Javad Rostami-Fluid Mechanics-Academic Achievement in Environmental Engineering Award

Javad Rostami - Fluid Mechanics - Academic Achievement in Environmental Engineering Award

Associate Professor at Razi University, Iran

Javad Rostami is currently serving as an Associate Professor in the Department of Mechanical Engineering at Razi University. With expertise in heat transfer, fluid mechanics, and computational simulations, Rostami has significantly contributed to the thermal sciences. His academic focus blends teaching, research, and practical design work in thermal systems. Through a balanced combination of academic teaching and applied engineering services, Rostami has gained recognition for his comprehensive approach to engineering problems, particularly in the area of microchannel heat transfer using nanofluids.

Professional Profile

GOOGLE SCHOLAR | SCOPUS | ORCID

Education

The academic background of Javad Rostami includes a Bachelor's and Master’s degree in Mechanical Engineering from the University of Tehran and a Ph.D. from Amirkabir University of Technology. His research has focused on advanced thermal systems, evident in his progression from undergraduate to doctoral theses involving heat transfer mechanisms. The Ph.D. work, in particular, emphasized the numerical modeling of two-phase fluid flows and heat transfer in microchannels, aligning with his ongoing research themes.

Professional Experience

Rostami has served extensively at Razi University, delivering a wide range of undergraduate and graduate courses. His teaching portfolio covers foundational and advanced topics such as Thermodynamics, Fluid Mechanics, CFD, and Advanced Fluid Mechanics. Additionally, he has provided design and inspection services in collaboration with the Iranian Construction Engineering Organization, contributing to residential building projects involving water piping and air conditioning systems since 2009.

Research Interest

Javad Rostami’s research centers on convective heat transfer, particularly in microchannels, wavy channels, and porous media. His work extensively explores the application of nanofluids and phase change materials in thermal management systems. Rostami is especially interested in conjugate heat transfer, the use of numerical simulations to optimize thermal performance, and innovations in fluid-structure thermal interaction using modern computational tools like Eulerian–Lagrangian methods.

Award And Honor

Rostami has earned professional respect through his consistent scholarly output and contributions to mechanical engineering education. Recognition of his scientific contributions is reflected in numerous publications in ISI-indexed journals. His membership in the Iranian Construction Engineering Organization and participation in national and international conferences further illustrates his professional involvement and academic leadership.

Research Skill

Javad Rostami demonstrates strong research capabilities in computational fluid dynamics and numerical modeling. He has proficiency in tools such as Fortran, Tecplot, and simulation environments for solving complex thermal problems. With experience in two-phase flow simulations, porous media, and PCM applications, his analytical skills bridge the gap between theoretical thermal science and applied engineering design, aiding in performance optimization of modern energy systems.

Publications

The publication record of Javad Rostami includes over 30 research papers in top-tier international and national journals. These works cover topics such as wavy microchannel heat transfer, nanofluid behavior, and optimization of thermal systems. His contributions are notable in journals like Advanced Powder Technology, Heat and Mass Transfer, and Applied Thermal Engineering. He has also actively participated in engineering conferences, enriching the academic discourse on heat transfer innovations.

Title: Optimization of conjugate heat transfer in wavy walls microchannels
Authors: J Rostami, A Abbassi, M Saffar-Avval
Journal: Applied Thermal Engineering, 82, 318–328

Title: Conjugate heat transfer in a wavy microchannel using nanofluid by two-phase Eulerian–Lagrangian method
Authors: J Rostami, A Abbassi
Journal: Advanced Powder Technology, 27 (1), 9–18

Title: Unsteady natural convection in an enclosure with vertical wavy walls
Authors: J Rostami
Journal: Heat and Mass Transfer, 44 (9), 1079–1087

Title: Heat transfer by nanofluids in wavy microchannels
Authors: J Rostami, A Abbassi, J Harting
Journal: Advanced Powder Technology, 29 (4), 925–933

Title: A correlation for free convection heat transfer from vertical wavy surfaces
Authors: M Ashjaee, M Amiri, J Rostami
Journal: Heat and Mass Transfer, 44 (1), 101–111

Title: Convective heat transfer by micro-encapsulated PCM in a mini-duct
Authors: J Rostami
Journal: International Journal of Thermal Sciences, 161, 106737

Conclusion

Javad Rostami stands as a dedicated researcher and educator in the mechanical engineering field with a clear focus on heat transfer and energy system optimization. His balanced career in academia and applied engineering underscores his ability to contribute both theoretically and practically to modern engineering challenges. Rostami’s work in enhancing the performance of thermal systems continues to impact the design and understanding of efficient energy solutions in engineering applications.

