Prof. Dr. Atilla Bıyıkoğlu | Numerical Methods | Best Researcher Award

Prof. Dr. Atilla Bıyıkoğlu | Numerical Methods | Best Researcher Award

Gazi University | Turkey

Author Profile 

ORCID 

Summary


Dr. Atilla Bıyıkoğlu is a distinguished mechanical engineer and academic with a strong foundation in thermodynamics, combustion modeling, and energy systems. he completed his b.s. at gazi university, his m.s. at metu, and his phd at gazi university, focusing on advanced thermal and combustion studies. his professional career spans research assistant, instructor, and professor at gazi university, where he has contributed to teaching, research, and student mentorship. he has actively participated in national and international symposiums, summer courses, and competitions, while also engaging with professional societies such as tmmob, tibtd, ashrae, and asme. his work emphasizes mathematical modeling, heat and mass transfer, and optimization of thermal energy systems, influencing both academia and industry.

Early academic pursuits


Dr. Atilla Bıyıkoğlu embarked on his academic journey at gazi university, ankara, turkey, where he earned his bachelor's degree in mechanical engineering. he furthered his education with a master's degree from middle east technical university (metu), focusing on the thermodynamic analysis and optimization of a thermal energy storage system. his doctoral studies at gazi university centered on mathematical modeling of combustion in a boiler with a fixed bed. throughout his early academic pursuits, he demonstrated a strong inclination toward thermodynamics, combustion modeling, and mechanical engineering principles, laying a solid foundation for his future research and professional endeavors.

Professional endeavors


Dr. Bıyıkoğlu has had a distinguished academic career at gazi university, starting as a research assistant and rising through the ranks to professor. his professional experience spans instructor, assistant professor, associate professor, and full professor roles, highlighting a steady commitment to education and research. he has been actively involved in teaching mechanical engineering courses, guiding student projects, and organizing academic competitions such as the izocam intercollegiate insulation competition. his participation in various courses, symposiums, and summer schools reflects his dedication to continuous learning and fostering knowledge dissemination among students and colleagues.

Contributions and research focus


Dr. Bıyıkoğlu’s research primarily focuses on thermodynamics, combustion, heat and mass transfer, and mathematical modeling in mechanical engineering. he has made notable contributions in areas such as boundary layer flows, gas turbine heat transfer, turbulent flow modeling, and thermal energy systems optimization. he has also contributed to educational development by teaching courses like theory of combustion, fortran programming, and mechanical desktop applications, empowering a new generation of engineers with both theoretical knowledge and practical skills. his involvement in faculty and summer courses underlines his commitment to expanding research horizons and academic excellence.

Impact and influence


Dr. Bıyıkoğlu’s work has influenced both academic peers and students through his publications, conference presentations, and active participation in professional societies including tmmob, tibtd, ashrae, and asme. his contributions to national and international symposiums, such as convective heat and mass transfer in porous media and the national thermal sciences congress, demonstrate a strong presence in the scientific community. his mentorship in competitions and guidance in practical projects have helped newcomers and students socialize and integrate into the academic and engineering community effectively.

Academic cites


Dr. Bıyıkoğlu has received recognition for his scientific publications through awards from tubitak and gazi university. his research papers, often cited in the field of mechanical and thermal sciences, highlight advancements in combustion modeling, energy storage systems, and thermo-fluid dynamics. these citations reflect the relevance and application of his work in both academia and industry, enhancing his academic visibility and influence.

Legacy and future contributions


Dr. Bıyıkoğlu’s legacy lies in his dedication to research, teaching, and student development in mechanical engineering. his ongoing work in combustion modeling, thermodynamic systems, and mechanical design continues to push the boundaries of engineering science. in the future, he aims to further contribute to the development of sustainable energy systems, advanced heat transfer modeling, and mentorship of emerging scholars, ensuring that his influence persists across generations of engineers and researchers.

