Mohammed Shamshuddin | Fluid Mechanics | Editorial Board Member

Assoc. Prof. Dr. Mohammed Shamshuddin | Fluid Mechanics | Editorial Board Member

Vaagdevi College of Engineering | India

Assoc. Prof. Dr. Mohammed Shamshuddin is a distinguished researcher in computational fluid dynamics with strong expertise in micro and nano fluids, hybrid and ternary nanofluids, magnetohydrodynamics, and advanced numerical simulation. His work focuses on modeling heat transfer, thermal radiation, entropy generation, and rheological behavior of complex nanoliquids across engineering applications such as aerospace thermal systems, drilling fluid enhancement, porous media transport, solar collectors, and bioconvective flows. He has produced influential studies on magnetized hybrid nanofluids, thermal optimization in solar systems, radiative micropolar flows, and magnetic nanopolymer fabrication, contributing significantly to energy efficiency, sustainable fluid systems, and next-generation heat management technologies. With numerous high-impact publications and strong citation performance, he is recognized for advancing semi-analytical and numerical methods, including HAM, Galerkin FEM, and homotopic simulations. His research profile reflects deep analytical capability, innovative modeling approaches, and sustained contributions to fluid mechanics and applied thermal sciences.

Profile: Google Scholar

Featured Publications

Salawu, S. O., Obalalu, A. M., & Shamshuddin, M. D. (2023). Nonlinear solar thermal radiation efficiency and energy optimization for magnetized hybrid Prandtl–Eyring nanoliquid in aircraft. Arabian Journal for Science and Engineering, 48(3), 3061–3072.

Bég, O. A., Espinoza, D. E. S., Kadir, A., Shamshuddin, M. D., & Sohail, A. (2018). Experimental study of improved rheology and lubricity of drilling fluids enhanced with nano-particles. Applied Nanoscience, 8(5), 1069–1090.

Al-Kouz, W., Abderrahmane, A., Shamshuddin, M. D., Younis, O., Mohammed, S., & others. (2021). Heat transfer and entropy generation analysis of water–Fe₃O₄/CNT hybrid magnetic nanofluid flow in a trapezoidal wavy enclosure containing porous media with the Galerkin finite element method. The European Physical Journal Plus, 136(11), 1–23.

Shamshuddin, M. D., Akkurt, N., Saeed, A., & Kumam, P. (2023). Radiation mechanism on dissipative ternary hybrid nanoliquid flow through rotating disk encountered by Hall currents: HAM solution. Alexandria Engineering Journal, 65, 543–559.

Jamshed, W., Şirin, C., Selimefendigil, F., Shamshuddin, M. D., Altowairqi, Y., & others. (2021). Thermal characterization of coolant Maxwell-type nanofluid flowing in parabolic trough solar collector (PTSC) used inside solar-powered ship application. Coatings, 11(12), 1552.

Sudarmozhi K | Fluid Dynamics | Women Researcher Award

Dr. Sudarmozhi K | Fluid Dynamics | Women Researcher Award

Asst Prof, Saveetha School of Engineering, India

Dr. Sudarmozhi K is a Ph.D. candidate in Mathematics at SIMATS Engineering, Chennai (viva voce completed in November 2024). He holds an M.Phil. from Prist University (2014) and an M.Sc. from Cauvery College for Women (2011). With over 13 years of teaching and research experience, Dr. Sudarmozhi has presented 16 conferences at prestigious institutions like IIT, NIT, and VIT. He has published 25 Scopus-indexed papers (16 in Q1 journals) and completed 110 workshops and seminars. His research interests include Fluid Dynamics, Heat and Mass Transfer, and Maxwell Fluid Flow. 🧑‍🏫📚🔬

Publication Profile

Scopus

Orcid

Google scholar

Academic Background 🎓

Dr. Sudarmozhi K is a dedicated scholar currently pursuing his Ph.D. in Mathematics at SIMATS Engineering, Chennai, with his viva voce completed in November 2024. He earned his M.Phil. in Mathematics from Prist University in 2014, securing a B grade. Dr. Sudarmozhi also holds an M.Sc. in Mathematics (70%) from Cauvery College for Women, Trichy (2011) and a B.Sc. in Mathematics (72%) from Immaculate College for Women, Kallakuruchi (2009). His strong educational foundation forms the backbone of his successful career in mathematics research and teaching. 📚🧑‍🏫

Teaching Experience 🧑‍🏫

Dr. Sudarmozhi K has extensive teaching experience spanning over a decade. He began his career as a Lecturer in Mathematics at Immaculate College for Women and Sarada Maha Vidhyalayam Arts College, before becoming an Assistant Professor at Kumara Rani Meena Muthiah College of Arts and Sciences, where he taught for four years. He further served as a Lecturer at Little Flower Polytechnic College and later took up the role of Assistant Professor at Chennai Institute of Technology. From Feb 2022 to November 2024, he was a full-time research scholar at Saveetha School of Engineering, furthering his research while teaching. 📚✨

