Olumide Ogunmodimu | Minerals Engineering | Innovative Research Award

Innovative Research Award

Olumide Ogunmodimu
Affiliation EME/PSU
Country United States
Scopus ID 57189232156
Documents 16
Citations 214
h-index 6
Subject Area Energy and Minerals Engineering
Event International Academic Achievements & Awards
ORCID 0000-0001-7186-7005

Olumide Ogunmodimu

EME/PSU, United States

Olumide Ogunmodimu is affiliated with EME/PSU in the United States and has developed a scholarly profile in the fields of energy engineering, mineral processing, sustainable materials, thermal energy storage, and applied engineering research. His publication portfolio demonstrates interdisciplinary work connecting materials characterization, industrial by-product utilization, energy systems, and engineering analysis. According to the available Scopus metrics, his research output includes 16 indexed publications with 214 citations and an h-index of 6, reflecting measurable academic engagement within his research community.[1]

Abstract

This article presents an overview of the academic profile of Olumide Ogunmodimu in relation to the Innovative Research Award. His published research addresses sustainable utilization of industrial materials, thermal energy storage technologies, engineering mechanics, sedimentology, and energy infrastructure. The body of work emphasizes environmentally responsible engineering solutions supported by computational analysis, laboratory experimentation, and interdisciplinary collaboration. Recent publications demonstrate continuing contributions to renewable energy systems, thermal storage materials, and mineral engineering research.[1][2]

Keywords

Thermal Energy Storage, Steelmaking Slag, Copper Slag, Minerals Engineering, Energy Engineering, Sustainable Materials, Renewable Energy, Applied Engineering Research

Introduction

Research in sustainable engineering increasingly integrates waste valorization, renewable energy technologies, and advanced computational analysis to address industrial and environmental challenges. Olumide Ogunmodimu’s publications reflect these priorities through investigations into thermal energy storage, building energy systems, geoscience, mineral processing, and engineering design. His interdisciplinary approach contributes to scientific understanding while supporting practical engineering applications.[2]

Research Profile

The research profile encompasses energy and minerals engineering with emphasis on sustainable resource utilization, thermal storage technologies, industrial waste recycling, and applied computational analysis. Publications appearing in internationally recognized journals demonstrate engagement with multidisciplinary engineering topics including Solar Energy, Powder Technology, International Journal of Sediment Research, Discover Applied Sciences, and the International Journal of Energy Research.[3]

Research Contributions

  • Evaluation of steelmaking slags for high-temperature thermal energy storage applications.
  • Engineering analysis of stress distribution in vertical stirred mills using multiscale modelling.
  • Sedimentological reconstruction of Late Cretaceous paleoenvironments in the Anambra Basin.
  • Development of underwater computing concepts powered by floating solar energy systems.
  • Integration of copper slag into thermally active building foundations for underground energy storage.

Publications

  1. Comparative physicochemical and thermal stability screening of steelmaking slags for high-temperature thermal energy storage applications. Solar Energy (2026). DOI: 10.1016/j.solener.2026.114865
  2. Stress distribution and analysis in a vertical stirred mill: A multiscale analysis. Powder Technology (2026). DOI: 10.1016/j.powtec.2026.122946
  3. Reconstructing paleoenvironments of the late Cretaceous sequence in the Anambra Basin, Nigeria. International Journal of Sediment Research (2026). DOI: 10.1016/j.ijsrc.2026.06.001
  4. Underwater computing platforms with split architecture with operation via submersible floating solar power systems. Discover Applied Sciences (2026). DOI: 10.1007/s42452-026-08642-w
  5. Integrating Copper Slag Into Thermally Active Building Foundations: A Pathway to Sustainable Underground Energy Storage Systems. International Journal of Energy Research (2026). DOI: 10.1155/er/5370108

Research Impact

The available bibliometric indicators indicate continuing scholarly engagement through indexed publications, citations, and collaborative engineering research. The integration of sustainable materials, renewable energy technologies, and engineering innovation demonstrates relevance to contemporary scientific priorities involving decarbonization, resource efficiency, and industrial sustainability.[1]

Award Suitability

Based on the documented publication record, interdisciplinary engineering contributions, Scopus-indexed research activity, and measurable citation profile, Olumide Ogunmodimu demonstrates characteristics consistent with consideration for an Innovative Research Award. His published studies illustrate sustained investigation into practical engineering challenges while promoting sustainable technologies and resource-efficient solutions across multiple engineering disciplines.[1][2]

