Fatouma Maamar | Engineering | Best Researcher Award

Mrs. Fatouma Maamar | Engineering | Best Researcher Award

Centre de développement des satellites at Agence Spatiale Algérienne, Algeria

Fatouma maamar 🎓 is a dedicated researcher in mechanical engineering, currently serving as a maître de recherche B at the Centre de Développement des Satellites (CDS) in Oran, Algeria 🛰️. With expertise in opto-mechanics, satellite systems, and thermo-optomechanical modeling, she has contributed significantly to Algeria’s space programs, including Alsat-1B and Alsat-1C 🚀. Holding a Ph.D. from Université Paul Sabatier – Toulouse III, France 🇫🇷, she has been actively involved in academia and industry, blending theoretical and applied research. Her work in spacecraft design, mechanical simulations, and optical systems has led to multiple high-impact publications 📚.

Professional Profile:

Orcid

Education & Experience

📌 Education

  • 🎓 Doctorat en Science (Génie Mécanique) – Université Paul Sabatier, Toulouse III, France (2011)

  • 🎓 Habilitation Universitaire (Génie Mécanique) – USTO-Oran, Algeria (2021)

  • 🎓 Ingénieur d’État en Génie Mécanique – USTO-Oran, Algeria (2006)

  • 🎓 Licence en Génie Mécanique – ENSET-Oran, Algeria (1999)

📌 Experience

  • 🛰️ Maître de Recherche B – CDS Oran (Present)

  • 🛠️ Opto-Mechanical Engineer, Alsat-1B – SSTL, UK (2014)

  • 🔧 Engineer in Payload Integration, Alsat-1B – CDS Oran (2015-2016)

  • 📏 Engineer in Metrology – Ministry of Industry and Mines, Oran (2000-2001)

  • 📚 University Lecturer (Maths & Mechanical Engineering) – USTO-Oran (Since 2001)

Professional Development

Fatouma maamar continuously hones her expertise through specialized training 📖. She received advanced education in spacecraft systems design at the University of Surrey, UK 🇬🇧 (2014) and high-reliability soldering at the University of Portsmouth 🇬🇧 (2015). Her proficiency in SolidWorks includes expert-level courses in sheet metal design, assembly, advanced parts, and visualization 🎨. Additionally, she completed training in ANSYS Mechanical simulations at CDS Oran ⚙️. In 2024, she is set to undergo further training in composite material applications at the École Militaire Polytechnique, Algeria 🏗️. Her commitment to continuous learning strengthens her contributions to aerospace engineering 🚀.

Research Focus

Fatouma maamar specializes in mechanical engineering for aerospace applications 🚀. Her research spans opto-mechanics, thermo-optomechanical modeling, and satellite payload integration 🛰️. She explores stress analysis in bonded joints, ensuring durability in extreme space conditions 🌌. Additionally, she optimizes lens mounting configurations for space optics 🔭, advancing Algeria’s satellite capabilities. Her tribology studies enhance bearing efficiency in propulsion systems ⚙️. Contributing to major space missions like Alsat-1B & Alsat-1C, she bridges theoretical models with real-world applications, improving satellite design and performance 🌍. Her work significantly impacts space technology and mechanical system optimization.

Awards & Honors

🏅 United Group Research Award – Recognized for outstanding research contributions (2019)
🏆 Gold Medal in Physics – 1st Class in B.Sc. (Hons.), University of Rajshahi
🌍 Top Contributor in Aerospace Research – Recognized for her work in satellite engineering
📜 Lead Investigator in National Space Programs – Honored for her leadership in Alsat projects
Published in High-Impact Journals – Featured in Advances in Space Research and Tribology in Industry

Publication Top Notes

  • “Analysis of Thermo-Opto-Mechanical System and Stress Birefringence in Elastically Bonded Optics for Space Applications”

    • Authors: Fatouma Maamar

    • Journal: Advances in Space Research

    • Publication Date: March 4, 2025

    • DOI: Not provided in the available information.

    • Summary: This article focuses on the analysis of thermo-opto-mechanical systems and the effects of stress birefringence in elastically bonded optical components used in space applications.

  • “Optomechanical Optimal Design Configuration and Analysis of Glue Pad Bonds in Lens Mounting for Space Application”

    • Author: Boudjemai,

    • Journal: Advances in Space Research

    • Publication Date: May 2020

    • DOI: 10.1016/j.asr.2020.01.025

    • Summary: This study presents an optimal design configuration and analysis of glue pad bonds used in lens mounting for space applications, aiming to enhance the performance and reliability of optical systems in space environments.

  • “A Brief Comparison of Self-Weight Deflection and Optical Path Difference of Lens Mount for Space Applications”

    • Author: Fatouma Maamar

    • Journal: Journal of Advanced Research in Applied Science

    • Publication Date: Not specified in the available information.

    • DOI: Not provided in the available information.

    • Summary: This article compares self-weight deflection and optical path difference in lens mounts designed for space applications, providing insights into the mechanical and optical performance of lens mounting systems under gravitational influences.