Research Areas 🔬

Dr. Sudarmozhi K specializes in several key areas of Mathematics and Applied Physics. His primary research interests include Fluid Dynamics, where he investigates the flow and behavior of fluids under various conditions. He is also focused on Heat and Mass Transfer, exploring the transfer processes in different systems. Additionally, Dr. Sudarmozhi works on Maxwell Fluid Flow, studying the characteristics of non-Newtonian fluids. Another area of his expertise is Boundary Value Problems, where he applies mathematical techniques to solve complex real-world problems. His research contributes significantly to both theoretical and applied sciences. 🌊🔥📊

Publication Top Notes

  • Double diffusion in a porous medium of MHD Maxwell fluid with thermal radiation, heat generation, and chemical reactionCited by 36 – 2023 📚🌡️
  • Heat and mass transport of MHD viscoelastic fluid flow towards a permeable stretching cylinderCited by 18 – 2023 🌬️🌀
  • Significance of heat generation and impact of suction/injection on Maxwell fluid over a horizontal plate by the influence of radiationCited by 17 – 2023 🔥💧
  • Magneto radiative and heat convective flow boundary layer in Maxwell fluid across a porous inclined vertical plateCited by 16 – 2023 🌫️🔥
  • Investigation of melting heat effect on fluid flow with brownian motion/thermophoresis effects in the occurrence of energy on a stretching sheetCited by 13 – 2024 ❄️⚙️
  • Thermofluid of Maxwellian type past a porous stretching cylinder with heat generation and chemical reactionCited by 9 – 2023 🌪️🧪
  • Significance of heat generation in MHD channel flow of a Maxwell fluid with heat suction and blowing effectsCited by 7 – 2024 💨🔥
  • A steady flow of MHD Maxwell viscoelastic fluid on a flat porous plate with the outcome of radiation and heat generationCited by 6 – 2023 🔥💧
  • Exploring the Steady Flow of a Viscoelastic Fluid Passing over a Porous Perpendicular Plate Subjected to Heat Generation and Chemical ReactionsCited by 5 – 2024 🌡️🌀
  • Heat generation in dual convection Non-Newtonian MHD Darcy’s flow with Soret and Dufour effectsCited by 5 – 2024 🔥🌬️
  • Effects of porous medium in MHD flow of Maxwell fluid with Soret/Dufour impactsCited by 5 – 2024 💨⚡
  • Viscoelastic fluid flow over a horizontal flat plate with various boundary slip conditions and suction effectsCited by 5 – 2023 🌊💨
  • Effect of heat generation and activation energy on MHD Maxwell fluid with multiple slipsCited by 4 – 2024 🔥⚡
  • Revolutionizing energy flow: Unleashing the influence of MHD in the presence of free convective heat transfer with radiationCited by 4 – 2024 🔥💨
  • Newtonian heating effect across the moving horizontal plate with chemical reaction of MHD Maxwell fluidCited by 4 – 2024 🌡️🔬
  • Exploring thermal diffusion and diffusion-thermal energy in MHD Maxwell fluid flow around a stretching cylinderCited by 4 – 2023 🔥🌬️
  • Heat transfer enrichment in magnetohydrodynamic cylindrical flow of Maxwell fluid with thermal radiation and Stefan blowing effectsCited by 4 – 2023 🔥🌬️
  • Viscoelastic fluid flow on channel in porous medium with Soret and Dufour along with the effect of activation energy and suction and blowingCited by 3 – 2024 💧🌪️
  • Chemical reaction effect across the moving flat plate with heat generation and MHD flow of Maxwell fluid with viscous dissipationCited by 2 – 2025 💨🔥
  • Viscoelasticity of Maxwell fluid in a permeable porous channelCited by 1 – 2024 🌊💨

 

Usama Bin Liaqat | Computational Fluid Dynamics | Best Researcher Award

Mr. Usama Bin Liaqat | Computational Fluid Dynamics | Best Researcher Award

Mr. Usama Bin Liaqat, COMSATS University Islamabad Pakistan 

Usama Bin Liaqat is a dedicated Mathematics lecturer at the Higher Education Department in Punjab, Pakistan, with a Master’s in Mathematics from COMSATS University Islamabad, where he achieved a CGPA of 3.56. His thesis focused on heat and mass transfer of nanofluids over a rotating cone, utilizing advanced mathematical modeling. Proficient in tools like MATLAB and Wolfram Mathematica, Usama has published works in respected journals and completed certifications in Data Science and Cyber Security. Recognized for his excellence in teaching, he was awarded the Best Teacher of the Year in 2021. 📚💻✨

Publication Profile

Orcid

Education and Training

Usama Bin Liaqat has pursued advanced studies in mathematics, with a Master of Science from COMSATS University Islamabad, focusing on heat and mass transfer in nanofluid flow using innovative mathematical models. His thesis, which incorporates the Eyring-Powell fluid model, highlights his expertise in complex differential equations and numerical methods. His Bachelor’s degree from the International Islamic University Islamabad provides a strong foundation in mathematical concepts, making him well-versed in the field. His strong academic background and specialized focus in fluid dynamics are essential qualities for research innovation.