Conclusion

Olumide Ogunmodimu’s scholarly record reflects active participation in engineering research involving sustainable materials, thermal energy systems, and applied engineering analysis. His publication portfolio, citation performance, and interdisciplinary research themes collectively support recognition within academic award programs that acknowledge innovation, scientific quality, and contributions to engineering research.[1]

References

  1. Elsevier. (n.d.). Scopus Author Details: Olumide Ogunmodimu, Author ID 57189232156. Scopus. https://www.scopus.com/authid/detail.uri?authorId=57189232156
  2. Ogunmodimu, O., et al. (2026). Comparative physicochemical and thermal stability screening of steelmaking slags for high-temperature thermal energy storage applications. Solar Energy.
    DOI: https://doi.org/10.1016/j.solener.2026.114865
  3. Ogunmodimu, O., et al. (2026). Stress distribution and analysis in a vertical stirred mill: A multiscale analysis. Powder Technology.
    DOI: https://doi.org/10.1016/j.powtec.2026.122946
  4. Ogunmodimu, O., et al. (2026). Reconstructing paleoenvironments of the late Cretaceous sequence in the Anambra Basin, Nigeria: New insights from grain texture and morphology. International Journal of Sediment Research.
    DOI: https://doi.org/10.1016/j.ijsrc.2026.06.001
  5. Ogunmodimu, O., et al. (2026). Underwater computing platforms with split architecture with operation via submersible floating solar power systems. Discover Applied Sciences.
    DOI: https://doi.org/10.1007/s42452-026-08642-w

Mr. Nyora Kobare | Geochemistry | Young Researcher Award

Mr. Nyora Kobare | Geochemistry | Young Researcher Award

Mr. Nyora Kobare | Geochemistry – PhD at Kyoto University, Japan

Nyora Donald Kobare is a dynamic and emerging Tanzanian researcher specializing in geothermal energy and applied geosciences. He has developed a strong reputation for his commitment to sustainable energy research, academic excellence, and international collaboration. With a robust educational background, hands-on field experience, and contributions to both academia and consultancy, Kobare demonstrates the rare combination of theoretical insight and practical implementation. His work bridges African and global geothermal contexts, making him a valuable asset in the pursuit of clean energy solutions.

Profile Verified:

Google Scholar

Education:

Kobare holds a Bachelor of Science in Applied Geology from the University of Dodoma, where he graduated as the top student in his cohort. He pursued a Master of Science in Geothermal Engineering (specializing in Geothermal Exploration) from the Bandung Institute of Technology in Indonesia, earning a Cum Laude distinction. Currently, he is a PhD candidate at Kyoto University, Japan, in the field of Geothermal Engineering and Exploration. His educational path reflects dedication to deepening expertise in renewable energy and geoscientific research across top-tier institutions.

Experience:

Over the years, Kobare has gained rich experience through academic, research, and consultancy roles. He has conducted advanced geological mapping, geothermal feasibility studies, and diamond core logging across Tanzania and Indonesia. He has supervised undergraduate students during field training and is actively engaged in geothermal mapping projects. At the University of Dar es Salaam, he serves as Deputy Director of Postgraduate Studies and Newsletter Coordinator at the School of Mines and Geosciences. Additionally, he has held technical and editorial roles in major geothermal workshops and committees, further solidifying his leadership in geoscience development.

Research Interests:

Kobare’s research interests include geothermal geochemistry, volcanology, hydrothermal alteration, and hydrology. His work focuses on understanding fluid origin, subsurface thermodynamic processes, and recharge mechanisms in volcanic geothermal systems. He also explores how geological and geochemical data can be integrated to improve geothermal exploration strategies. These interests not only guide his current doctoral research but also contribute to long-term goals of sustainable energy and earth resource development.

Awards and Recognition:

Kobare has received multiple awards for academic excellence, including best student honors during his undergraduate years in geology and overall best finalist at the University of Dodoma. He has been awarded certificates for participation in high-level geothermal workshops, webinars, and guest lectures held by institutions such as ITB, RIGSIS, and the British Geological Survey. These recognitions reflect his ongoing pursuit of academic and professional growth in the geothermal sector.

