Assist. Prof. Dr. H A Yousefi | Ammonia Combustion | Best Researcher Award

Assist. Prof. Dr. H A Yousefi | Ammonia Combustion | Best Researcher Award

Kookmin University, South Korea.

Dr. Hossein Ali Yousefi Rizi is an accomplished researcher and academic with over 15 years of experience in mechanical system engineering, occupational and environmental safety, and industrial hygiene. He has contributed significantly to combustion technologies, renewable energy systems, and workplace safety measures. Currently, he is a researcher at Kookmin University in South Korea, with previous academic roles at Hansung University and Isfahan University of Medical Sciences. His work spans teaching, research, reviewing, and editorial responsibilities in prestigious journals.

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🎓 Education

Dr. H. A. Yousefi earned his Ph.D. in Mechanical System Engineering from Kookmin University, South Korea, in 2024. His doctoral research focused on the stability and safety analysis of pure ammonia flameless combustion for hydrogen production, contributing to advancements in clean energy technologies. He previously obtained his M.Sc. in Occupational Health Engineering from Tarbiat Modares University, Tehran, Iran, in 1996, where he investigated the evaluation of electromagnetic fields at extremely low frequencies (ELF) and their health effects on high-voltage substation workers. His academic journey began with a B.Sc. in Physics from Isfahan University, Iran, in 1991, providing him with a strong foundation in physical sciences and engineering principles.

🏛 Experience

Dr. H. A. Yousefi is a researcher at the Department of Mechanical Engineering, New Energy Lab, Kookmin University (2022-2025), where he focuses on advancing sustainable energy solutions. He has extensive academic experience, having served as an Assistant Professor at the Department of Mechanical System Engineering, Hansung University, and previously at the Department of Occupational Safety and Health Engineering, Isfahan University of Medical Sciences (1997-2021). His contributions to scientific research extend beyond teaching, as he has also been a Guest Editor for the Journal of Energies, Switzerland (2022-2024), and a Reviewer for both the Iranian Journal of Public Health (2022-2024) and the Medical Journal of the Islamic Republic of Iran (MJIRI) (2020-2024).

🔬 Research Interests

Combustion Technologies: Ammonia combustion, NOx reduction, flameless combustion

Renewable Energy Systems: Hydrogen production, ammonia cracking, energy efficiency

Occupational & Environmental Health: Industrial ventilation, risk management, toxicology

Thermal Systems: Heat transfer, cooling systems, thermal stress control

Electromagnetic Safety: Health risks in high-voltage substations

🏆 Awards & Honors

Academic Excellence Award, Kookmin University (2024)

Academic Excellence Award, Isfahan University of Medical Sciences (2012)

Outstanding Researcher Medal, Isfahan Foundation for Elites (2011)

Outstanding Researcher Medal, Foundation for Elites (2008)

Special Scholarship, Ministry of Health, Medical Education (1992)

📚 Notable Publications

Energy Research:

Development of Ammonia Combustion Technology for NOx ReductionEnergies (2025)

Green Hydrogen Production Technologies from Ammonia CrackingEnergies (2022)

Contributors: Yousefi H. A., Donghoon Shin

Occupational Health:

Evaluation of Occupational Noise Levels in the Ear Canal of Exposed WorkersInternational Journal of Preventive Medicine (2022)

Contributors: Asady, H.; Fuente, A.; Pourabdian, S.; Rizi, H. A. Y.; Forouharmajd, F.

Nanotechnology & Medicine:

Polymeric Nanoparticles in Cancer Chemotherapy: A Narrative ReviewIranian Journal of Public Health (2022)

Contributors: Yousefi Rizi, H. A.; Shin, D. H.; Rizi, S. Y.

 

 

 

 

Prof. Dr. Chao Lyu | Energy | Best Researcher Award

Prof. Dr. Chao Lyu | Energy | Best Researcher Award

Harbin Institute of Technology, China.