Work Experience

Currently a lecturer at the Higher Education Department in Punjab, Pakistan, Usama has experience teaching complex mathematical concepts, enhancing his communication skills and ability to transfer knowledge. His practical involvement in education, combined with his research experience, adds to his qualifications, demonstrating both his theoretical knowledge and real-world application. As an educator, he is positioned to contribute innovative teaching methodologies and research practices in mathematics.

Professional Certifications

Complementing his academic qualifications, Usama has earned certifications in Data Science and Cyber Security, expanding his knowledge base and enhancing his research capabilities in data analysis and security. These certifications reflect his multidisciplinary approach, critical for innovative research that intersects mathematics, technology, and data science.

Honors and Awards

Usama’s academic and teaching excellence is recognized through several awards, including the Prime Minister’s Laptop Scheme and the Best Teacher Award in 2021. His ability to balance teaching with research, while consistently achieving recognition, demonstrates his dedication to innovation and professional growth.

Conclusion

Usama Bin Liaqat is a strong candidate for the Research for Best Innovation Award, with a solid academic foundation, cutting-edge research in fluid dynamics, digital expertise, and multiple accolades in education. His diverse skill set, innovation in applied mathematics, and dedication to teaching make him a standout for recognition in research excellence.

 

Publication Top Note

A computational study of Eyring‐Powell fluid model over a rotating cone with magnetic field and joule heating effect

Matin Ahmad | Fluid dynamics | Best Researcher Award

Mr. Matin Ahmad | Fluid dynamics | Best Researcher Award

Mr. Matin Ahmad, City University of Science and Information Technology Peshawar, Pakistan

Based on the provided resume for Mr. Matin Ahmad, here’s an evaluation of his suitability for the Research for Best Researcher Award:

Publication profile

Research Focus and Expertise

Matin Ahmad is actively involved in research in the field of Fluid Dynamics. His research addresses complex problems in fluid dynamics, including the study of viscoelastic dusty fluids and magnetohydrodynamics, as reflected in his recent publications. This specialized focus aligns with the high standards typically expected for research awards, highlighting his ability to contribute meaningful advancements in his field.

Academic Qualifications

Mr. Ahmad holds a Master’s degree in Mathematics from City University of Peshawar (2022) and a Master’s in Science from Qurtuba University of Peshawar (2019). His academic background, which includes a solid foundation in mathematics and statistics, complements his research work in fluid dynamics. His education demonstrates a strong analytical and theoretical base essential for high-level research.

Professional Experience

Currently, Mr. Ahmad is employed as a teacher at Swabi Model School & College Kotha, while also continuing research under the supervision of Prof. Dr. Farhad Ali at City University of Science and Information Technology Peshawar. This dual role showcases his commitment to both teaching and research, further establishing his dedication to academic and professional growth.

Research Contributions and Publications

Mr. Ahmad has contributed to notable publications in reputable journals, including:

  1. “Couette Flow of Viscoelastic Dusty Fluid through A Porous Oscillating Plate In A Rotating Frame Along With Heat Transfer” – Heat Transfer, 2024.
  2. “Effect of Newtonian Heating and Heat Generation on Magnetohydrodynamics Cassion Dusty Fluid Flow between Two Parallel Plates” – Frontiers in Materials, 2023.

These publications highlight his active engagement with current research trends and his ability to contribute valuable insights into complex fluid dynamics phenomena.

Skills and Additional Achievements

Mr. Ahmad’s proficiency in tools such as M.S Word, Mathcad, and Mathematica, combined with his experience in presenting at conferences, underscores his technical and communicative abilities. His participation in the 4th International Conference on Emerging Trends in Engineering, Management & Sciences (ICETEMS-2021) further demonstrates his commitment to advancing his field.

Conclusion

Given his solid academic background, ongoing research contributions, and professional experience, Matin Ahmad is a strong candidate for the Research for Best Researcher Award. His specialized research in fluid dynamics, coupled with his active publication record and dedication to both teaching and research, aligns well with the award’s criteria for recognizing outstanding researchers.