Publications 

Title: Accurate Computation of Multiphase Flows with high-density and pressure ratios using Smoothed Particle Hydrodynamics
Author(s): Murat Erbaş, Metehan Atcı, Mehmet Karaca, Atilla Bıyıkoğlu
Journal: Computers & Fluids, 2025-10

Title: Development of an analytical model to investigate temperature distribution and melt geometry in the laser powder bed fusion process under different operating parameters
Author(s): Korhan Ökten, Bülent Nafi Örnek, Atilla Biyikoğlu
Journal: Journal of Laser Applications, 2025-02-01

Title: Efficiency Analysis of Covid 19 Filtration with The Theoretical Approach Developed for Single Fiber Efficiency
Author(s): Dilara Coşkun, Korhan Ökten, Atilla Bıyıkoğlu
Journal: International Journal of Pioneering Technology and Engineering, 2022-12-06

Title: KONUT TİPİ BİNALARDA SOĞUTMA YÜKÜNÜN OPTİMUM YALITIM KALINLIĞINA ETKİSİ
Author(s): Nusret Aydın, Atilla Bıyıkoğlu
Journal: Isı Bilimi ve Tekniği Dergisi, 2020-10-31

Conclusion


Dr. Bıyıkoğlu’s career reflects a commitment to advancing mechanical engineering through research, teaching, and professional engagement. his contributions in combustion modeling, thermodynamics, and energy systems have impacted students, colleagues, and the broader scientific community. recognized with multiple awards for his publications, he continues to mentor new engineers, foster innovation, and contribute to the development of sustainable engineering solutions. his legacy is one of academic excellence, research impact, and ongoing dedication to the advancement of science and engineering.

Prof. Serena Doria | Probability and nonlinear integrals | Best Researcher Award

Prof. Serena Doria | Probability and nonlinear integrals | Best Researcher Award

University g. d'Annunzio Chieti-Pescara | Italy

Author Profile 

ORCID 

Summary 


Serena doria, an associate professor at the university g. d’annunzio chieti-pescara, italy, has established herself as a specialist in imprecise probability theory, approximate reasoning, and uncertainty modeling. her academic background and editorial contributions reflect a deep commitment to advancing knowledge in theoretical and applied domains. with over 90 research publications and participation in key international symposia, her work has found meaningful applications in power electronics, where decision-making under uncertainty is crucial. her editorial roles and research leadership highlight her growing influence in the field of computational intelligence and probabilistic reasoning.

Early academic pursuits 

Serena doria began her academic journey with a deep interest in mathematical reasoning and uncertainty theory, which later evolved into her significant contributions to power electronics and applied probabilistic methods. her foundational education set the stage for a career dedicated to blending rigorous theory with practical innovation, especially in fields involving data imprecision and approximation logic.

Professional endeavors 


Currently serving as an associate professor at the university g. d’annunzio chieti-pescara in italy, serena doria has established herself as a notable academic in both teaching and research. her professional journey includes editorial roles in esteemed international journals such as the international journal of approximate reasoning and the proceedings. she has also served as an editor Probability and nonlinear integrals alongside renowned scholars like thomas augustin, massimo marinacci, and enrique miranda, showcasing her collaborative expertise.

Contributions and research focus 


Serena’s research primarily revolves around imprecise probabilities, approximate reasoning, and uncertainty quantification—areas that greatly complement modern advancements in Probability and nonlinear integrals especially where decision-making under ambiguity is crucial. her work has led to the completion of three major research projects and the publication of a significant . she has published 37 scopus-indexed and 57 researchgate-listed journal articles, reinforcing her impact in both theoretical and applied domains.

Impact and influence 


With a growing academic presence, her scopus citation index stands at 224 with an h-index of 9, and on researchgate, she holds an impressive 298 citations with an h-index of 10. these metrics reflect her influence in bridging theoretical frameworks with practical applications in power electronics and decision sciences. her role in shaping the discourse around imprecise probability theory continues to be recognized globally.

Academic cites and recognition 


Her editorial contributions to high-impact publications, especially in collaboration with international symposiums such as isipta’15, underline her stature in the research community. she has played a critical role in nurturing academic discourse and elevating the visibility of approximation-based reasoning in global forums. her expertise is often sought for editorial and peer-review positions, further highlighting her scholarly authority.

Legacy and future contributions 


Serena doria’s legacy lies in her unwavering commitment to intellectual precision in uncertain domains, particularly where computation and decision-making intersect. as future technologies increasingly rely on data under uncertainty, her research will serve as a guiding framework—especially in fields like power electronics where predictive modeling and control systems demand robust reasoning models. with continued involvement in high-level academic platforms and research projects, she is poised to contribute meaningfully to the next generation of intelligent, uncertainty-aware systems.

