Tieshan Zhang | Wellbore Stability and Control | Best Researcher Award

Mr. Tieshan Zhang | Wellbore Stability and Control | Best Researcher Award

Associate professor at Ningxia Institute Of Science And Technology | China

Mr. Tieshan Zhang is an accomplished academic and researcher serving as an Associate Professor at the Ningxia Institute of Science and Technology. His work focuses on advancing intelligent control systems and magnetorheological devices, integrating engineering applications with innovative research outcomes. With years of teaching and research experience, he has contributed significantly to both academic excellence and practical solutions in engineering systems. His dedication to higher education, combined with impactful scholarly contributions, makes him a valuable contributor to the global scientific community. Mr. Tieshan Zhang efforts reflect a commitment to innovation, professional growth, and knowledge dissemination for the advancement of engineering.

Profile

Orcid

Education

Mr. Tieshan Zhang holds a Master’s degree in engineering, with specialization in electrical control and intelligent algorithm design. His education has provided him with a strong technical foundation, enabling him to bridge theory with practical applications in control systems. Throughout his academic journey, he has built expertise in vibration suppression and system optimization, laying the groundwork for impactful research. His educational experiences shaped his capacity to apply theoretical frameworks to real-world challenges, allowing him to emerge as an influential figure in his field. With consistent learning and adaptation, his education continues to fuel his professional and research success.

Experience

With extensive academic and research experience, Mr. Tieshan Zhang has made lasting contributions to teaching, scientific research, and innovation. He has successfully presided over projects funded by provincial and institutional agencies, participated in multiple national-level projects, and contributed to collaborative research in advanced engineering systems. His experience spans curriculum development, mentoring students, and publishing widely in indexed journals. Over the years, he has developed a unique teaching style that inspires students while integrating cutting-edge research findings into classroom learning. His academic experience is complemented by applied research efforts that address practical engineering problems, demonstrating his impact across multiple dimensions.

Research Interest

Mr. Tieshan Zhang research focuses primarily on magnetorheological intelligent devices and fluid transmission control. His pioneering work involves developing semi-active control methods for magnetorheological dampers, improving vibration suppression efficiency, and enhancing the stability of mechanical systems. He is particularly interested in combining intelligent algorithms with structural control to optimize performance in engineering applications. His work extends to simulation and modeling of advanced damping systems, creating innovative approaches that merge computational techniques with experimental validation. These research interests position him at the forefront of smart engineering systems, where his contributions advance both theoretical understanding and practical technological development.

Awards

Recognized for his impactful contributions, Mr. Tieshan Zhang has been nominated for the Best Researcher Award under the Petroleum Engineering Awards. His career reflects multiple achievements, including successful leadership of provincial research projects, innovative contributions to vibration suppression strategies, and the development of advanced intelligent control methods. Additionally, he has earned national vocational certifications, affirming his technical competence and professional commitment. His patents, publications, and academic engagements stand as evidence of his excellence and recognition within the research community. Such awards and recognitions reflect his growing influence and validate his standing as a forward-thinking researcher and educator.

Publications Top Notes

Mr. Tieshan Zhang has published extensively in peer-reviewed journals.

Title: Numerical Simulation and Performance Analysis of Magnetorheological Dampers Using BPP and HBP Models With Particle Swarm Optimization
Year: 2025

Title: Magnetorheological Damper Design Based on Improved H–B Model
Year: 2025

Title: Optimization of MR damper model based on improved genetic neural network algorithm
Year: 2024

Conclusion

Mr. Tieshan Zhang demonstrates a rare combination of scholarly depth, teaching excellence, and innovative research contributions. His work in magnetorheological devices and intelligent control systems continues to shape advancements in mechanical and electrical engineering. With multiple publications, patents, and research projects, he has established himself as a forward-looking researcher committed to real-world solutions. His nomination for the Best Researcher Award reflects his sustained dedication, academic leadership, and influential role in advancing engineering knowledge. Mr. Tieshan Zhang career exemplifies the qualities of innovation, perseverance, and excellence that make him a deserving candidate for this recognition.

