Akash Paul | Sustainable Energy | Best Researcher Award

Best Researcher Award

Akash Paul
Affiliation National Institute of Technology Agartala
Country India
Scopus ID 59439149100
Documents 4
Citations 10
h-index 2
Subject Area Sustainable Energy
Event Environmental Scientists

Akash Paul

National Institute of Technology Agartala, India

Akash Paul is associated with the National Institute of Technology Agartala, India, where his scholarly activities focus on sustainable energy research. His publications contribute to emerging discussions on renewable energy technologies, energy efficiency, and environmentally responsible engineering practices while demonstrating continuous engagement with academic research and scientific dissemination.[1]

Abstract

This article summarizes the academic profile of Akash Paul and highlights research activities in sustainable energy. The overview reflects publication output, scholarly visibility, and research engagement relevant to scientific recognition and professional evaluation.[2]

Keywords

Sustainable Energy, Renewable Energy, Energy Systems, Environmental Engineering, Clean Technology, Green Innovation, Scientific Research, Research Impact.

Introduction

Research in sustainable energy plays a significant role in addressing environmental and energy challenges. Akash Paul’s work contributes to this evolving discipline through scientific studies that support cleaner technologies and improved energy utilization.[3]

Research Profile

The research profile includes four indexed publications, ten citations, and an h-index of two according to available Scopus records. These metrics indicate an emerging academic portfolio with ongoing scholarly development.[1]

Research Contributions

The research contributions primarily relate to sustainable energy applications and environmentally responsible engineering solutions. These studies support broader scientific efforts directed toward efficient energy systems and sustainability-oriented innovation.[4]

Publications

Published research demonstrates participation in peer-reviewed scientific communication and contributes to knowledge within sustainable energy. Continued publication activity strengthens academic visibility and provides opportunities for future research collaboration.[2]

Research Impact

Citation metrics and indexed publications provide measurable evidence of scholarly influence. Although the current research record represents an early career stage, it reflects steady participation in academic research and scientific dissemination.

Award Suitability

Based on publicly available academic indicators, Akash Paul demonstrates research activity consistent with consideration for emerging researcher recognition in sustainable energy. Evaluation for awards should additionally consider originality, scientific quality, and overall research contributions.

Conclusion

The available academic profile presents an active researcher contributing to sustainable energy through peer-reviewed publications and measurable scholarly impact. Continued research productivity and collaboration are expected to further strengthen future academic achievements.

References

  1. Elsevier. (n.d.). Scopus Author Details: Akash Paul, Author ID 59439149100.
    https://www.scopus.com/authid/detail.uri?authorId=59439149100
  2. Google Scholar. (n.d.). Scholar Profile of Akash Paul.
    https://scholar.google.com/citations?user=HjWN_-IAAAAJ&hl=en&oi=ao
  3. Paul, A., Patil, V., Singh, P., Panua, R., & Kumar, S. (2026). Environmental sustainability, entropy generation, energy and exergy analysis of sanitary waste syngas-diesel blends in RCCI combustion mode. Environmental Progress & Sustainable Energy, 45(1), e70116.
    https://aiche.onlinelibrary.wiley.com/doi/abs/10.1002/ep.70116
  4. Paul, A., Singh, P., & Panua, R. (2025). Optimizing hydrogen-rich syngas production from sanitary waste via CO₂ gasification and pyrolysis. Biomass Conversion and Biorefinery, 15(10), 15695–15711.

Mounir Hamid | Renewable energy | Best Researcher Award

Prof. Dr. Mounir Hamid | Renewable energy | Best Researcher Award

Full Professor and head of mechanical engineering Cursus, Mohammadia school of engineers/UM5, Morocco 

Prof. Mounir Hamid is a distinguished mechanical engineering professor at Ecole Mohammadia d’Ingénieurs, Université Mohammed V, Rabat, Morocco. As the Head of the Mechanical Engineering Department, he has played a pivotal role in advancing engineering education and research. With extensive experience in renewable energy systems, mechanical design, and computational fluid dynamics, he has led numerous scientific, pedagogical, and administrative initiatives. His expertise in fuel cell optimization, energy production systems, and industrial automation has significantly contributed to cutting-edge technological advancements in hydrogen energy, solar vehicles, and aerospace engineering.

Profile

Orcid

Education 🎓

Prof. Mounir Hamid has a Doctorate in Mechanics and Energy (2010) from Université Mohammed V, Rabat, where he specialized in energy systems and thermomechanics. Prior to this, he completed a DESA in Mechanics (2007) and an Habilitation Universitaire (2014) at Ecole Mohammadia d’Ingénieurs. His academic journey began with a Diploma in Technical Education (1998) from ENSET Rabat, laying the foundation for his expertise in mechanical engineering, computational modeling, and industrial systems.

Professional Experience 💼

With decades of academic and industry experience, Prof. Mounir has held key scientific, pedagogical, and administrative responsibilities. He has served as the Coordinator of the Mechanical Engineering Department (since 2019), overseeing curriculum development and research initiatives. His contributions include mentoring thesis projects, organizing scientific events, and leading international collaborations. He is also an active jury member for Ph.D. theses and research projects, playing a crucial role in shaping future engineers and researchers.

Research Interests 🔬

Prof. Mounir’s research focuses on fuel cell optimization (PEMFC & SOFC), renewable energy systems, and mechanical system modeling. His expertise extends to aerospace engineering, energy production, and structural durability analysis. As a member of the Energetic Mechanical and Industrial Systems (EMISys) research team, he actively contributes to cutting-edge studies on hydrogen-based energy, wind turbines, and electric vehicle technologies. His work is instrumental in advancing sustainable energy solutions and industrial efficiency.

Awards & Recognitions 🏆

Prof. Mounir has been recognized for his pioneering contributions in engineering research and education. He has received numerous research grants and funding, including leadership roles in H2-Market, Moroccan Solar Race Challenge, and aerospace projects. Additionally, he holds 8 patents for solar vehicle simulators, fuel cell bipolar plates, and automated wind turbine blade orientation systems, showcasing his commitment to innovation and technological development.

Publications 📚

Performance Investigation of PEM Fuel Cell with Three-Pass Serpentine Flow Fields under Varying Operating Voltages, CFD Letters (2024)Read More

Using a 3D CFD Model to Investigate Proton Exchange Membrane Fuel Cell Performance, Heliyon (2024)Read More

Alternative Energy Storage Systems for Electric Vehicles: Review of Conventional and Advanced Technologies, Energy (2024)Read More

Numerical Simulation of Flow in an Axial Turbojet Engine for Avionics System Design, Advances in Science, Technology & Innovation (2024)Read More

Influence of Variable Diameter Rotor on Helicopter Aerodynamics, Lecture Notes in Electrical Engineering (2024)Read More

Conclusion 🏆

Prof. Mounir Hamid is an exceptional candidate for the Best Researcher Award, given his outstanding research contributions, leadership in mechanical and energy engineering, and technological innovations. His work in renewable energy, aerospace, and industrial automation has far-reaching impacts, making him a strong contender for this prestigious recognition. 🚀