Elsayed Abo-Dahab | Continuum Mechanics | Best Researcher Award

Elsayed Abo-Dahab | Continuum Mechanics | Best Researcher Award

Continuum Mechanics at South Valley University

A distinguished academic in the field of Applied Mathematics, El-Sayed Mohamed Abo-Dahab Khedary is a leading figure in continuum mechanics. His extensive work spans elasticity, thermoelasticity, fluid mechanics, and magnetic field effects in fibre-reinforced materials. He has contributed significantly to science through his prolific publishing record, with more than 265 scientific articles across disciplines such as engineering, physics, biology, geology, acoustics, and plasma studies. His academic influence is reinforced by his position as a reviewer for over 150 international journals, and his work is widely cited, making him a respected authority in solid mechanics and mathematical modeling.

Professional Profile

SCOPUS | ORCID | GOOGLE SCHOLAR

Education

Academic progression includes a Master's degree in Applied Mathematics in 2001 and a PhD in 2005, both earned from reputable Egyptian universities. This foundational expertise led to further academic recognition, including the title of Assistant Professor in 2012 and full Professor in 2017. In 2020, he achieved a Doctor of Science (DSc.) degree in Physics and Mathematics, a distinction that underlines his contribution to theoretical and applied sciences. These academic milestones have been crucial in shaping a career grounded in mathematical rigor and interdisciplinary research excellence.

Professional Experience

El-Sayed Mohamed Abo-Dahab Khedary currently serves as a Professor in Applied Mathematics with a specialization in continuum mechanics. His professional experience reflects a steady academic progression, culminating in a prominent role that bridges research and mentorship. His contributions extend beyond teaching, involving leadership in various scientific endeavors and collaboration across international research communities. As an expert reviewer for numerous high-impact journals, he plays a key role in maintaining scholarly standards in applied mathematics and mechanics. His dedication to the field is demonstrated through decades of sustained engagement in both theoretical advancements and practical applications.

Research Interest

Research interests lie at the intersection of mathematics and physical sciences, with a focus on elasticity, thermoelasticity, fluid mechanics, and magnetic field interactions in fibre-reinforced materials. This interdisciplinary orientation supports applications in engineering, biology, plasma physics, and beyond. His work contributes to the understanding of how complex systems behave under various physical influences, a foundation for innovations in materials science and mechanical analysis. His engagement with emerging scientific problems positions him as a thought leader in applied mathematics, with a commitment to advancing both theory and real-world problem-solving.

Award And Honor

Recognition for his academic excellence includes numerous local and international awards in science and technology. These honors acknowledge his groundbreaking contributions to applied mathematics and his impact on various scientific domains. His reputation is further solidified by frequent invitations to review for over 150 international journals, underscoring the trust the academic community places in his judgment. Additionally, citations of his work in prominent research papers and textbooks highlight his influence on contemporary scientific thought. These accolades collectively illustrate a career marked by scholarly distinction and ongoing innovation.

Research Skill

Research capabilities are centered around continuum mechanics, including elasticity, fluid flow, and magnetic field interactions with complex materials. His technical expertise allows for modeling intricate systems, particularly those involving thermoelastic and fiber-reinforced materials. With strong analytical and computational skills, he designs and interprets advanced mathematical models applicable to various scientific and engineering problems. His adaptability across disciplines—spanning physics, geology, biology, and acoustics—demonstrates a unique ability to translate mathematical theory into practical insights. He is also proficient in scientific writing, peer reviewing, and cross-disciplinary collaboration, reinforcing his standing as a research leader.

