Oluwasegun Joseph Ogunmola | Thermal Management Systems | Innovative Research Award

Innovative Research Award

Oluwasegun Joseph Ogunmola
Affiliation Ladoke Akintola University Of Technology, Ogbomoso.
Country Nigeria
Documents 23
Citations 55
h-index 5
Subject Area Thermal Management Systems
Event Global Automobile Award
ORCID 0009-0003-6519-0298

Oluwasegun Joseph Ogunmola

Ladoke Akintola University Of Technology, Ogbomoso., Nigeria

The Innovative Research Award recognizes scholarly contributions that demonstrate meaningful advancement within specialized research domains. This article summarizes the academic profile, publication record, research activities, and professional achievements of Oluwasegun Joseph Ogunmola in the field of thermal management systems. The information is presented in a neutral encyclopedic format using publicly available scholarly indicators and reference sources.[1]

Abstract

Oluwasegun Joseph Ogunmola is a researcher affiliated with Ladoke Akintola University Of Technology, Ogbomoso, Nigeria, whose scholarly work primarily addresses thermal management systems and related engineering applications. His publication portfolio demonstrates sustained participation in scientific research supported by measurable citation performance and an established h-index. The available bibliometric indicators suggest continued engagement in collaborative research and academic dissemination through peer-reviewed publications. These achievements contribute to ongoing developments within engineering research while reflecting professional commitment to scientific advancement, innovation, knowledge sharing, and practical solutions addressing thermal performance challenges in modern technological systems.[1][2]

Keywords

Thermal Management Systems, Engineering Research, Scientific Publications, Scopus, Research Impact, Innovation, Heat Transfer, Sustainable Engineering.

Introduction

Thermal management systems remain an essential research area supporting efficient engineering design, energy optimization, and technological sustainability. Academic investigations within this field contribute to improved system reliability, operational efficiency, and innovative engineering solutions through evidence-based scientific methodologies and interdisciplinary collaboration.[2]

Research Profile

The researcher has produced twenty-three indexed publications with fifty-five recorded citations and an h-index of five. These bibliometric indicators reflect consistent scholarly participation and continuing engagement in engineering research focused on thermal management systems and associated technological applications.[1]

Research Contributions

Research activities emphasize thermal performance improvement, engineering analysis, and scientific evaluation of heat management techniques. These studies contribute to broader engineering knowledge by supporting efficient design approaches, encouraging innovation, and expanding practical understanding through peer-reviewed scientific investigations.[2]

Publications

  • Twenty-three scholarly publications indexed through recognized academic databases.
  • Research focuses primarily on thermal management systems and engineering applications.
  • Publications contribute to scientific communication through peer-reviewed literature.

Research Impact

Citation metrics indicate that published studies have received recognition within the scholarly community. While bibliometric measures represent only one aspect of academic influence, they provide quantitative evidence of research visibility, dissemination, and engagement among researchers working within related engineering disciplines.[1]

Award Suitability

Available scholarly indicators, publication activity, institutional affiliation, and specialization in thermal management systems collectively demonstrate a sustained academic profile. These characteristics align with evaluation criteria commonly considered for research recognition programs emphasizing innovation, scientific productivity, and professional contributions.[3]

Conclusion

Oluwasegun Joseph Ogunmola maintains an active scholarly profile through research, publications, and measurable academic impact. Continued contributions to thermal management systems strengthen ongoing engineering knowledge while supporting future scientific collaboration, innovation, and evidence-based technological development within the broader research community.[1]

References

  1. Elsevier. (n.d.). Scopus author details: Oluwasegun Joseph Ogunmola. Scopus.
    https://www.scopus.com/
  2. Global Automobile Award. (n.d.). Award Information.
    https://automobileaward.com/

Prof. Dr. Cherng-Yuan Lin | Emission Control Technologies | Editorial Board Member

Prof. Dr. Cherng-Yuan Lin | Emission Control Technologies | Editorial Board Member

Distinguished Professor and Chairman  |   National Taiwan Ocean University College of Maritime Science and Engineering   |  Taiwan

Prof. Dr. Cherng-Yuan Lin is a distinguished researcher and academic leader known for impactful contributions to energy and marine engineering. His professional experience includes senior academic leadership roles, international visiting appointments, and editorial responsibilities in high-impact journals, reflecting strong global recognition. His research interests center on alternative fuels, combustion science, nanoscience, biodiesel, marine algae-based energy systems, and clean energy technologies for transportation and maritime applications. His research skills encompass fuel characterization, combustion analysis, nanomaterials development, photocatalysis, and interdisciplinary energy systems integration. His awards and honors include prestigious international fellowships, lifetime achievement recognition, and repeated listing among the world’s top scientists, underscoring sustained excellence, innovation, and leadership in sustainable energy research. He has achieved 3,263 Citations,  97  Documents  30 h-index.