Prof. Chao Lyu is a distinguished scholar and researcher in electrical engineering, specializing in battery modeling, battery health management, and microgrid optimization. He is a Professor and Doctoral Supervisor at the Harbin Institute of Technology and a Senior Member of IEEE. With a strong academic background and over 50 research publications in international journals and conferences, Prof. Lyu has made significant contributions to the field of energy storage systems and lithium-ion battery technology. His expertise extends to fault diagnosis, performance evaluation, and optimization control methods for energy storage batteries, shaping advancements in sustainable energy solutions.

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🎓 Education

Prof. Chao Lyu holds a strong academic foundation in electrical engineering. He earned his B.Eng. in Electrical Engineering from Northeast Electric Power University, Jilin, China, in 2001, followed by an M.Sc. in Electrical Engineering from the same institution in 2004. His pursuit of advanced research led him to complete a Ph.D. in Electrical Engineering at Harbin Institute of Technology, China, in 2007. His academic journey has equipped him with extensive expertise in battery modeling, energy storage systems, and microgrid optimization, laying the groundwork for his impactful research and contributions to the field.

💼 Professional Experience

Prof. Chao Lyu is a Professor and Doctoral Supervisor at Harbin Institute of Technology, where he leads research in battery modeling, energy storage systems, and microgrid optimization. As a Senior Member of IEEE, he actively contributes to advancements in electrical engineering and battery technology. Beyond academia, he serves as a researcher and consultant, collaborating with State Grid Corporation of China and Guangdong Power Grid Co., Ltd on industry-driven projects focused on battery fault diagnosis, performance evaluation, and optimization control. His work bridges the gap between research and real-world applications, driving innovation in sustainable energy solutions.

🔬 Research Interests

Battery Modeling & Testing 🔋

Battery Health Management & Fault Diagnosis

Microgrid Optimization with Energy Storage 🏭

Lithium-ion Battery Performance & Safety 🔍

Artificial Intelligence for Battery Management 🤖

🏆 Awards & Recognitions

Senior Member, IEEE

Recognized Expert in Battery Technology & Microgrid Systems

📚 Selected Publications

Early Internal Short Circuit Diagnosis for Lithium-Ion Battery Packs Based on Dynamic Time Warping of Incremental CapacityBatteries, 10(11), 378

Concurrent Multi-Fault Diagnosis of Lithium-Ion Battery Packs Using Random Convolution Kernel Transformation and Gaussian Process ClassifierEnergy, 306, 132467 (3 citations)

Model-Free Detection and Quantitative Assessment of Micro Short Circuits in Lithium-Ion Battery Packs Based on Incremental Capacity and Unsupervised ClusteringInternational Journal of Electrochemical Science, 19(10), 100794 (1 citation)

Digital Twin Modeling Method for Lithium-Ion Batteries Based on Data-Mechanism Fusion DrivingGreen Energy and Intelligent Transportation, 3(5), 100162 (3 citations)

Optimization of Lithium-Ion Battery Charging Strategies From a Thermal Safety PerspectiveIEEE Transactions on Transportation Electrification, 10(2), pp. 2727–2739

 

 

 

Dr. Michał Hajos | Materials Engineering | Best Researcher Award

Dr. Michał Hajos | Materials Engineering | Best Researcher Award

University of Agriculture in Krakow, Poland.

Michal Hajos is a skilled academic and researcher currently working at the University of Agriculture in Krakow, Poland. With a strong foundation in metallurgy and extensive experience in industrial research, Hajos has dedicated his career to exploring innovative solutions in material science, combustion processes, and plant-based material research. He has worked on numerous industrial and academic projects, contributing significantly to both the research and development sectors. His research interests include the study of combustion and drying processes and the exploration of green methods for nanoparticle production.