Jinyou Dai | Oil and gas field Development and Geology | Best Researcher Award

Assoc. Prof. Dr. Jinyou Dai | Oil and gas field Development and Geology | Best Researcher Award

Associate Professor at China University of Petroleum, Beijing, China

Dr. Jinyou Dai is an accomplished Associate Professor at the School of Petroleum Engineering, China University of Petroleum (Beijing), with over two decades of academic and research experience in petroleum engineering and reservoir geology. He has contributed significantly to the understanding and advancement of enhanced oil recovery (EOR), tight gas reservoir development, and pore-scale modeling. His combined academic rigor and applied research efforts have made notable impacts in both academia and industry.

Profile

Scopus

Education

Dr. Dai earned his Bachelor’s degree in Petroleum and Natural Gas Geological Exploration from China University of Petroleum (East China) in 1997. He pursued a Master’s in Mineral Survey and Exploration at China University of Petroleum (Beijing), graduating in 2000, and completed his Ph.D. in Geological Resources and Geological Engineering in 2003 from the same institution. He subsequently conducted postdoctoral research at China University of Petroleum (Beijing) from 2003 to 2005.

Experience

Following his postdoctoral fellowship, Dr. Dai began his academic career as a Lecturer in 2005 and became an Associate Researcher in 2008 at China University of Petroleum (Beijing). In 2021, he was promoted to Associate Professor. His work encompasses both academic teaching and leading-edge research. He has led or participated in several state and industry-funded research projects, collaborating with leading oilfield companies including Changqing and Daqing Oilfields, focusing on reservoir characterization, production optimization, and enhanced oil recovery.

Research Interest

Dr. Dai’s primary research interests include tight sandstone reservoir development, EOR mechanisms, polymer-water flow in porous media, and pore-throat structure simulation using advanced modeling techniques. He integrates theoretical approaches with field data to optimize oil and gas recovery, and has made key contributions to understanding capillary pressure behavior, recovery factor evaluation, and multi-phase flow characteristics in complex reservoirs.

Award

Dr. Dai has received multiple prestigious recognitions for his scientific contributions. Notably, he was a co-recipient of the First-Class Provincial Award for Invention in 2023 from the China Petroleum and Chemical Automation Application Association, honoring his innovations in efficient development of large tight sandstone gas fields. In 2007, he also received the Second-Class Science and Technology Progress Award from the Ministry of Education for his contributions to complex gas reservoir development theory and applications.

Publication

Dr. Dai has authored numerous impactful publications, including:

(1) Research on the integrated calculation method of current recovery and limited recovery in tight sandstone gas reservoirs, Frontiers in Earth Science, 2024 — cited for its novel recovery modeling approach.
(2) Study on Applicability of Ball-and-Stick Model in Reservoir Pore-Throat Network Simulation, Processes, 2025 — foundational for pore-throat network modeling.
(3) 常规压汞-恒速压汞联合曲线构型模式及其指示意义, 新疆石油地质, 2024 — explored capillary pressure curves and their implications.
(4) Distribution regularity and formation mechanism of gas and water in the western area of Sulige gas field, Petroleum Exploration and Development, 2012 — a detailed study of gas-water distribution mechanisms.
(5) 鄂尔多斯盆地延长组绿泥石膜的形成机制, Journal of China University of Petroleum (Natural Science Edition), 2016 — on the formation mechanisms of chlorite films.

These works have been cited in studies related to pore-scale modeling, reservoir simulation, and EOR strategies, illustrating their academic and practical value.

Conclusion

Dr. Jinyou Dai represents a rare blend of academic excellence and applied industry relevance. Through his pioneering research, extensive publication record, and innovative technologies, he continues to influence petroleum engineering practices both within China and internationally. His commitment to advancing reservoir engineering theory and his role in transforming field operations through scientific insight make him a highly deserving candidate for this award.

Bawoke Mekuye Getnet | Petroleum Engineering | Best Researcher Award

Mr. Bawoke Mekuye Getnet | Petroleum Engineering | Best Researcher Award

Researcher and Lecturer at Mekdela Amba University, Ethiopia

Bawoke Mekuye Getnet is a dedicated physicist and academic with substantial experience in both secondary and higher education, coupled with a growing research profile in nanomaterials and computational condensed matter physics. His academic journey has been defined by a deep commitment to enhancing scientific understanding and innovation in Ethiopia. As a lecturer and coordinator at Mekdela Amba University, he plays a pivotal role in shaping the academic and research landscape of the institution. His work, marked by both theoretical and computational depth, has contributed meaningfully to the study of optical properties and magnetic behavior in nanomaterials and semiconductors.

