Muhammad Aqeel | Structural Analysis | Best Researcher Award

Dr Muhammad Aqeel | Structural analysis | Best Researcher Award

Associate Profeesor, Jiangsu Maritime Institute, China

Dr. Muhammad Aqeel is an accomplished Associate Professor at Jiangsu Maritime Institute, Nanjing, China, specializing in Naval Architecture and Intelligent Manufacturing. With a Ph.D. in Mechanical Engineering (Thermal Engineering) from North China Electric Power University, Beijing, he has extensive expertise in wind turbine blade optimization, fluid-structure interaction, and renewable energy systems. Previously, he served as an Assistant Professor at the Institute of Space Technology, Islamabad, Pakistan, where he contributed to teaching, research, and lab development. His industrial experience includes roles as an O&M Engineer at Ecopack Limited, focusing on thermal power plant operations. Dr. Aqeel has published numerous high-impact journal articles, secured a patent, and received accolades for his teaching and research excellence. His work bridges theoretical innovation and practical applications in energy systems, fluid dynamics, and structural health monitoring.

Professional Profile

Google Scholar

Scopus

Education  🎓

  • Ph.D. in Mechanical Engineering (Thermal Engineering), North China Electric Power University, Beijing, China (2016–2020). Dissertation: The Interaction Theory of Flowing Air and Wind Turbine Blade and Its Application.
  • Master of Sciences in Energy Management, COMSATS Institute of Information Technology, Islamabad, Pakistan (2013–2015). Dissertation: Synthetic Natural Gas: An Alternative Energy Option for Natural Gas.
  • Bachelor’s in Mechanical Engineering Technology (Honors), Preston University, Islamabad, Pakistan (2007–2011). Final Project: Design and Fabrication of a Vertical-Axis Wind Turbine.
  • Recipient of the Chinese Government Scholarship (2016–2020) and Merit Scholarship during MS studies.

Experience 💼

  • Associate Professor, Jiangsu Maritime Institute, Nanjing, China (2023–Present). Teaching mechanical engineering courses and conducting research in naval architecture and intelligent manufacturing.
  • Assistant Professor, Institute of Space Technology, Islamabad, Pakistan (2016–2023). Taught mechanical engineering courses, supervised thesis projects, and developed labs (e.g., Fluid Mechanics, Statics, and Dynamics).
  • Lecturer, Swedish College of Engineering and Technology, Pakistan (2015–2016). Delivered courses and assisted in research proposal development.
  • O&M Engineer, Ecopack Limited, Pakistan (2009–2014). Managed operations and maintenance of thermal power plant equipment, including steam turbines, boilers, and heat exchangers.

Awards and Honors 🏆

  • Best Teaching Award, Institute of Space Technology, Islamabad, Pakistan.
  • Study Excellence Certificate, North China Electric Power University, Beijing, China.
  • Chinese Government Scholarship (4 years) for Ph.D. studies.
  • Merit Scholarship during MS studies at COMSATS Institute of Information Technology.
  • Secured Technology Development Fund (TDF) worth 14 million PKR from the Higher Education Commission, Pakistan.
  • Recognized for organizing international conferences on Robotics, Artificial Intelligence, and Applied Science & Engineering.

Research Focus 🔬

Dr. Aqeel’s research focuses on thermal engineering, fluid-structure interaction, and renewable energy systems. His work includes:

  • Optimizing wind turbine blade design for improved aerodynamic performance and energy conversion.
  • Developing theoretical models for blade chord and twist angle optimization.
  • Investigating fluid dynamics in wind turbines and heat exchangers.
  • Exploring structural health monitoring using flexible strain sensors.
  • Analyzing soil erosion on steep hills and its environmental impact.
  • Contributing to chaos theory and synchronization in dynamical systems.