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Education 🎓

Dr. Michał Hajos holds a PhD in Metallurgy from AGH University in Krakow (2008–2014), with a dissertation on "Physicochemical parameters of the electrochemical process for the production of zinc oxide nanoparticles." He also earned a Master of Science in Metallurgy from the same institution (2002–2008), where his thesis focused on binders in molding sands. Additionally, he completed his Environmental Protection Technician qualification at Zespół Szkół Chemicznych in Krakow (1995–2000), researching the use of industrial waste as alternative fuels in the cement industry.

Work Experience 💼

Dr. Michał Hajos is currently an Assistant at the University of Agriculture in Krakow (2022–present), focusing on research and teaching in mechanical engineering and agrophysics, with expertise in material science and thermodynamics. He served as Head of Executive at CBR Rock Master (2021–2022), overseeing R&D, production planning, and product certification. Prior to that, he was a Laboratory Analyst (2019–2021) at the same company, specializing in designing and testing prototypes for height safety systems. Dr. Hajos also worked as a Process Engineer at NYCZ Intertrade (2016–2018), leading nickel recovery processes from galvanic waste. Earlier, he contributed as a Research Assistant and Lecturer at AGH University of Science and Technology (2012–2015), designing measurement stands and conducting research for shale gas extraction projects.

Research Interests 🔬

Dr. Michał Hajos focuses on the study of combustion and drying processes 🔥💧, aiming to optimize energy efficiency and material properties.

Physico-Chemical Properties of Plant-Based Materials 🌿

He investigates the physico-chemical properties of plant-based materials, exploring sustainable alternatives for various industrial applications.

Green Nanoparticle Production 🌱🔬

A significant aspect of his research is the development of green methods for nanoparticle production, striving to create eco-friendly technologies for the future.

Achievements 🏆

Third Degree Award in the "Technician 2000" competition (2000)
For his thesis on alternative fuels for the cement industry.

Patent in Nickel Recovery Process (2014)
Involved in the patenting process for the method of manufacturing molds and cores in smelting technologies.

Multiple Conference Contributions (2008–2013)
Organized and participated in various national and international conferences, contributing to both research dissemination and academic development.

Selected Publications 📚

Size Distribution of Zinc Oxide Nanoparticles Depending on the Temperature of Electrochemical Synthesis
Hajos, M., Starowicz, M., Brzychczyk, B., Basista, G., Francik, S.
Materials, 2025, 18(2), 458
Focus: This study investigates how the temperature during electrochemical synthesis affects the size distribution of zinc oxide nanoparticles.

Prediction of Brake Pad Wear of Trucks Transporting Oversize Loads Based on the Number of Drivers’ Braking and the Load Level of the Trucks—Multiple Regression Models
Basista, G., Hajos, M., Francik, S., Pedryc, N.
Applied Sciences (Switzerland), 2024, 14(13), 5408
Focus: This article uses multiple regression models to predict brake pad wear in trucks transporting oversize loads.

Citations: 1

Modeling the Drying Process of Onion Slices Using Artificial Neural Networks
Francik, S., Łapczyńska-Kordon, B., Hajos, M., Zawiślak, A., Francik, R.
Energies, 2024, 17(13), 3199
Focus: The study explores the application of artificial neural networks to model the drying process of onion slices.

Cohesion and Adhesion Properties of Modified Water Glass with Colloidal Solutions of ZnO
Smyksy, K., Kmita, A., Hutera, B., Hajos, M., Starowicz, M.
Metalurgija, 2014, 53(4), pp. 459–462
Focus: The article discusses the cohesion and adhesion properties of modified water glass combined with colloidal solutions of zinc oxide.

Citations: 5

Morphology and Structure of ZnO Nanoparticles Produced by Electrochemical Method
Stypuła, B., Kmita, A., Hajos, M.
Medziagotyra, 2014, 20(1), pp. 3–9
Focus: This paper examines the morphology and structure of zinc oxide nanoparticles produced through an electrochemical method.

 

 

Mr. Xinyang Yao | Energy | Best Researcher Award

Mr. Xinyang Yao | Energy | Best Researcher Award

Xinjiang University, China.