Profile

Orcid

Education

Bawoke Mekuye began his academic journey in physics at Dilla University, where he earned his Bachelor of Science in 2013. Following his passion for deeper scientific inquiry, he pursued a Master of Science degree at Debre Markos University, completing it in 2019 with a focus on applied and theoretical physics. His academic background has provided him with a strong foundation in computational modeling and materials science, which he has skillfully applied in both research and teaching.

Experience

Starting his career as a physics teacher at Debre Work Secondary and Preparatory School in 2013, Bawoke Mekuye developed a strong grounding in pedagogy and science communication. In 2020, he transitioned into higher education as a lecturer at Mekdela Amba University, where he currently teaches undergraduate and postgraduate students. Since 2023, he has also served as the Coordinator for Undergraduate, Postgraduate, and Continuing Education Programs in the College of Natural and Computational Sciences. In this role, he has been instrumental in curriculum development and academic program management. His experience extends to teacher training and professional development, having conducted multiple training sessions for educators and students.

Research Interest

Bawoke Mekuye’s research interests lie at the intersection of nanotechnology, materials science, and condensed matter physics. He focuses primarily on the optical and magnetic properties of nanomaterials, with specific attention to the effects of size, doping, and external fields on semiconductor behavior. His theoretical and computational investigations explore advanced materials such as diluted magnetic semiconductors, silver and gold nanoparticles, and emerging energy-related nanostructures. Through his work, he aims to contribute to advancements in high-performance materials for electronics, photonics, and energy storage systems.

Awards and Recognition

Throughout his academic and professional career, Bawoke Mekuye has received recognition for his commitment to science and education. He was honored by Mekdela Amba University for his seminar presentation on nanomaterials, where he effectively communicated complex concepts regarding synthesis, classification, and application of nanostructures. Additionally, he has been active as a reviewer for renowned scientific journals including those published by IOP, Elsevier, and Springer Nature, further reflecting his growing standing in the scientific community.

Publications

Bawoke Mekuye has authored and co-authored multiple peer-reviewed publications in prominent journals, reflecting his expertise in computational physics and nanomaterials. Among his most cited works are:

Mekuye B, Abera B. “Nanomaterials: An overview of synthesis, classification, characterization, and applications.” Nano Select, 2023.

Mekuye B. “The Impact of Size on the Optical Properties of Silver Nanoparticles Based on Dielectric Function.” IntechOpen, 2023.

Mekuye B, Höfer R, Mebratie G. “Computational Study of the Effect of the Size-Dependent Dielectric Functions of Gold Nanomaterials on Optical Properties.” Advances in Condensed Matter Physics, 2024.

Mekuye B, Atnafu D, et al. “Computational investigation of high Curie temperature in iron‐doped GaSb.” Nano Select, 2024.

Mekuye B, Zerihun G. “Theoretical study on the effects of Mn ion doping and magnetic field in (In, Mn)As.” Results in Physics, 2024.

Mekuye B, Höfer R, Abera B. “Nanomaterials: Terms, Definition and Classification.” Elsevier, 2024.

Mekuye B, Mebratie G, et al. “Energy: An Overview of Type, Form, Storage, Advantages, Efficiency, and Their Impact.” Energy Science & Engineering, 2024.

These publications have collectively gained citations from numerous researchers exploring nanostructured materials, semiconductor physics, and applied energy systems.

Conclusion

Bawoke Mekuye Getnet stands out as a rising academic whose contributions span both education and scientific research. His dedication to teaching, mentoring, and academic coordination complements his research excellence in the field of nanomaterials and theoretical physics. With his active engagement in scholarly communication, peer review, and training initiatives, he continues to foster scientific innovation and educational excellence in Ethiopia and beyond. His career trajectory reflects not only a deep passion for physics but also a forward-looking vision for the transformative role of science in society.