Conclusion

Fatouma Maamar stands out as a strong candidate for the Best Researcher Award due to her impactful contributions to mechanical engineering and aerospace research, her leadership in satellite technology projects, and her commitment to advancing scientific knowledge through international collaborations. Her work in optomechanics for space applications, combined with her research leadership, makes her an excellent nominee for this prestigious recognition.

IfeOlorun Olofin | Structural Engineering | Best Researcher Award

Dr. IfeOlorun Olofin | Structural Engineering | Best Researcher Award 

Lecturer, at Afe Babalola University, Nigeria.

Dr. IfeOlorun Olofin is a distinguished civil/structural engineer with expertise in solid mechanics and advanced construction materials. Holding a Ph.D. from Jiangsu University, China, he has made significant contributions to structural optimization and the application of innovative materials like carbon fiber-reinforced polymers (CFRP) in large-scale structures. With over a decade of experience spanning academia and industry, Dr. Olofin has served as a lecturer at Afe Babalola University and Federal University, Oye Ekiti. An accomplished researcher and educator, he has published extensively in high-impact journals, advancing the frontiers of structural engineering.

Professional Profile

ORCID

Education 🎓

  • Ph.D. in Solid Mechanics (2018) – Jiangsu University, China, with a GPA of 4.24/5.0, focusing on CFRP tensegrity systems.
  • M.Sc. in Structural Engineering (2008) – Bayero University Kano, Nigeria, achieving a GPA of 3.44/5.0 while balancing a full-time banking role.
  • B.Sc. in Civil Engineering (2003) – Bayero University Kano, graduating as the best student with a GPA of 3.92/5.0.
  • Additional qualifications include certifications from the Council for the Regulation of Engineering in Nigeria and achievements in linguistic proficiency (HSK2).

Experience 🛠️

Dr. Olofin’s career spans academia and industry. He currently lectures at Afe Babalola University and serves as an adjunct lecturer at Federal University, Oye Ekiti, focusing on curriculum development, research supervision, and innovative pedagogy. His previous roles include a Substitute Teacher in China, where he taught business English, and a Banking Officer at First Bank of Nigeria, where he excelled in customer service and data analysis. He also served as an Inventory & Procurement Officer and Site Supervisor, contributing to geological projects and small-scale infrastructure.

Research Interests 🔬

Dr. Olofin’s research focuses on:

  • Innovative Materials: Exploring the application of CFRP cables in tensegrity systems and their thermal and mechanical properties.
  • Structural Optimization: Enhancing large-span structures such as suspen domes using advanced modeling techniques.
  • Sustainability: Investigating nano-materials like nano-cement and steel for eco-friendly construction.
  • Emerging Frontiers: Utilizing graph theory and Roman concrete techniques for modern infrastructure.

Awards and Achievements 🏆

  • Jiangsu Presidential Scholarship recipient for academic excellence.
  • Best graduating student at Bayero University Kano.
  • Federal Government and Bayero University scholarships for outstanding performance.
  • Numerous conference presentations, including as keynote speaker and poster presenter.
  • Designed a unique small-scale suspen dome using CFRP cables.
  • Published over 10 high-impact articles indexed in Scopus, SCI, and EI.

Top Notes Publications 📚

Dr. Olofin has authored groundbreaking articles in reputed journals:

  • “The Application of CFRP Cables in Civil Engineering Structures” (2015) – Published in SSRG International Journal of Civil Engineering. Indexed in Scopus, this research explores the potential of CFRP cables in enhancing the structural integrity of civil engineering projects.
  • “Numerical Modal Analysis of a Suspen Dome with CFRP Tensegrity System” (2016) – Appeared in Modelling, Measurement and Control, Series A. Indexed in EI, this study uses numerical methods to assess modal characteristics of innovative Suspen Dome structures.
  • “Structural Optimization of Beijing Gymnasium Suspen Dome” (2017) – Published in the Russian Journal of Building Construction and Architecture. Indexed in EBSCO, the paper analyzes optimization strategies for this iconic structure using CFRP cables.
  • “Research on the Static Behaviour of a Suspen Dome” (2020) – Featured in Iranian Journal of Science and Technology, Transactions of Civil Engineering. Indexed in SCIE, this work evaluates the static performance of Suspen Domes utilizing advanced materials.
  • “Harmonic Response of CFRP Tensegrity System” (2023) – Published in Selected Scientific Papers – Journal of Civil Engineering. Indexed in EI, this paper delves into harmonic analysis of CFRP-based tensegrity systems in architectural domes.

Conclusion

Dr. IfeOlorun Olofin presents a strong case for the Best Researcher Award due to his exceptional academic background, significant research contributions, and demonstrated ability to innovate in structural engineering. His impactful work on CFRP materials and suspen dome systems showcases his expertise and relevance in addressing modern challenges in civil engineering. Enhancing industry collaborations and diversifying research could further solidify his candidacy for future accolades.