Xinyang Yao is a dedicated postgraduate researcher specializing in underground coal gasification at the Xinjiang Key Laboratory for Geodynamic Processes and Metallogenic Prognosis of the Central Asian Orogenic Belt. With a strong theoretical foundation and hands-on experimental skills, Xinyang's research focuses on technological innovation in unconventional resource development. His work contributes to the advancement of efficient and safe gasification technologies, improving practical applications in the field.

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Education 🎓

Postgraduate degree in Underground Coal Gasification, specializing in geodynamic processes and metallogenic prognosis.

Experience 🔬

Joint research with PetroChina Xinjiang Oilfield Company, where Xinyang was responsible for numerical simulation in underground coal gasification. He has also actively contributed to research projects that optimize gasification schemes, focusing on induced fractures and stress concentration in practical UCG projects.

Research Interests 💡

Underground Coal Gasification (UCG)

Unconventional Resource Development

Geodynamic Processes

Numerical Simulation for UCG Applications

Publication 📚

Numerical simulations of fracture propagation in overlying strata for deep underground coal gasification using controlled retraction injection point technology

Journal: Energy

Published Year: 2025

Contributors: Xinyang Yao, Xin Li, Bo Wei, Jijun Tian, Shuguang Yang, Yiwen Ju

 

 

Ms. Aayesha Ahmad | Energy | Best Researcher Award

Ms. Aayesha Ahmad | Energy | Best Researcher Award

Indian Institute of Technology Delhi, India.

Aayesha Sabih Ahmad is a dedicated research scholar at the Indian Institute of Technology (IIT) Delhi, specializing in energy systems optimization and financial modeling of photovoltaic-battery energy storage systems (PV-BESS). With a strong background in electrical engineering and extensive teaching experience, Aayesha aims to contribute to policy frameworks promoting renewable energy adoption and sustainability.

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Education 🎓

Aayesha Sabih Ahmad is currently a research scholar at the Centre for Sensors, Instrumentation, and Cyber Physical Systems Engineering, IIT Delhi, where she has been pursuing her Ph.D. since February 2021. Under the guidance of Prof. Sumit K. Chattopadhyay and Prof. B.K. Panigrahi, she focuses on decentralized energy systems and renewable energy optimization. She has also completed coursework in decentralized energy systems, instrumentation design, and research writing.

She earned her Master of Engineering (M.E.) in Electrical Engineering (Power Systems) from BIT Mesra in 2013 with a CGPA of 8.21/10 and her Bachelor of Engineering (B.E.) in Electrical and Electronics Engineering from the same institution in 2011, graduating with a CGPA of 7.56/10. Both degrees have provided her with a strong foundation in electrical engineering, energy systems, and power distribution.

Experience 💼

Aayesha Sabih Ahmad has valuable teaching experience as a Part-Time Lecturer at Al Kabir Polytechnic, Jamshedpur (2015–2019), where she delivered lectures and supervised laboratory sessions for courses such as Basic Electrical Engineering, Power Transmission & Distribution, and Power Systems. Her role involved mentoring students and ensuring practical knowledge transfer through hands-on lab experiments.

Additionally, she served as a Visiting Professor at NIT Patna in 2013, where she taught advanced courses on Protection of Power Apparatus and Systems and Power Electronics (Lab). This brief yet significant academic engagement enriched her expertise in power systems and electronic applications, reinforcing her passion for teaching and research.

Research Interests 🔍

Cost-benefit analysis and financial modeling of photovoltaic-battery energy storage systems (PV-BESS).

Optimization of energy resources for enhanced cost efficiency.

Policy frameworks for renewable energy adoption.

Role of PV-BESS in achieving energy sustainability.

