Mohammed Alqahtani | Renewable Energy Technologies | Innovative Research Award

Innovative Research Award

Mohammed Alqahtani
Cranfield University, Saudi Arabia

Mohammed Alqahtani
Affiliation Cranfield University
Country Saudi Arabia
Scopus ID 60075877100
Documents 3
Citations 14
h-index 1
Subject Area Renewable Energy Technologies
Event International Forensic Scientist Awards

Mohammed Alqahtani is a researcher associated with Cranfield University whose documented research profile includes work in renewable energy technologies, manufacturing sustainability, and circular economy integration. His recent research examines how renewable energy sources can be combined with circular economy practices within industrial settings in Saudi Arabia. [1]

Abstract

Alqahtani’s recent research addresses the integration of circular economy practices and renewable energy sources in manufacturing environments. A 2026 open-access article in Sustainable Environment investigated industrial implementation patterns in Saudi Arabia using two focus groups involving ten participants. The study identified four broad integration patterns involving biogas and remanufacturing, solar power and recycling, wind power and reduction practices, and combined solar and wind applications with multiple circular economy practices. [1]

Keywords

  • Renewable energy
  • Circular economy
  • Sustainable manufacturing
  • Industrial sustainability
  • Saudi Arabia

Introduction

The transition toward resource-efficient manufacturing increasingly involves the interaction of circular economy strategies with renewable energy technologies. Alqahtani’s research contributes to this area by examining these interactions within the Saudi manufacturing context. The published study was received in April 2025, accepted in March 2026, and published online on 18 March 2026. [1]

Research Profile

The available research record places Alqahtani’s work at the intersection of renewable energy, sustainable manufacturing, and circular economy implementation. His documented study uses a qualitative research design and focus-group methodology to examine how manufacturers and other stakeholders understand practical integration pathways. The work considers both implementation opportunities and barriers, providing a context-specific perspective on industrial sustainability. [1]

Research Contributions

The study documents eight circular economy practices alongside three renewable energy sources and organizes their implementation into four observed integration patterns. It also identifies human development, infrastructure, economic considerations, and regulatory consistency as reported barriers, while institutional support, stakeholder engagement, technology investment, and financial assistance are reported as facilitators. [1]

Publications

A documented open-access publication is Manufacturers’ implementation of circular economy practices and renewable energy sources in Saudi Arabia’s industrial plants, co-authored with Mohamed Afy-Shararah and Konstantinos Salonitis and published in Sustainable Environment, volume 12, issue 1, article 2644791. [1]

The article is available under a Creative Commons open-access licence. [1]

Research Impact

The supplied Scopus record lists 3 documents, 14 citations, and an h-index of 1 for Scopus Author ID 60075877100. These indicators provide a quantitative snapshot of the indexed research record and should be interpreted in relation to career stage, publication date, subject area, and database coverage. The 2026 publication further provides a documented contribution to the study of renewable energy and circular economy integration in industrial plants. [1]

Award Suitability

The research profile corresponds thematically with an Innovative Research Award because the documented publication investigates the integration of two sustainability-oriented domains—circular economy practices and renewable energy sources—within manufacturing systems. Its focus on Saudi industrial settings, qualitative stakeholder evidence, identified integration patterns, and implementation barriers provides a specific research context for considering innovation in sustainable manufacturing. [1]

Conclusion

Mohammed Alqahtani’s documented research connects renewable energy technologies with circular economy practices in the manufacturing sector. His 2026 publication provides empirical evidence on integration patterns, barriers, and enabling conditions in Saudi Arabia. Together with the supplied bibliometric record, these materials establish a research profile centered on sustainable industrial transformation and renewable energy integration. [1]

