Dr. Muhammad waris saeed Khan | Fluid Properties of Petroleum | Best Academic Researcher Award

Dr. Muhammad waris saeed Khan | Fluid Properties of Petroleum | Best Academic Researcher Award

Dr. Muhammad waris saeed Khan | National excellence uiversity | Pakistan

Dr. Muhammad Waris Saeed Khan is a mathematician specializing in computational fluid mechanics, heat transfer, and numerical analysis. He earned his PhD in Mathematics from International Islamic University, Islamabad, with research focused on theoretical investigations of thermal entry flow in ducts. His work addresses heat transfer analysis of Newtonian and non-Newtonian fluids using analytical and numerical techniques. Dr. Khan has published 41 research articles indexed in leading journals, receiving 697 citations across 289 citing documents, with an h-index of 17. His strong academic foundation spans applied mathematics, fluid mechanics, and advanced mathematical modeling.

Citation Metrics (Scopus)

700

500

300

100

0

Citations
697

Documents
41

h-index
17


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Mr. Oluwaseun Duntoye | Future of Fossil Fuels and Energy Transition | Research Excellence Award

Mr. Oluwaseun Duntoye | Future of Fossil Fuels and Energy Transition | Research Excellence Award

Mr. Oluwaseun Duntoye | Seoul National University of Science and Technology | South Korea

Mr. Oluwaseun Duntoye is a power systems and AI-based control research engineer specializing in modeling, optimization, and intelligent control of modern energy networks. His research focuses on integrating renewable energy, energy storage systems, and electric vehicles with smart grids, HVDC, and power electronics. He develops AI-driven and hardware-efficient control strategies that enhance grid stability, resilience, and sustainability. With expertise in MATLAB and Python modeling, deep learning for energy forecasting, and PV-BESS control for voltage regulation, he bridges advanced computational methods with practical energy solutions, contributing to the development of next-generation power systems.


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Prof. Saeid Zeinali Heris | Sustainability in Oil and Gas | Research Excellence Award

Prof. Saeid Zeinali Heris | Sustainability in Oil and Gas | Research Excellence Award

  Prof. Saeid Zeinali Heris | Xi’an University of Science and Technology | China

Prof. Saeid Zeinali Heris is a distinguished professor with extensive expertise in chemical and petroleum engineering. He has made significant contributions to research, innovation, and scientific dissemination, serving as associate editor and editorial board member for numerous international journals, including the Journal of Management Science & Engineering Research, Organic & Medicinal Chemistry International Journal, and Progress in Petrochemical Science. His work spans materials science, fluid mechanics, nanotechnology, and renewable energy, reflecting a multidisciplinary approach. Through his academic leadership and editorial roles, Saeid Zeinali Heris has influenced research quality, fostered collaboration across global scientific communities, and advanced knowledge in both fundamental and applied engineering sciences.

Citation Metrics (Scopus)

11000

8000

5000

2000

0

Citations
10,901

Documents
181

h-index
56


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Featured Publications

Dr. Taraneh Jafari Behbahani | Flow Assurance and Paraffin Control | Women Researcher Award

Dr. Taraneh Jafari Behbahani | Flow Assurance and Paraffin Control | Women Researcher Award

Dr. Taraneh Jafari Behbahani | Research Institute of Petroleum Industry | Iran

Dr. Taraneh Jafari Behbahani is an Associate Professor of Chemical Engineering with extensive expertise in chemical process design and flow assurance challenges in the petroleum industry. Her research focuses on understanding, reducing, and preventing wax and asphaltene deposition, as well as gas hydrate formation in oil and gas systems. She has led and contributed to numerous academic and industrial research projects, integrating experimental investigations with advanced theoretical modeling. Her doctoral work introduced a novel multilayer adsorption kinetic model to describe asphaltene deposition in porous media, validated through laboratory data and literature comparisons, resulting in high-impact scientific publications.

Citation Metrics (Scopus)

1200

1000

800

600

400

200

0

Citations
1,158

Documents
56

h-index
17


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Featured Publications