Honors and Awards 🏆

Research Scholar Fellowship (JRF/SRF) (Feb 2021 – Present)

Graduate Aptitude Test in Engineering (GATE) – All India Rank 6041 (March 2011)

All India Engineering Entrance Examinations (AIEEE) – All India Rank 19,626 (March 2007)

Publications 📚

A Quantitative Assessment of the Economic Viability of Photovoltaic Battery Energy Storage Systems, A.S. Ahmad, S.K. Chattopadhyay, B.K. Panigrahi, Energies 2024, 17, 6279,. Link

Defect Analysis of Thin Film CTGS-based Solar Cells for Performance Optimization, A.S. Ahmad, B.S. Sengar, A. Kumar, 2020 5th IEEE International Conference on Emerging Electronics (ICEE), New Delhi,. Link

 

 

Dr. Shixian Bai | Energy | Best Researcher Award

Dr. Shixian Bai | Energy | Best Researcher Award

School of Electrical Engineering, Xi’an University of Technology, China.

Shixian Bai is a distinguished researcher at the School of Electrical Engineering, Xi’an University of Technology, specializing in power electronic control technology, renewable energy generation systems, and electrochemical energy storage solutions. His pioneering work focuses on SOC equalization control methods that improve the performance and efficiency of energy storage systems, particularly in DC–DC converter cascaded energy storage setups. Bai's innovative research has made a significant impact on enhancing both charging and discharging capacities, contributing to the advancement of energy storage technologies.

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🎓 Education

Shixian Bai holds a degree in Electrical Engineering. His academic background is centered on power electronic control technology and renewable energy generation systems, equipping him with the expertise necessary for his groundbreaking research in energy storage solutions.

💼 Experience

Bai is currently engaged in research at the School of Electrical Engineering, Xi’an University of Technology, where he leads projects on electric-thermal balance control among battery modules in DC–DC cascaded energy storage systems. His work has not only contributed to advancing theoretical understanding but has also provided practical solutions for enhancing energy storage performance. Bai’s involvement in industry-related projects has not been reported, but his academic contributions are notable.

🔬 Research Interests

Power Electronic Control Technology: Developing advanced control methods to enhance the performance and reliability of electronic systems, particularly in energy storage applications.

Renewable Energy Generation Systems: Exploring the integration of renewable energy sources with efficient storage and conversion technologies to support sustainable energy solutions.

Electrochemical Energy Storage Solutions: Focusing on innovative ways to improve the efficiency, lifespan, and capacity of energy storage systems, with an emphasis on electrochemical solutions such as batteries.

Control Mechanisms for Energy Storage Systems: Addressing the complexities of managing energy storage systems, particularly through the optimization of SOC (State of Charge) and SOH (State of Health) variations to maximize performance and sustainability.

Publication 📚

Bai, S. (2024). SOC Equalization Control Method Considering SOH in DC–DC Converter Cascaded Energy Storage Systems. Energies, 17(24), 6385. Link

 

 

 

Dr. Zhonghua Liu | Petroleum engineering | Best Researcher Award

Dr. Zhonghua Liu | Petroleum engineering | Best Researcher Award

Chongqing university of science and technology, China

Dr. Zhonghua Liu is an Associate Professor at the School of Petroleum and Natural Gas Engineering at Chongqing University of Science & Technology in China. With over a decade of experience in petroleum engineering, his work has primarily focused on shale gas development and reservoir characterization. Dr. Liu has also gained valuable international experience as a visiting scholar at Missouri University of Science and Technology. He has made substantial contributions to the understanding of gas recovery and multiphase flow in porous media, positioning him as a notable researcher in the field.

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Education🎓

Dr. Liu earned his Ph.D. in Oil & Gas Field Development Engineering from China University of Petroleum (East China) in 2022. Prior to this, he completed his M.S. in Oil & Gas Field Development Engineering at Chengdu University of Technology in 2012 and his B.S. in Petroleum and Natural Gas Engineering at Yangtze University in 2005. His academic journey laid a solid foundation for his research in petroleum and natural gas engineering, particularly in shale gas reservoir management.