Publications 

Title: Coherent Upper Conditional Previsions Defined through Conditional Aggregation Operators
Author(s): Serena Doria
Journal: Mathematics

Title: Sub-Additive Aggregation Functions and Their Applications in Construction of Coherent Upper Previsions
Author(s): Serena Doria, Radko Mesiar, Adam Šeliga
Journal: Mathematics

Title: Integral Representation of Coherent Lower Previsions by Super-Additive Integrals
Author(s): Serena Doria, Radko Mesiar, Adam Šeliga
Journal: Axioms

Conclusion 


Serena doria’s academic and research journey reflects a powerful blend of innovation, collaboration, and scholarly depth. her contributions have not only advanced the theoretical understanding of uncertainty but have also impacted emerging technologies such as power electronics, where intelligent systems require robust, adaptable frameworks. with a solid citation record and continued involvement in high-impact research, her legacy is poised to grow further. as computational methods evolve, her expertise in handling imprecise information will remain pivotal, especially in optimizing real-world systems like power electronics for the future.

Assist Prof Dr. Amir R. Masoodi – Numerical Methods – Best Researcher Award

Assist Prof Dr. Amir R. Masoodi - Numerical Methods - Best Researcher Award

Ferdowsi University of Mashhad - Iran

Professional Profile

SCOPUS 

ORCID 

📚 EARLY ACADEMIC PURSUITS

Amir R. Masoodi embarked on his academic journey at the Ferdowsi University of Mashhad, where he demonstrated exceptional aptitude and dedication. He earned his Bachelor's degree in Civil Engineering with a stellar GPA of 17.60/20 in 2012. His quest for knowledge continued with a Master’s degree in Structural Engineering, focusing on the Stability of Structures, and culminating with a Ph.D. in Structural Engineering (Applied Mechanics) in 2020. His doctoral thesis, "Nonlinear finite element analysis of composite shells using strain field mixed interpolation method," stands as a testament to his rigorous research capabilities.

🏗️ PROFESSIONAL ENDEAVORS

Dr. Masoodi’s professional career is marked by his role as an Assistant Professor in Structural Engineering at Ferdowsi University of Mashhad. He has been a pivotal figure in the Department of Civil Engineering, teaching a variety of courses, including Engineering Mechanics, Structural Analysis, and Design of Concrete Structures. His expertise extends beyond academia, with significant contributions as a structural counselor and CEO, demonstrating his leadership and practical application of structural engineering principles in the industry.

🔬 CONTRIBUTIONS AND RESEARCH FOCUS

Dr. Masoodi’s research is centered on the stability and dynamics of structures, soil-structure interaction, and nonlinear mechanics of solids. His work on composite materials, functionally graded materials, and carbon nanotubes has been groundbreaking. He has developed advanced finite element methods for analyzing complex structures, contributing over 38 peer-reviewed journal articles and numerous conference proceedings Numerical Methods that highlight his innovative approaches to structural engineering problems.

🏅 ACCOLADES AND RECOGNITION

Throughout his career, Dr. Masoodi has received numerous accolades that underscore his academic and research excellence. He was recognized as a distinguished lecturer at Sadjad University of Technology in 2019 and was honored as an elite Ph.D. student by the National Elite Foundation  Numerical Methods of Iran from 2016 to 2018. His consistent excellence earned him the title of Top Ph.D. student in his department and top researcher at Ferdowsi University of Mashhad in 2015-2016.

🌍 IMPACT AND INFLUENCE

Dr. Masoodi’s influence extends across the global academic community. His work has significantly impacted the understanding and development of composite and functionally graded materials. His innovative research methods and findings have been widely cited and utilized by fellow Numerical Methods researchers, enhancing the field’s overall knowledge base and practical applications in structural engineering.

🔗 LEGACY AND FUTURE CONTRIBUTIONS

Dr. Masoodi’s legacy is built on a foundation of rigorous research, innovative solutions, and a commitment to education. As he continues to explore new frontiers in structural engineering, his future contributions are anticipated to further advance the understanding and application of nonlinear mechanics and composite materials. His ongoing projects and publications ensure that his work will continue to influence and inspire future generations of engineers and researchers.

NOTABLE PUBLICATIONS