Publications

An accomplished author, he has published over 265 scientific papers in peer-reviewed journals covering a wide array of disciplines, including engineering, mathematics, physics, biology, acoustics, and plasma science. His publications address both theoretical frameworks and applied research, reflecting his broad intellectual reach and analytical depth. He is also the author of several books in mathematics, offering valuable resources to students and professionals alike. His work is well-cited, demonstrating its relevance and utility across multiple fields. This rich body of research represents a career committed to expanding the boundaries of applied mathematics.

Title: MHD Casson nanofluid flow over nonlinearly heated porous medium in presence of extending surface effect with suction/injection
Authors: SM Abo-Dahab, MA Abdelhafez, F Mebarek-Oudina, SM Bilal
Journal: Indian Journal of Physics, 95 (12), 2703–2717

Title: Influence of chemical reaction and thermal radiation on the heat and mass transfer in MHD micropolar flow over a vertical moving porous plate in a porous medium with heat
Authors: RA Mohamed, SM Abo-Dahab
Journal: International Journal of Thermal Sciences, 48 (9), 1800–1813

Title: Influence of MWCNT/Fe₃O₄ hybrid nanoparticles on an exponentially porous shrinking sheet with chemical reaction and slip boundary conditions
Authors: K Swain, F Mebarek-Oudina, SM Abo-Dahab
Journal: Journal of Thermal Analysis and Calorimetry, 147 (2), 1561–1570

Title: Finite element analysis of hydromagnetic flow and heat transfer of a heat generation fluid over a surface embedded in a non-Darcian porous medium in the presence of chemical
Authors: RA Mohamed, IA Abbas, SM Abo-Dahab
Journal: Communications in Nonlinear Science and Numerical Simulation, 14 (4), 1385–1395

Title: Generalized thermoelastic functionally graded on a thin slim strip non-Gaussian laser beam
Authors: SM Abo-Dahab, AE Abouelregal, M Marin
Journal: Symmetry, 12 (7), 1094

Title: Two-temperature plane strain problem in a semiconducting medium under photothermal theory
Authors: SM Abo-Dahab, K Lotfy
Journal: Waves in Random and Complex Media, 27 (1), 67–91

Title: Effect of rotation on peristaltic flow of a micropolar fluid through a porous medium with an external magnetic field
Authors: AM Abd-Alla, SM Abo-Dahab, RD Al-Simery
Journal: Journal of Magnetism and Magnetic Materials, 348, 33–43

Title: Two-dimensional problem of two temperature generalized thermoelasticity with normal mode analysis under thermal shock problem
Authors: K Lotfy, SM Abo-Dahab
Journal: Journal of Computational and Theoretical Nanoscience, 12 (8), 1709–1719

Conclusion

El-Sayed Mohamed Abo-Dahab Khedary exemplifies academic excellence in applied mathematics with a focus on real-world impact. His research spans critical scientific domains, his publications are widely cited, and his contributions have earned significant recognition. Through teaching, research, and international collaboration, he has advanced the fields of continuum mechanics and applied mathematics. His dedication to interdisciplinary inquiry and scientific integrity has established him as a thought leader and mentor. The depth and diversity of his career reflect not only expertise but also a long-standing commitment to knowledge creation and dissemination.

Abdul Aabid | Solid mechanics and fluid mechanics | Best Researcher Award

Dr Abdul Aabid | Solid mechanics and fluid mechanics | Best Researcher Award

Researcher, Prince Sultan University, Saudi Arabia

Abdul Aabid is a distinguished researcher and academician currently serving at Prince Sultan University, Saudi Arabia. With an illustrious career spanning over a decade, he has contributed extensively to mechanical and aerospace engineering, with a particular focus on materials, structures, and fluid dynamics. A recipient of multiple awards, including the Research Excellence Award, he is renowned for his impactful publications and global collaborations. His research addresses critical industrial challenges, leveraging advanced methodologies like FEM and computational fluid dynamics to innovate solutions.