Experience🧑‍🔬

Dr. Liu has a diverse professional background that spans academia and industry. He currently serves as an Associate Professor at Chongqing University of Science & Technology, a role he assumed in December 2022. Prior to this, he held a lecturer position at the same institution from 2012 to 2022 and served as a visiting scholar at Missouri University of Science and Technology in 2021. His industry experience includes his early role as an oil testing technician at Jilin Oilfield Company, where he developed practical insights into oil testing and reservoir management.

Research Interests🔬

Shale Gas Development

Dr. Liu’s primary research focuses on advancing shale gas development, where he investigates methods to optimize extraction processes and enhance gas yield. His work in this area contributes to increasing the efficiency and sustainability of shale gas production, addressing both technical and environmental challenges.

Core Pore Structure Characterization

Dr. Liu conducts detailed studies on the pore structure of shale formations to better understand how gas is stored and flows within these reservoirs. By characterizing core pore structures, he aims to refine models that predict gas behavior in unconventional reservoirs, which is crucial for effective extraction and management.

Geological Carbon Sequestration

In addition to gas extraction, Dr. Liu is engaged in research on geological carbon sequestration. His studies in this area are focused on the potential for storing CO₂ in depleted or active shale gas reservoirs, a process that can mitigate carbon emissions while enhancing gas recovery. This dual-purpose approach aligns with global efforts to reduce greenhouse gas emissions.

Enhancing Gas Recovery Methods

Dr. Liu is actively working on developing innovative methods for enhancing gas recovery from shale reservoirs. His research explores advanced techniques that improve the efficiency of gas extraction, including hydraulic fracturing optimization and multiphase flow analysis. These efforts are aimed at maximizing resource utilization and minimizing operational costs.

Multiphase Flow in Porous Media

A significant part of Dr. Liu’s research is dedicated to understanding multiphase flow within porous media. By studying how gas, water, and other fluids interact within shale formations, he seeks to create predictive models that improve our understanding of flow dynamics in complex geological structures. This research is essential for enhancing both extraction and storage strategies in shale gas reservoirs.

Honors and Awards🏆

Dr. Liu has been recognized for his contributions to the petroleum industry with several awards. Notably, he received the Second Prize of Scientific and Technological Progress from the China Petroleum and Chemical Automation Application Association in 2022 for his work on fractured horizontal wells in deep offshore shale gas reservoirs. This award highlights his innovative approach to enhancing the efficiency and effectiveness of gas extraction processes.

Publications Top Notes📚

Liu, Z., Ding, Z., Yang, H., et al. "Lab-Scale Investigation of Slickwater Impact on Methane Desorption on Longmaxi Gas Shale." Chemical Engineering and Technology, 2023. Link

Liu, Z., Xie, Y., Yang, H., et al. "Interaction between slick water and gas shale and its impact on methane desorption." Petroleum Science and Technology, 2023. Link

Liu, Z., Wang, J., Bai, B.J., et al. "Impact of clay stabilizer on the methane desorption kinetics of Longmaxi Shale." Petroleum Science, 2022. Link

Liu, Z., Bai, B.J., Wang, Y.L. "Experimental Study of Defoamer Effect on Methane Desorption." Springer Series in Geomechanics and Geoengineering, 2022. Link

 

 

 

 

 

 

 

Ayad Fouad | Energy | Best Researcher Award

🌟Dr. Ayad Fouad, Energy, Best Researcher Award🏆

Doctorate at Ahmed Ben Yahya Elwancharissi University, Algeria

Ayad Fouad is a dedicated energy engineering professional with a robust academic and practical background. With a PhD in Energetic and a variety of certifications in non-destructive testing and quality control, Ayad has made significant contributions to the fields of energy systems, mechanical engineering, and nuclear reactor simulations.