References

  1. Alqahtani, M. F., Afy-Shararah, M., & Salonitis, K. (2026). Manufacturers’ implementation of circular economy practices and renewable energy sources in Saudi Arabia’s industrial plants. Sustainable Environment, 12(1), 2644791.
    https://doi.org/10.1080/27658511.2026.2644791
  2. Taylor & Francis. (2026). Sustainable Environment, Volume 12, Issue 1: Manufacturers’ implementation of circular economy practices and renewable energy sources in Saudi Arabia’s industrial plants.
    https://www.tandfonline.com/doi/10.1080/27658511.2026.2644791
  3. Elsevier. (n.d.). Scopus author details: Mohammed Alqahtani, Author ID 60075877100. Scopus.
    https://www.scopus.com/authid/detail.uri?authorId=60075877100
  4. Alqahtani, M. F., Afy-Shararah, M., & Salonitis, K. (2026). Manufacturers’ implementation of circular economy practices and renewable energy sources in Saudi Arabia’s industrial plants. Open-access article record, Sustainable Environment.
    https://www.tandfonline.com/doi/abs/10.1080/27658511.2026.2644791
  5. Taylor & Francis. (2026). Sustainable Environment: Volume 12, Issue 1. Article 2644791, published online 18 March 2026.
    https://www.tandfonline.com/toc/oaes21/12/1

Helena M. Ramos | Renewable Energy Technologies | Innovative Research Award

Innovative Research Award

Helena M. Ramos
Instituto Superior Tecnico, Portugal
Helena M. Ramos
Affiliation Instituto Superior Tecnico
Country Portugal
Scopus ID 35568240000
Documents 282
Citations 6,506
h-index 42
Subject Area Renewable Energy Technologies
Event International Forensic Scientist Awards
ORCID 0000-0002-9028-9711

Helena M. Ramos is a researcher affiliated with Instituto Superior Tecnico in Portugal, recognized for her contributions to renewable energy technologies, hydraulic engineering, and sustainable urban energy systems. Her academic portfolio reflects extensive interdisciplinary research integrating smart energy communities, hydro pumped storage systems, and green hydrogen opportunities within the broader context of energy transition strategies.[1] The recognition associated with the Innovative Research Award highlights her sustained scientific contributions and scholarly impact in engineering and renewable energy innovation.

Abstract

The research activities of Helena M. Ramos primarily focus on renewable energy integration, hydraulic engineering systems, and sustainable urban development models. Her recent studies investigate hybrid smart energy communities and the integration of artificial intelligence and machine learning into energy transition frameworks.[2] These contributions demonstrate an interdisciplinary approach aimed at improving energy efficiency, resilience, and environmental sustainability across urban and remote communities.

Keywords

Renewable Energy Technologies, Smart Energy Communities, Green Hydrogen, Hydro Pumped Storage, Hydraulic Engineering, Sustainable Systems, Machine Learning, Energy Transition.

Introduction

The increasing demand for sustainable energy solutions has intensified research efforts in renewable energy technologies and integrated infrastructure systems. Helena M. Ramos has contributed to this evolving field through studies addressing the operational and strategic dimensions of smart renewable energy communities.[3] Her research combines engineering methodologies with computational decision-making approaches to support energy optimization and long-term sustainability planning.

Research Profile

With 282 indexed publications and more than 6,500 citations, Ramos maintains a strong international research profile in renewable energy and hydraulic systems engineering.[1] Her work spans interdisciplinary collaborations involving urban science, smart infrastructure, and sustainable engineering technologies. The recorded h-index of 42 further indicates consistent scholarly influence and citation impact within the engineering and energy research communities.

Research Contributions

Among her recent contributions are investigations into integrated renewable energy systems utilizing hydro pumped storage and green hydrogen technologies for urban and remote communities.[2] Additional studies examine machine learning applications in smart energy communities and the integration of building information modelling with economic multi-criteria decision-making systems.[4] Her hydraulic engineering assessments concerning peak discharge prediction in earthen pond failures also contribute practical insights relevant to environmental risk management and infrastructure safety.[5]

Publications

  • Integrated Renewable Energy for Urban and Remote Communities: Hybrid Solutions with Hydro Pumped Storage and Green Hydrogen Opportunities, Advanced Sustainable Systems (2026).
  • Integration of Building Information Modelling and Economic Multi-Criteria Decision-Making with Neural Networks: Towards a Smart Renewable Energy Community, Algorithms (2026).
  • Hybrid Smart Energy Community and Machine Learning Approaches for the AI Era in Energy Transition, Eng (2026).
  • Hydraulic Engineering Assessment of Empirical Equations for Predicting Peak Discharge in Small Earthen Pond Failures, Water (2026).