Selected Publications πŸ“š:

  1. πŸ“˜ Geochemical Investigation on the Implications of Fluid Origin, Subsurface Processes and Recharge on the Tangkuban Perahu Geothermal Conceptual Model – Geothermics, 2023, cited by 12 articles.
  2. πŸ“— Volcanostratigraphic Approach and its Implication for Geothermal Evaluation in Talang Volcano, West Sumatra – IOP Conf. Ser.: Earth and Environmental Science, 2021, cited by 8 articles.
  3. πŸ“™ Feasibility Study of the Ulumbu Geothermal Working Area, Nusa Tenggara Timur, Indonesia – ITB Proceedings, 2020, cited by 5 articles.
  4. πŸ“• Geological Report on Kwamsangazi Migmatite Gneiss in Handeni-Tanga – Technical Report, 2017, cited by 3 articles.
  5. πŸ“˜ Geological Evaluation of Nala Granite in Dodoma – Consultancy Report, 2017, cited by 2 articles.
  6. πŸ“— Integrating Geology, Geochemistry, and Geophysics for COβ‚‚ Accumulation Zones – Tanzania Journal of Earth Sciences, 2022, cited by 6 articles.
  7. πŸ“™ Pedagogical Approaches in Higher Learning Geoscience Programs – UDSM Workshop Paper, 2021, cited by 4 articles.

Conclusion:

Nyora Donald Kobare’s contributions reflect a well-rounded profile of academic brilliance, field application, and professional commitment to the advancement of geothermal science. His scholarly focus, practical achievements, and leadership roles within both national and international contexts make him a worthy candidate for the Young Researcher Award. With his continued passion and vision, Kobare is poised to make long-lasting impacts in geoscience education and renewable energy development, especially within the African continent.

 

 

Mr. Mohammad Hossein Aghahadi | Geochemistry | Best Researcher Award

Mr. Mohammad Hossein Aghahadi | Geochemistry | Best Researcher Award

Mr. Mohammad Hossein Aghahadi | Geochemistry – PhD Student at University of Tehran, Iran

​Mohammad Hossein Aghahadi is a prominent figure in the realm of mining engineering, currently advancing his doctoral studies at the School of Mining Engineering, University of Tehran. His academic and research pursuits are deeply rooted in the integration of machine learning methodologies with geochemical data analysis, aiming to revolutionize mineral exploration techniques.

Profile:​

Orcid | Scopus

Education:

In September 2023, Aghahadi commenced his PhD journey at the University of Tehran, focusing on mining engineering. This strategic move underscores his dedication to pioneering advancements in geochemical data analysis and mineral exploration.​

Research Interests:

Aghahadi’s research is primarily centered on the application of machine learning techniques to geochemical data analysis. His work aims to enhance the accuracy of mineral prospectivity mapping and geochemical anomaly detection, contributing significantly to the efficiency of mineral exploration processes.​

Publications:

Throughout his academic career, Aghahadi has contributed to several notable publications:​

  1. “Enhancing regional-scale Pb–Zn prospectivity mapping through data augmentation: Joint application of unsupervised random forests and convolutional neural network” (2025)​
    • Journal: Earth Science Informatics​
    • DOI: 10.1007/s12145-025-01843-8​
    • Citation: This article has been cited by multiple subsequent studies, reflecting its impact on the field.​
  2. “Geochemical anomaly separation based on geology, geostatistics, compositional data and local singularity analyses: A case study from the kuh panj copper deposit, Iran” (2024)​
    • Journal: Applied Geochemistry​
    • DOI: 10.1016/j.apgeochem.2024.106135​
    • Citation: This research has informed various subsequent analyses in geochemical anomaly detection.​
  3. “Spatial Clustering of Primary Geochemical Halos Using Unsupervised Machine Learning in Sari Gunay Gold Deposit, Iran” (2024)​
    • Journal: Mining, Metallurgy & Exploration​
    • DOI: 10.1007/s42461-024-01065-4​
    • Citation: The methodologies presented have been referenced in studies focusing on geochemical clustering techniques.​

Conclusion:

Mohammad Hossein Aghahadi’s scholarly endeavors exemplify a harmonious blend of geological expertise and data science acumen. His publications not only advance the understanding of geochemical processes but also introduce innovative methodologies for data analysis in mineral exploration. His ongoing PhD research holds promise for further contributions to the mining engineering sector, particularly in enhancing the efficiency and precision of geochemical analyses.