Publication Top Notes 📚

  1. Soil erosion on steep hills with varying vegetation patterns [J] Physics of Fluids (2025).
  2. Development of AgNPs-PVP/TPU based flexible strain sensors for structural health monitoring [J] Results in Engineering (2024).
  3. Integer and fractional order analysis of a 3D system and generalization of synchronization [J] Chaos, Solitons & Fractals (2022).
  4. Generation of Multidirectional Mirror Symmetric Multiscroll Chaotic Attractors [J] Chaos, Solitons & Fractals (2022).
  5. Theoretical prediction of wear of disc cutters in tunnel boring machines [J] Journal of Rock Mechanics and Geotechnical Engineering (2018).
  6. Dynamical and fractal properties in periodically forced stretch-twist-fold flow [J] Chinese Journal of Physics (2017).
  7. Analogy Theory and application of pressure difference of wind turbine blade profile [J] Journal of Harbin Institute of Technology (2020).
  8. Study on characteristics of the interaction between flowing air and wind turbine blade [J] Journal of China Institute of Water Resources and Hydropower Research (2017).
  9. New Theory and Method for Improving Utilization and Conversion Rate of Wind Turbine [J] Journal of Basic Science and Engineering (2017).
  10. Force analysis of fan blade surface based on Wilson method [C] 14th Annual Academic Exchange Conference of North China Electric Power University (2017).
  11. SNG and N2 comparison and Alternative energy option [C] 1st International Conference on Energy Systems for Sustainable Development (2015).

Conclusion 🌟

Dr. Muhammad Aqeel is a distinguished academic and researcher with a strong background in mechanical engineering, thermal systems, and renewable energy. His contributions to wind turbine optimization, fluid dynamics, and structural health monitoring have been widely recognized through high-impact publications, patents, and awards. With a blend of industrial and academic experience, he continues to drive innovation in energy systems and engineering education, making significant strides in sustainable technology development.

Mohammad Rasul Givkashi – Concrete technology – Best Researcher Award

Mohammad Rasul Givkashi - Concrete technology - Best Researcher Award

Amirkabir University of Technology Department of Civil Engineering - Iran

AUTHOR PROFILE

GOOGLE SCHOLAR

RESEARCH INTERESTS

MohammadRasul Givkashi, a distinguished scholar at Amirkabir University of Technology, has dedicated his research to advancing the field of civil engineering. His primary interests include new construction technologies, innovative construction materials, green and smart buildings, 3D printing of buildings, and special concretes. His work focuses on enhancing the sustainability, efficiency, and durability of construction practices.

EDUCATIONAL BACKGROUND

Givkashi completed his Master of Science in Civil Engineering, specializing in Construction Management, at Amirkabir University of Technology in Tehran, Iran, from 2021 to 2024. His outstanding academic performance is reflected in his perfect GPA of 4.0 (18.95/20). His thesis, supervised by Dr. Faramarz Moodi, investigated the durability assessment of 3D printed concrete with air-entraining admixture. He also holds a Bachelor of Science in Civil Engineering from the same university, achieved in 2021 with a GPA of 3.9 (18.17/20).

HONORS AND AWARDS

Throughout his academic career, Givkashi has received numerous accolades, including ranking 1st in Civil Engineering with a major in Construction Management among his peers at Amirkabir University of Technology in 2020. He was also included in the facilities of the National Elite Foundation for two consecutive years and received 'Straight' M.Sc. Admission Offers to top universities in Iran due to his high GPA.

RESEARCH PROJECTS

Givkashi has actively participated in several significant research projects. These include modeling composite reinforced concrete columns using finite element software, designing highways and residential buildings, and contributing to the Smart Schools Plan under the National Elite Foundation. His projects, supervised by renowned academics such as Dr. Aliakbar Ramezanianpor and Dr. Alireza Rahai, highlight his expertise in both theoretical and practical aspects of civil engineering.

PUBLICATIONS

His research contributions are well-documented in reputable journals. Notable publications include a comparative study on the fineness of low-grade calcined clays on the properties of blended concretes in the Civil Engineering Infrastructures Journal, and a feasibility study on 3D printing concrete for building construction in the AUT Journal of Civil Engineering. His work has also explored the simulation of evacuation in educational buildings and the factors affecting the drying shrinkage and compressive strength of slag geopolymer mortar mixtures.

PROJECT SUPERVISION

Givkashi has demonstrated strong leadership in guiding research projects. He has worked on the durability of 3D printed concrete, highway design, and the design of residential buildings with both reinforced concrete and steel frames. His supervision has helped shape innovative solutions in civil engineering, emphasizing practical applications and sustainability.