Research Impact

The research output of Ramos contributes to the broader advancement of renewable energy systems and sustainable infrastructure planning. Her publications support emerging policy discussions regarding decentralized energy production, hybrid energy communities, and environmentally responsible engineering practices.[6] The integration of artificial intelligence and neural network methodologies within energy systems research further reflects the evolving technological direction of the discipline.

Award Suitability

The Innovative Research Award under the International Forensic Scientist Awards recognizes individuals demonstrating sustained academic excellence and interdisciplinary scientific advancement. Helena M. Ramos satisfies these criteria through her extensive publication record, measurable research impact, and contributions to renewable energy technologies and sustainable engineering innovation.[1] Her research aligns with global sustainability objectives and supports practical applications in smart energy systems and environmental resilience.

Conclusion

Helena M. Ramos has established a significant academic presence in renewable energy technologies and hydraulic engineering through interdisciplinary and application-oriented research. Her contributions to smart energy communities, hybrid renewable systems, and sustainable infrastructure planning demonstrate continued relevance within global scientific and engineering discussions. The recognition associated with the Innovative Research Award reflects both scholarly productivity and sustained contributions to advancing sustainable technological solutions.

References

  1. Elsevier. (n.d.). Scopus author details: Helena M. Ramos, Author ID 35568240000. Scopus.
    www.scopus.com/authid/detail.uri?authorId=35568240000
  2. Ramos, H. M. (2026). Integrated Renewable Energy for Urban and Remote Communities: Hybrid Solutions with Hydro Pumped Storage and Green Hydrogen Opportunities. Advanced Sustainable Systems.
    doi.org/10.1002/adsu.70512
  3. Ramos, H. M. (2026). Hybrid Smart Energy Community and Machine Learning Approaches for the AI Era in Energy Transition. Eng.
    doi.org/10.3390/eng7040146
  4. Ramos, H. M. (2026). Integration of Building Information Modelling and Economic Multi-Criteria Decision-Making with Neural Networks: Towards a Smart Renewable Energy Community. Algorithms.
    doi.org/10.3390/a19050327
  5. Ramos, H. M. (2026). Hydraulic Engineering Assessment of Empirical Equations for Predicting Peak Discharge in Small Earthen Pond Failures. Water.
    doi.org/10.3390/w18050548
  6. Ramos, H. M. (2026). Strategic Modeling of Hybrid Smart Micro Energy Communities: A Decision-Oriented Approach. Urban Science.
    doi.org/10.3390/urbansci10020107

Deepam Goyal | Renewable Energy Technologies | Best Researcher Award

Dr. Deepam Goyal | Renewable Energy Technologies | Best Researcher Award

Chitkara University Punjab | India

Dr. Deepam Goyal is an accomplished Assistant Professor at Chitkara University, Punjab, with a Ph.D. in Mechanical Engineering. Renowned for his commitment to academic excellence, he actively mentors doctoral scholars, leads the Chitkara University Doctoral Consortium, and facilitates interdisciplinary collaborations. His expertise spans renewable energy, combustion, machine fault diagnosis, and education technologies. With 42 journal publications, 20 patents, and editorial roles in reputed conferences and journals, Dr. Goyal has emerged as a key figure in advancing research and innovation.

Professional profile👤

Google Scholar

Scopus

ORCID

Strengths for the Awards✨

Dr. Deepam Goyal exhibits a robust and well-rounded research profile characterized by both depth and diversity. His citation count—3036 on Google Scholar and 2185 on Scopus—clearly reflects the high impact and relevance of his research. His inclusion in the World’s Top 2% Scientists by Stanford University underscores global recognition and academic excellence. Dr. Goyal’s strong publication record (42 indexed journal articles), two ISBN-registered books, and an impressive 20 patents (10 granted) showcase a productive career in innovation and applied research. Additionally, his editorial involvement, academic collaborations across reputed national and international institutions, and leadership in doctoral consortia further elevate his research standing.

His active mentorship, interdisciplinary work involving AI, manufacturing technologies, and sustainable practices, and his consistent contributions to digital transformation in education demonstrate visionary thinking and research leadership. His awards from leading organizations such as the Department of Science & Technology (INSPIRE Fellowship), CII (Gold MILCA), and various academic institutions further highlight his academic credibility and industry relevance.