PROFESSIONAL PROFILE

Google Scholar

Orcid

Scopus

STRENGTHS FOR THE AWARD

  1. Prolific Research Output: Dr. Abdul Aabid’s significant contributions are evident through high-impact publications in respected journals. His works on advanced topics such as piezoelectric materials, composite materials, and supersonic flows demonstrate a focus on innovative and practical engineering solutions.
  2. Recognition and Awards: Multiple awards, including the Research Excellence Award at Prince Sultan University and Best Paper Award at ICALMS-2k20, highlight his impactful research and recognition within the academic community.
  3. Multidisciplinary Expertise: His research spans a wide array of topics, including fluid dynamics, composite materials, and energy harvesters, showcasing versatility and the ability to contribute to various domains.
  4. Citations and Influence: With several highly cited works, Dr. Aabid’s research is recognized and utilized globally, indicating significant contributions to the academic and professional engineering community.
  5. Global Collaborations: His international academic and professional experience, from India, Malaysia, and Saudi Arabia, underlines his adaptability and ability to thrive in diverse research environments.

AREAS FOR IMPROVEMENT

  1. Specialization Focus: While multidisciplinary research is a strength, concentrating on a niche area could further solidify his reputation as a subject matter expert and attract more focused collaborations.
  2. Industry Collaboration: Expanding partnerships with industry stakeholders could enhance the practical applications of his research and secure funding for larger, impactful projects.
  3. Public Engagement: Increasing visibility through presentations at global conferences and public lectures could enhance his profile further within the engineering community.

EDUCATION

  • Ph.D. in Mechanical and Aerospace Engineering (2020)
    International Islamic University Malaysia (IIUM), Kuala Lumpur. Dissertation: Hybrid repair of cracked plates strengthened with composite patches and piezoelectric actuators.
  • M.Tech in Aerospace Engineering (2014)
    Jawaharlal Nehru Technological University, Hyderabad, India. Dissertation: Arresting a crack in the fuselage structure using longitudinal stiffening members.
  • B.E. in Aeronautical Engineering (2010)
    Visvesvaraya Technological University, India. Dissertation: Airfoil structural analysis for failure by natural frequency test.

EXPERIENCE

  • Researcher, Prince Sultan University, Saudi Arabia (2023 – Present)
  • Post-Doctoral Fellow, Prince Sultan University, Saudi Arabia (2021 – 2023)
  • Graduate Research Assistant, IIUM, Malaysia (2017 – 2021)
  • Assistant Professor, Mangalore Institute of Technology, India (2014 – 2016)
  • Lecturer, Khaja Banda Nawaz College, India (2010 – 2012)

AWARDS AND HONORS

🏆 Research Excellence Award (2022–2023): Prince Sultan University.
📜 Best Paper Award: ICALMS-2k20, India.
🥇 Gold Medal for Academic Excellence: KBNCE, India.
🌟 Top Researcher Award: AD Scientific Ranking, PSU.
🎖 Best Student Honors (2011): SP Science College, India.

RESEARCH FOCUS

Abdul Aabid’s research focuses on composite and piezoelectric materials, fluid dynamics, FEM, and structural health monitoring. His work is instrumental in advancing 3D printing, energy harvesting, and aerodynamics, addressing industrial needs with cutting-edge solutions.

PUBLICATION TOP NOTES

📄 Advancements and limitations in 3D printing materials and technologies: A critical review (2023).
📄 A systematic review of piezoelectric materials and energy harvesters for industrial applications (2021).
📄 Response surface analysis of pressure in high-speed aerodynamic flows (2020).
📄 Review of structural control techniques for engineering structures (2021).
📄 Multi ceramic particles inclusion in the aluminum matrix (2021).
📄 CFD analysis of nozzle pressure ratio in supersonic flows (2018).
📄 Investigation of mechanical properties of hybrid composite materials (2023).
📄 Reviews on UAV design for industrial applications (2022).
📄 Empirical research on CI engines with biodiesel blends (2021).
📄 Rheological properties of hybrid nanofluids using Taguchi methods (2023).

CONCLUSION

Dr. Abdul Aabid is a strong contender for the Best Researcher Award. His extensive academic achievements, impactful research, and international contributions reflect a dedication to advancing knowledge in mechanical and aerospace engineering. Enhancing focus within a niche and building stronger industry connections could elevate his already impressive career further. Recognizing him with this award would honor his significant contributions and encourage continued excellence in research.