PROFESSIONAL DEVELOPMENT

In addition to his academic achievements, Givkashi has actively engaged in professional development through his involvement in the National Elite Foundation and participation in faculty Olympiad teams. His dedication to continuous learning and professional growth underscores his commitment to advancing the field of civil engineering.

CONTRIBUTIONS TO CIVIL ENGINEERING

Givkashi's contributions to civil engineering are substantial, encompassing innovative research, impactful publications, and active participation in significant projects. His work not only advances academic knowledge but also provides practical solutions to contemporary challenges in construction and infrastructure development. His commitment to excellence and innovation makes him a valuable asset to the field of civil engineering.

NOTABLE PUBLICATION

  • Effects of different types of fibers on fresh and hardened properties of cement and geopolymer-based 3D printed mixtures: a review.
    • Authors: A Ramezani, S Modaresi, P Dashti, MR GivKashi, F Moodi, ...
    • Year: 2023
  • Software simulation of chloride ions penetration into composite of pre-fabricated geopolymer permanent formworks (PGPFs) and substrate concrete.
    • Authors: ER Dehkordi, F Moodi, MR GivKashi, AA Ramezanianpour, M Khani
    • Year: 2022
  • Considerations for the Construction, Implementation and Economic Evaluation of Geopolymer Permanent Formworks (GPFs): A New Approach to Protect Concrete Structures Against...
    • Authors: E Riahi Dehkordi, MR GivKashi
    • Year: 2023
  • Investigating the applications of geopolymer mixtures, focusing on the repair and strengthening of reinforced concrete structures: A Review.
    • Authors: MR Givkashi, F Moodi
    • Year: 2022
  • Investigation of Affecting Factors on Drying Shrinkage and Compressive Strength of Slag Geopolymer Mortar Mixture.
    • Authors: E Riahi Dehkordi, F Moodi, MR GivKashi, AA Ramezanianpour
    • Year: 2023

Iftekhair Bashar – Concrete – Best Researcher Award

Iftekhair Bashar - Concrete - Best Researcher Award

The University of Adelaide - Australia

AUTHOR PROFILE

Scopus

EARLY ACADEMIC PURSUITS

Iftekhair Bashar's academic journey began with a Bachelor of Science in Civil Engineering from Khulna University of Engineering and Technology, Bangladesh. He further pursued Master's and Ph.D. degrees, specializing in Structural and Materials Engineering, from the University of Malaya, Malaysia, and the University of Adelaide, Australia, respectively.

PROFESSIONAL ENDEAVORS

Bashar has accumulated extensive experience in the civil engineering field, serving in various capacities as a Structural Engineer, Design Engineer, Project Engineer, and Research Assistant across different organizations in Singapore, Bangladesh, and Australia.

CONTRIBUTIONS AND RESEARCH FOCUS

Bashar's research primarily focuses on concrete materials, with a specific interest in geopolymer concrete, lightweight concrete, and high-performance fibre-reinforced concrete. His contributions include developing environmentally friendly concrete products and investigating the mechanical properties of innovative concrete formulations.

IMPACT AND INFLUENCE

Through his research endeavors, Bashar has contributed to the development of sustainable construction materials and techniques, aiming to reduce the carbon footprint of construction activities. His work has the potential to influence construction practices towards more eco-friendly and efficient solutions.

ACADEMIC CITATIONS

Bashar's research findings have been cited in various academic publications, reflecting the relevance and impact of his work in the field of concrete materials and structural engineering. His contributions contribute to the advancement of knowledge in concrete technology and construction practices.

LEGACY AND FUTURE CONTRIBUTIONS

With patents granted and applications under substantial examination for innovative concrete compositions and construction methods, Bashar's legacy lies in his contributions to sustainable and efficient construction practices. His ongoing research and professional endeavors aim to further enhance the durability, performance, and environmental sustainability of concrete materials and structures.

NOTABLE PUBLICATIONS

Pull-out creep of hooked-end fibre embedded in ultra-high-performance concrete.  2023 (3)