🎓 Education

Dr. Goyal earned his Ph.D. in Mechanical Engineering, building upon a strong academic foundation that includes a Gold Medal in his M.E. from Panjab University, Chandigarh. His consistent academic excellence is marked by distinctions such as the Dr. S P Luthra Memorial Gold Medal and Certificate of Merit from NITTTR Chandigarh.

💼 Experience

With extensive academic and administrative experience, Dr. Goyal plays a pivotal role in shaping research culture at Chitkara University. He coordinates PhD coursework, viva-voce sessions, and expert evaluations, and collaborates with IITs, NITs, and international institutions. He has worked with CRC Press and Taylor & Francis, contributing as an editor and reviewer. His involvement in program committees like SPIE and doctoral boards highlights his influence in academia.

🔬 Research Interests On Renewable Energy Technologies

Dr. Goyal’s research interests lie at the intersection of Mechanical Engineering and emerging technologies. His focus areas include manufacturing technology, vibration dynamics, condition monitoring, machine fault diagnosis, sensors, machine learning, and optimization. He continuously explores innovative solutions for sustainable engineering and digital transformation.

🏆 Awards

Dr. Goyal has been recognized globally and nationally for his contributions. He is among the World’s Top 2% Scientists (Stanford University), recipient of the INSPIRE Fellowship (Govt. of India), and winner of the Gold MILCA Award (CII). Other accolades include the Dr. S P Luthra Memorial Gold Medal, Best Research Paper Award, and even the Best Table Tennis Player Award from NITTTR Chandigarh.

📚 Publications

  • The vibration monitoring methods and signal processing techniques for structural health monitoring: a review
    Authors: D. Goyal, B.S. Pabla
    Year: 2016
    Citations: 577

  • Condition monitoring and fault diagnosis of induction motors: A review
    Authors: A. Choudhary, D. Goyal, S.L. Shimi, A. Akula
    Year: 2019
    Citations: 344

  • Infrared thermography-based fault diagnosis of induction motor bearings using machine learning
    Authors: A. Choudhary, D. Goyal, S.S. Letha
    Year: 2020
    Citations: 225

  • Condition based maintenance of machine tools—A review
    Authors: D. Goyal, B.S. Pabla
    Year: 2015
    Citations: 219

  • Support vector machines based non-contact fault diagnosis system for bearings
    Authors: D. Goyal, A. Choudhary, B.S. Pabla, S.S. Dhami
    Year: 2020
    Citations: 188

  • Condition Monitoring Parameters for Fault Diagnosis of Fixed Axis Gearbox: A Review
    Authors: D. Goyal, B.S. Pabla, S.S. Dhami
    Year: 2016
    Citations: 109

  • Condition based maintenance of bearings and gears for fault detection–A review
    Authors: S. Kumar, D. Goyal, R.K. Dang, S.S. Dhami, B.S. Pabla
    Year: 2018
    Citations: 94

  • Non-contact fault diagnosis of bearings in machine learning environment
    Authors: D. Goyal, S.S. Dhami, B.S. Pabla
    Year: 2020
    Citations: 71

  • Machine Learning‐Based Fault Diagnosis of Self‐Aligning Bearings for Rotating Machinery Using Infrared Thermography
    Authors: A. Mehta, D. Goyal, A. Choudhary, B.S. Pabla, S. Belghith
    Year: 2021
    Citations: 66

  • Intelligent predictive maintenance of dynamic systems using condition monitoring and signal processing techniques—A review
    Authors: D. Goyal, A. Saini, S.S. Dhami, B.S. Pabla
    Year: 2016
    Citations: 61

  • Development of non-contact structural health monitoring system for machine tools
    Authors: D. Goyal, B.S. Pabla
    Year: 2016
    Citations: 55

🔚 Conclusion

Dr. Deepam Goyal stands out as a dynamic researcher and academic leader, whose contributions have significantly influenced the fields of mechanical engineering, diagnostics, and digital education. His recognition among the world’s top scientists and a proven record of patents, publications, and awards underscore his eligibility for the Best Researcher Award. With a passion for innovation and collaborative excellence, Dr. Goyal continues to inspire the next generation of forensic and engineering professionals.