Citation Metrics (Scopus)

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3,263
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97
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30
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Top 5 Publications

Saint Jacques Le-Majeur MANDELOT-MATETELOT | Powertrain Engineering | Best Innovation Award

Saint Jacques Le-Majeur MANDELOT-MATETELOT | Powertrain Engineering | Best Innovation Award

Research Scholar  |  Pan African University  |  Central African Republic

Mr. Saint Jacques Le-Majeur Mandelot-Matelot is an accomplished civil engineer and academic professional recognized for his expertise in construction management, structural engineering, and sustainable materials. With a strong foundation in civil engineering and extensive leadership experience, he has served as Managing Director of La-Résurrection, overseeing major national and international construction projects involving design, renovation, and structural optimization. His academic and professional trajectory reflects a deep commitment to enhancing infrastructure resilience and sustainability, particularly through his research on the “Effect of Ronier Fiber and Silica Fume on Mechanical and Durability Properties of High-Strength Concrete,” which explores innovative material technologies for high-performance concrete. His research interests focus on advanced construction materials, sustainable infrastructure development, project management, and water and sanitation systems. Skilled in AutoCAD, ArchiCAD, Revit, Artlantis, and Robot, he demonstrates proficiency in structural analysis, geotechnical design, and hydraulic engineering. Beyond his technical expertise, he possesses strong managerial and entrepreneurial capabilities, excelling in tender preparation, cost analysis, and multidisciplinary team coordination. His teaching experience at the University of Bangui highlights his dedication to knowledge transfer, mentoring students in both theoretical and practical aspects of civil engineering. He has published peer-reviewed research articles in reputed journals such as ETASR and Wiley, reflecting his growing contribution to scientific advancement. His professional affiliations with the Order of Civil Engineers of the Central African Republic and the Central African Entrepreneurs Association further underscore his leadership in the engineering community. Among his professional development achievements are certifications in entrepreneurship, innovation, crisis management, and leadership. Through his blend of academic rigor, field experience, and innovation-driven mindset, Mandelot-Matelot continues to contribute to the advancement of sustainable construction and infrastructure systems in Africa and beyond. He has acheived 2 Publications.

 

Profiles:  ORCID | Research Gate

Featured Publications

Mandelot-Matelot, S. J. L., Mogire, P., & Odero, B. (2025, March). Performance of alkali treated and untreated Ronier fiber (Borassus aethiopum) on mechanical and durability properties of reinforced concrete. Engineering Reports, 7(3).

Mandelot-Matelot, S. J. L., Mogire, P., & Odero, B. (2025, January 9). Mechanical and durability assessment of concrete reinforced with treated and untreated Ronier fiber (Borassus aethiopum) [Preprint].

Kristaq Hazizi | Automotive Engineering | Best Researcher Award

Dr. Kristaq Hazizi | Automotive Engineering | Best Researcher Award

Lecturer in Mechanical and Automotive Engineering  | Coventry University | United Kingdom

Dr. Kristaq Hazizi is a Lecturer in Mechanical and Automotive Engineering at Coventry University, with over 15 years of combined academic and industry experience dedicated to advancing sustainable automotive technologies. He earned his Ph.D. in Automotive Engineering from Coventry University in 2013, where his doctoral research centered on advanced engine simulation and alternative fuels to enhance efficiency and reduce emissions. Professionally, Dr. Hazizi has contributed to both academia and industry by leading research projects on engine modeling, combustion optimization, and the integration of renewable fuels into modern powertrain systems. His research interests lie in engine simulation, hybrid propulsion systems, and low-carbon transportation, areas that align with global efforts to achieve cleaner and more efficient mobility solutions. His research skills include advanced numerical modeling, computational fluid dynamics (CFD), thermodynamic analysis, and applied experimental testing for engine performance evaluation. Dr. Hazizi has successfully secured competitive research funding and has collaborated with international teams to promote sustainable energy solutions. His publications appear in reputed IEEE and Scopus-indexed journals and conference proceedings, reflecting a growing influence in the automotive engineering field. In addition to research, he is an active mentor to students, guiding projects and theses in sustainable mobility, and has contributed to professional communities as a member of IEEE and SAE. Dr. Hazizi has received recognition for his academic excellence and contributions to advancing green automotive technologies, including institutional awards for research innovation and teaching. His dedication to bridging research with practical applications demonstrates his commitment to both scientific advancement and societal impact. With a vision to expand international collaborations and publish in more high-impact journals, Dr. Hazizi continues to shape the future of sustainable transportation research, with 17 citations, 4 published documents, and an h-index of 2.

Profiles:  Scopus | ORCID | Google Scholar

Featured Publications

Hazizi, K., & Ghahleeh, M. (2023). Design and analysis of a typical vertical pressure vessel using ASME code and FEA technique. Infrastructures, 7(3), 78. Cited by: 22

Hazizi, K., Ramezanpour, A., Costall, A., & Asadi, M. (2019). Numerical analysis of a turbocharger compressor. E3S Web of Conferences, 95, 04008. Cited by: 6

Gophane, I., Dharashivkar, N., Mulik, P., & Patil, P. (2024). Analysis of pressure vessel. Indian Journal of Science and Technology, 17(12), 1148–1158. Cited by: 2

Hazizi, K., Ghahleeh, M., & Rasool, S. (2023). Analytical and numerical investigation of fatigue life in rectangular plates with opposite semicircular edge single notches. Applied Engineering, 4(3), 948–973. Cited by: 1

Hazizi, K., Ghahleeh, M., & Rasool, S. (2023). Analytical and numerical investigation of fatigue life in rectangular plates with opposite semicircular edge single notches. Preprints, 2023080788. Cited by: 1