures describe publication activity and citation visibility within indexed scholarly literature, while requiring contextual interpretation according to field, publication period, and research specialty. [1]

Research Contributions

Research contributions are most appropriately understood through the substance, originality, methodological quality, and documented outcomes of individual studies. The supplied information establishes an engineering research profile and measurable bibliometric activity, but does not provide a complete list of research topics, technologies, datasets, patents, or individual findings. Such details should therefore be verified through the researcher’s publications and authoritative academic records.

Publications

The supplied Scopus information records 53 documents associated with the researcher profile. Because individual publication titles, journals, publication years, author positions, and DOI identifiers were not provided in the source information for this article, specific publications are not listed here to avoid attributing works without verification. The Scopus author profile provides the appropriate starting point for reviewing the indexed publication record. [1]

Research Impact

The supplied bibliometric indicators report 1,678 citations and an h-index of 23 across 53 documents. Citation counts can provide evidence of scholarly visibility, while an h-index combines publication and citation dimensions. Interpretation should account for disciplinary citation practices, career duration, collaboration patterns, database coverage, and publication chronology rather than treating bibliometric indicators as complete measures of research quality. [1]

Award Suitability

The Best Researcher Award associated with the International Invention Awards provides a context for documenting a researcher’s academic profile. Abbas Akbarzadeh’s supplied affiliation, Engineering subject area, publication count, citation count, and h-index constitute identifiable academic-profile information. A complete award assessment would additionally require verification of research outputs, originality, contributions, supporting documentation, and compliance with the applicable award criteria. [2]

Conclusion

Abbas Akbarzadeh is presented in the supplied information as an Engineering researcher affiliated with Sharif University of Technology in Iran. The reported Scopus indicators comprise 53 documents, 1,678 citations, and an h-index of 23. These metrics document aspects of scholarly activity and visibility, while a comprehensive academic recognition profile should incorporate verified publications, substantive contributions, and relevant supporting evidence.

References

  1. Elsevier. (n.d.). Scopus author details: Abbas Akbarzadeh, Author ID 15057635400. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=15057635400
  2. International Invention Awards. (2026.). Official award website and program information.
    https://inventionawards.org/
  3. Research article. (2010. ) Accumulative spin-bonding (ASB) as a novel SPD process for fabrication of nanostructured tubes.
    https://doi.org/10.1016/j.msea.2010.08.081

Iman Asadi | Engineering | Best Paper Award

Dr. Iman Asadi | Engineering| Best Paper Award

Dr. Iman Asadi | University for Continuing Education Krems |Austria

Dr. Iman Asadi, Ph.D., is a committed and multifaceted researcher in the built environment and materials science, currently advancing the field as a Senior Postdoctoral Researcher in Austria and a Visiting Researcher in Australia. Rooted in a solid foundation in mechanical engineering, Dr. Asadi has cultivated expertise spanning thermal behavior of cementitious materials, indoor environmental quality, and the integration of sustainable and waste-derived components into construction practices. Driven by a passion for merging experimental rigor with sustainable innovation, Dr. Asadi pursues interdisciplinary projects across continents, contributing to greener building systems through both applied research and scholarly collaboration..

Profile

Googlescholar

Education

Dr. Asadi’s academic trajectory began with a mechanical engineering bachelor’s degree earned at Azad University of Iran, laying a strong technical foundation in thermofluid systems. The pursuit of specialized knowledge continued with a Master of Science in Mechanical Engineering from University Tenaga Nasional in Malaysia, where the focus was on indoor environmental quality consciousness in air-conditioned buildings. Culminating with a Ph.D. in Building Science and Performance from University of Malaya, Dr. Asadi’s doctoral research rigorously evaluated the thermal properties of cementitious mortars incorporating sustainable byproducts, thereby bridging fundamentals of heat transfer with sustainable material development.

Experience

Dr. Asadi’s professional path weaves across academia and applied research. After roles as mechanical designer and research assistant in Iran and Malaysia, he progressed to postdoctoral positions including at the University of Tehran, emphasizing building envelope thermal dynamics and energy modeling. At NTNU in Norway, he explored porosity in cement-based materials via CT scanning and analyzed freeze–thaw durability in sustainable concrete. Since mid-2023, he has served as a Senior Postdoc in Krems, Austria, overseeing projects in manure phosphorus analytics and silicon recovery from photovoltaic panels, and since late 2024, he has expanded his research scope as a Visiting Researcher in Melbourne, Australia, focusing on fire-resistant and phase change materials.

Research Interests

Dr. Asadi’s research lies the thermal characterization and sustainability of cement-based materials, emphasizing the integration of industrial byproducts and PCMs to optimize building performance. His interests include the microscopic and macroscopic porosity of mortars, analyzed through CT-based 3D image processing, as well as heat-transfer phenomena in cementitious media. He is deeply invested in innovating resilient building envelopes, improving indoor environmental quality, and pioneering circular-economy approaches—such as phosphorus recovery and silicon recycling—while advancing methods to assess and enhance material durability, environmental impact, and thermal efficiency.

Awards

Dr. Asadi’s innovative research has been recognized through multiple prestigious accolades. His proposal on geopolymer composites incorporating waste and PCMs earned the European Commission’s Seal of Excellence in consecutive years, underscoring its high scientific and societal merit. Earlier, his inventive work in Malaysia was celebrated with gold awards at both the international research innovation exposition and the invention, design, and innovation competition. Additionally, he was a winner of his university’s three-minute thesis contest and has been supported by national and university-level research grants, including from the National Elites Foundation of Iran and various Malaysian funding bodies.

Publications Top Notes

Thermal conductivity of concrete – A review

Journal: Journal of Building Engineering
Authors: I. Asadi, P. Shafigh, Z.F.B.A. Hassan, N.B. Mahyuddin

Concrete as a thermal mass material for building applications – A review

Journal: Journal of Building Engineering
Authors: P. Shafigh, I. Asadi, N.B. Mahyuddin

Thermal properties of cement mortar with different mix proportions

Journal: Materiales de Construcción
Authors: P. Shafigh, I. Asadi, A.R. Akhiani, N.B. Mahyuddin, M. Hashemi

A review on indoor environmental quality (IEQ) and energy consumption in building based on occupant behavior

Journal: Facilities
Authors: I. Asadi, N. Mahyuddin, P. Shafigh

Drying shrinkage properties of expanded polystyrene (EPS) lightweight aggregate concrete: A review

Journal: Case Studies in Construction Materials
Authors: M. Maghfouri, V. Alimohammadi, R. Gupta, M. Saberian, P. Azarsa

Conclusion

Dr. Iman Asadi exemplifies the modern researcher: globally mobile, deeply interdisciplinary, and observant of both micro-scale physical processes and macro-scale sustainability challenges. With a rich background in mechanical and building sciences, he seamlessly merges experimental materials work—such as thermal testing and CT image-based porosity analysis—with applications ranging from environmental quality improvements to resource-recycling innovations. His recognized achievements, international collaborations, and robust publication record position him as an influential contributor to evolving sustainable and resilient built-environment solutions.