Author Metrics

Google Scholar Profile

ORCID Profile

Ayad has published several research papers in esteemed journals and conferences, contributing valuable insights into thermohydraulic phenomena, energy system simulations, and non-destructive testing methods. Author metrics indicate a growing influence in the field, with citations reflecting the impact of the research work.

  • Citations: This indicates that your work has been cited 2 times in total since 2019. This is a measure of the impact and recognition of your research within the academic community.
  • h-index: An h-index of 1 means that you have at least one paper that has been cited at least once. This metric aims to measure both the productivity and citation impact of the publications by an author.

Education

  • 2021-2024: Doctorate Degree in Energy Engineering, Ahmed Ben Yahya Elwancharissi University, Tissemsilt, Algeria.
  • 12/06/2022: ASNT NDT Level II certification at GAC For Engineering Consultancy, Cairo, Egypt.
  • 27/05/2023: QA/QC Workshop at KIT For Engineering and Innovation, Algers, Algeria.
  • 2018-2019: Master’s Degree in Energy Mechanical Engineering, Ibn Khaldoun University, Tiaret, Algeria.
  • 2014-2017: Bachelor’s Degree in Mechanical Engineering, Ibn Khaldoun University, Tiaret, Algeria.
  • 2013-2014: Baccalaureate Degree in Experimental Science, Tiaret, Algeria.

Research Focus

Research primarily focuses on the study and simulation of complex thermal-hydraulic phenomena in nuclear reactors using Computational Fluid Dynamics (CFD) methods. This includes validating models with experimental reference data and exploring innovative solutions for energy efficiency and safety in nuclear systems.

Professional Journey

The professional journey includes extensive experience in performing thermohydraulic numerical simulations, inspecting boiler and pressure vessel operations, preparing and verifying quality control documents, and supervising welding operations. Expertise in non-destructive testing methods and adherence to ASME standards has been a cornerstone of this career.

Honors & Awards

Recognized for excellence in research and professional practice with various accolades from academic institutions and professional bodies. Awards highlight contributions to energy engineering and advancements in thermohydraulic simulation techniques.

Publications Noted & Contributions

Published multiple research papers that have been well-received by the academic community. Contributions include advancements in CFD simulations for nuclear reactors, innovations in non-destructive testing methods, and improvements in quality control processes for energy installations.

Title: Verification & validation of CFD predictions regarding pressurized thermal shock (PTS) situations in ROCOM installation: Comparison with IAEA benchmark

  • Authors: F Ayad, M Baghdad, Y Bouaichaoui, T Höhne
  • Journal: Nuclear Engineering and Design
  • Year: 2023
  • Citations: 2

Title: Fluid-to-fluid similarity and CFD predictions of surrogate fluid as a replacement for R11 refrigerant used in a subcooled flow boiling analysis: Validation against reference …

  • Authors: F Ayad, Y Bouaichaoui, H Aboshighiba
  • Journal: International Journal of Heat and Mass Transfer
  • Year: 2024

Title: Study and simulation of complex thermal-hydraulic phenomena in nuclear reactors using the CFD method: Validation of models by reference benchmark experimental data

  • Author: A Fouad
  • Institution: University of Tissemsilt
  • Year: 2023

Title: Etude prospective de substitution du fluide réfrigérant de l’installation thermohydraulique hors-pile par le biais du code ANSYS-CFX: Validation & Vérification des résultats …

  • Author: F Ayad
  • Institution: Université Ibn Khaldoun-Tiaret

Research Timeline

  • 2019-2024: Conducted detailed studies and simulations at the Nuclear Research Center of Birine, focusing on thermal-hydraulic phenomena in nuclear reactors.
  • 2018-2019: Completed a diploma in thermo-hydraulic training with a focus on biphasic change fluid (boiling crisis).

Collaborations and Projects

Collaborated with leading institutions and companies such as the Nuclear Research Center of Birine and GAC For Engineering Consultancy. Engaged in various projects that involved the application of CFD methods to real-world energy systems, non-destructive testing, and quality assurance in engineering projects.