Mohammad Hamdan | Engineering | Best Researcher Award

Best Researcher Award

Mohammad Hamdan
Affiliation Middle East University
Country Jordan
Google Scholar ID b3gIJIcAAAAJ&hl
Documents 6
Citations 11
h-index 2
Subject Area Engineering
Event Award and Honors

Mohammad Hamdan
Middle East University, Jordan

Mohammad Hamdan is an engineering researcher affiliated with Middle East University, Jordan. His scholarly activities demonstrate continued engagement in engineering research through peer-reviewed publications and academic dissemination. With documented contributions indexed through scholarly databases, his work reflects an interest in advancing engineering knowledge while supporting evidence-based technological development. His research profile includes publications that contribute to scientific discussion and attract scholarly citations, indicating recognition within the academic community.

Abstract

Mohammad Hamdan’s academic profile illustrates sustained participation in engineering research through scholarly publications and scientific communication. His documented research output demonstrates interest in addressing engineering challenges using analytical and practical methodologies. Citation indicators, although developing, show measurable academic visibility and provide evidence that his work has contributed to ongoing scientific discussions. These characteristics support consideration for professional recognition through research-oriented awards.[2]

Keywords

Engineering, Applied Research, Scientific Publications, Innovation, Technology Development, Academic Excellence, Research Impact, Scholarly Communication.

Introduction

Engineering research plays a significant role in technological progress and sustainable development. Researchers contribute by generating new knowledge, validating engineering solutions, and publishing findings through peer-reviewed journals. Mohammad Hamdan’s academic activities align with these objectives by supporting scholarly investigation and dissemination within engineering disciplines. His affiliation with Middle East University further reflects participation in higher education and research advancement.[2]

Research Profile

The available scholarly metrics indicate six indexed publications, eleven citations, and an h-index of two. These indicators demonstrate an active research presence and continuing academic development. His Google Scholar profile provides additional visibility into publication history and citation performance while supporting transparency regarding research dissemination.[3]

Research Contributions

Mohammad Hamdan has contributed to engineering scholarship through peer-reviewed research addressing technical topics relevant to his discipline. His publications demonstrate systematic investigation, application of engineering principles, and dissemination of findings to the wider scientific community. Such contributions strengthen collaborative research efforts and encourage future technological innovation.[4]

Publications

Applicants are expected to demonstrate a strong record of scholarly publication through peer-reviewed engineering journals indexed in recognized academic databases. Publications should reflect original research, innovative methodologies, or practical engineering solutions that advance applied engineering knowledge across academic, industrial, or societal domains.

Research Impact

Research impact is commonly evaluated through publication quality, citation frequency, scholarly visibility, and contribution to disciplinary advancement. Mohammad Hamdan’s existing citation record reflects emerging recognition, while his continued publication activity provides opportunities for broader academic influence and interdisciplinary collaboration.[5]

Award Suitability

Based on the available academic profile, Mohammad Hamdan demonstrates characteristics commonly considered in research recognition, including peer-reviewed publications, measurable citation performance, institutional affiliation, and engagement in engineering research. These factors provide a reasonable foundation for consideration within academic award evaluation processes, subject to the official assessment criteria of the organizing body.

Conclusion

Mohammad Hamdan’s academic record reflects ongoing participation in engineering research through scholarly publication and scientific engagement. His documented achievements contribute to the visibility of engineering research at Middle East University while supporting continued academic growth. As research output and scholarly influence continue to develop, his profile represents a meaningful contribution to engineering scholarship and professional academic excellence.

External Links

References

  1. Google Scholar. (n.d.). Scholar profile of Mohammad Hamdan.
    https://scholar.google.com/citations?user=b3gIJIcAAAAJ&hl=en
  2. Hamdan, M., Mirzaei, P., & Gillott, M. (2023). Life Cycle Cost Assessment and Retrofit in
    Community Scale: A Case Study of Jordan. E3S Web of Conferences, 396, 04012.
    https://doi.org/10.1051/e3sconf/202339604012
  3. Saadatjoo, P. A. M. P., Moradi, H., Hamdan, M., & Faroug, M. M. (2024). On the Oversimplification
    of Neighbourhood Impact in Urban Microclimate and Building Energy Models. Building and
    Environment, Article No. 113301.
    https://pure.au.dk/portal/en/publications/on-the-oversimplification-of-neighborhood-impact-in-urban-microcl/
  4. Saadatjoo, P., Moradi, H., Hamdan, M., Faroug, M. M. & Mirzaie. P. (2025). Evaluating the Influence
    of Urban Wind Environment on Energy Performance of Mid-Rise Buildings in Amman.

Zhi Zong | Engineering | Best Researcher Award

Prof. Dr. Zhi Zong | Engineering | Best Researcher Award

Fuyao University of Science and Technology | China

Professor Zhi Zong is an internationally acclaimed researcher in naval architecture, ocean engineering, computational mechanics, and fluid–structure interaction, widely recognized for his influential contributions to marine hydrodynamics and advanced numerical simulation. With 334 publications, 5,653 citations, and an h-index of 38 (Scopus), his research covers underwater explosion (UNDEX) physics, nonlinear water waves, bubble dynamics, vortex-induced vibration (VIV), unsteady cavitation, water-entry dynamics, and high-fidelity computational fluid mechanics, employing cutting-edge techniques such as SPH, DEM, and data-driven modeling. He has authored over 460 scientific papers, including more than 230 SCI-indexed articles, and has been continuously listed among the Top 2% Scientists globally (2021–2025). His seven authoritative monographs published with Elsevier, Taylor & Francis/CRC, and Science Press span differential quadrature methods, solitary wave theory, computational underwater explosion mechanics, and bubble damage modeling. Professor Zong’s research has significantly advanced understanding of shock loading on marine structures, hydrodynamic impact, cavitating and multiphase flows, ice–structure interactions, ship motion reduction, and complex multi-physics simulations, with many of his highly cited publications regarded as landmark contributions to SPH modeling, multiphase flow analysis, UNDEX damage prediction, and VIV dynamics.

Profiles: Scopus| Google Scholar | ResearchGate

Featured Publications 

• Liu, M. B., Liu, G. R., Lam, K. Y., & Zong, Z. (2003). Smoothed particle hydrodynamics for numerical simulation of underwater explosion. Computational Mechanics, 30(2), 106–118.

• Liu, M. B., Liu, G. R., Zong, Z., & Lam, K. Y. (2003). Computer simulation of high explosive explosion using smoothed particle hydrodynamics methodology. Computers & Fluids, 32(3), 305–322.

• Zong, Z., & Zhang, Y. (2009). Advanced differential quadrature methods. Chapman and Hall/CRC.

• Chen, Z., Zong, Z., Liu, M. B., Zou, L., Li, H. T., & Shu, C. (2015). An SPH model for multiphase flows with complex interfaces and large density differences. Journal of Computational Physics, 283, 169–188.

• Zhang, Y. Y., Wang, C. M., Duan, W. H., Xiang, Y., & Zong, Z. (2009). Assessment of continuum mechanics models in predicting buckling strains of single-walled carbon nanotubes. Nanotechnology, 20(39), 395707.