Dolat Khan – fluid dynamics – Best Researcher Award

Dolat Khan - fluid dynamics - Best Researcher Award

KMUTT - Thailand

AUTHOR PROFILE

SCOPUS

ACADEMIC CAREER

Dolat Khan holds a PhD in Applied Mathematics with a focus on Fluid Dynamics from King Mongkut’s University of Technology Thonburi (KMUTT) in Bangkok, Thailand. His academic journey includes an MS by Research and an MSc in Applied Mathematics and Mathematics from City University of Science & Information Technology, Peshawar, Pakistan. He has excelled in his studies, receiving top grades and various scholarships throughout his educational career.

RESEARCH INTERESTS

Dolat's research interests encompass a wide range of topics in fluid dynamics and heat transfer. He focuses on exact solutions of both Newtonian and Non-Newtonian fluids, entropy generation, porous media, and nanofluids. His work explores complex phenomena such as magnetic hydrodynamics (MHD), fractional derivatives, and numerical analysis, contributing valuable insights to these fields.

MASTER'S AND PhD THESIS

His Master’s thesis explored the MHD flow of Casson fluid with and without nanoparticles over a vertical plate embedded in a porous medium. For his PhD, he investigated a generalized entropy generation analysis of Newtonian and Non-Newtonian fluids through various fractional operators, further advancing the understanding of fluid dynamics.

RESEARCH EXPERIENCE

Dolat has conducted significant research at various institutions, including a short-term research position at Cankaya University, Turkey, and as a research student at City University of Science & Information Technology, Pakistan. His work involves in-depth exploration of fluid dynamics and fractional derivatives, showcasing his expertise and dedication to advancing the field.

TEACHING EXPERIENCE

He has served as a Visiting Lecturer at City University of Science & Information Technology and a Lecturer at Muslim Education Complex, Peshawar. His teaching experience includes instructing and mentoring students in applied mathematics and fluid dynamics, demonstrating his commitment to education and academic development.

PROGRAMMING AND TECHNICAL SKILLS

Dolat is proficient in various programming languages and tools, including Python, MATLAB, Mathematica, and Maple. His skills extend to numerical analysis and scientific software, essential for conducting advanced research and simulations in fluid dynamics and heat transfer.

SCHOLARSHIPS AND AWARDS

Dolat has been recognized with several prestigious awards, including the Petchra Pra Jom Klao Doctoral Scholarship by KMUTT and a gold medal in his MSc program. He also received scholarships for his outstanding academic performance and was selected for a collaborative visit to China, highlighting his academic excellence and global engagement.

PUBLICATIONS

Dolat has authored numerous research papers in renowned journals, covering topics such as MHD flow, heat transfer, and nanofluids. His publications include influential works in Scientific Reports, Results in Physics, and Symmetry, reflecting his significant contributions to the field of applied mathematics and fluid dynamics.

NOTABLE PUBLICATION

Viscous Dissipation Effects on Time-Dependent MHD Casson Nanofluid Over Stretching Surface: A Hybrid Nanofluid Study.

Authors: Rehman, A., Khan, D., Mahariq, I., Abdelghany Elkotb, M., Elnaqeeb, T.
Year: 2024
Journal: Journal of Molecular Liquids

Heat Transfer Analysis of Mixed Convection Boundary Layer Blood Base Nanofluids with the Influence of Viscous Dissipation.

Authors: Rehman, A., Mahariq, I., Khan, D., Ghazwani, H.A.
Year: 2024
Journal: Case Studies in Thermal Engineering

Enhanced Heat Transfer in Viscoelastic Fluids with Periodic Magnetic Fields and Dusty Nanoparticles Between Two Parallel Plates Under Thermal Radiation.

Authors: Khan, D., Ali, G., Mahariq, I., Ahammad, N.A., Ali, M.R.
Year: 2024
Journal: Case Studies in Thermal Engineering

The Impact of Marangoni Convection on Carbon Nanotube Blood Base Hybrid Nanofluid with Thermal Radiation Viscous Dissipation and Couple Stress, Analytical Study.

Authors: Rehman, A., Khan, D., Jan, R., Mahariq, I.
Year: 2024
Journal: BioNanoScience

Exploring the Potential of Heat Transfer and Entropy Generation of Generalized Dusty Tetra Hybrid Nanofluid in a Microchannel.

Authors: Khan, D., Kumam, P., Watthayu, W., Jarad, F.
Year: 2024
Journal: Chinese Journal of Physics