Dandan Zhu | Engineering | Best Researcher Award

Assoc. Prof. Dr. Dandan Zhu | Engineering | Best Researcher Award

Assoc. Prof. Dr. Dandan Zhu,China University of Petroleum, Beijing,China

Dr. Dandan Zhu, Associate Professor at China University of Petroleum, Beijing, is a leading researcher in integrating artificial intelligence with petroleum engineering. Her work on intelligent drilling technologies and real-time trajectory control has advanced automation in complex subsurface environments. With over 40 research projects, 39 journal publications, and multiple patents, she bridges theory and field application. Her innovative learning frameworks and strong industry collaborations have significantly contributed to the development of smart drilling systems, reinforcing her candidacy for the Best Researcher Award.

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🎓 Early Academic Pursuits

Dr. Dandan Zhu’s academic journey reflects a deep-rooted passion for engineering and innovation. Her pursuit of excellence began at Beihang University, one of China’s leading institutions in aerospace and engineering, where she earned her Master’s degree in Aircraft Design. This foundational training laid the groundwork for her precision-oriented approach and problem-solving mindset. Driven by a keen interest in cutting-edge technologies and global research exposure, she went on to pursue a Ph.D. in Precision Engineering at the University of Tokyo, Japan. Her doctoral research refined her expertise in high-accuracy systems and complex mechanical processes—skills that would later fuel her contributions in artificial intelligence (AI) and petroleum engineering.

🧑‍💼 Professional Endeavors

Since 2015, Dr. Zhu has served as an Associate Professor at the College of Artificial Intelligence, China University of Petroleum, Beijing (CUPB). In this role, she has emerged as a thought leader and mentor in the field of intelligent energy systems. Her work involves teaching, supervising postgraduate students, and leading several high-impact research initiatives. Dr. Zhu has also built a bridge between academia and industry by actively participating in national-level science and technology programs, NSFC–enterprise joint funding projects, and technical consultations with leading energy companies. Her professional portfolio boasts 40 completed and ongoing research projects and 27 consultancy or industry-driven assignments. These efforts are deeply rooted in real-world challenges, ensuring that her research not only advances academic knowledge but also meets the evolving demands of energy exploration and production sectors.

🧠 Contributions and Research Focus

Dr. Zhu’s core research area lies at the intersection of artificial intelligence and petroleum engineering. Her pioneering work focuses on intelligent drilling systems, real-time wellbore trajectory control, reinforcement learning, and geological modeling. She has developed a robust learning framework that combines offline training, real-time geosteering decision-making, and post-drilling strategy optimization. By leveraging reinforcement learning algorithms and generative simulation environments, Dr. Zhu’s research enhances the adaptability and robustness of drilling operations in geologically uncertain environments. Her research contributions extend beyond theory. Integrated software platforms developed under her leadership have been field-tested in collaboration with major Chinese oil and gas companies, such as CNPC, Sinopec, and CNOOC. These platforms facilitate intelligent automation in subsurface operations, ensuring improved safety, efficiency, and cost-effectiveness.

🏅 Accolades and Recognition

Although Dr. Zhu maintains a modest public profile, her work has earned substantial recognition within academic and professional circles. She has authored 39 papers in reputed journals indexed by SCI and Scopus, and her publications have collectively received over 60 citations since 2020—a testament to their relevance and influence. Her book, published under ISBN: 978-7-3025-3524-9, further underscores her authority in the domain of intelligent drilling technologies. She holds five patents, reflecting her commitment to innovation and practical impact. While she has not yet served on editorial boards, her active participation in international conferences and professional associations such as IEEE, ACM, and SPE demonstrates her ongoing contribution to the global scientific community through peer review and scholarly discourse.

🌍 Impact and Influence

Dr. Zhu’s interdisciplinary collaborations have significantly influenced both academia and industry. Her work has helped develop more intelligent, data-driven petroleum engineering systems, contributing to the broader push for digital transformation in energy exploration. Through partnerships with research institutions and enterprises, she has been instrumental in advancing the application of AI in areas such as hydraulic fracturing, electromagnetic exploration, and 3D geological visualization. Beyond technical outcomes, her projects have delivered impactful results such as enhanced resource recovery, reduced environmental impact, and optimized operational costs—outcomes highly valued by industrial stakeholders. Furthermore, her mentorship of students and young researchers ensures the continuity of innovation and excellence in the field.

🔮 Legacy and Future Contributions

Looking forward, Dr. Zhu is poised to further advance the integration of AI with traditional engineering practices. Her vision includes the development of autonomous drilling systems that can self-optimize and self-correct in real time, even in highly unpredictable geological conditions. She also plans to expand research into simulation-based control frameworks and digital twins, providing a virtual testing ground for future subsurface technologies. With her continued dedication, Dr. Zhu is expected to leave a lasting legacy as a trailblazer in intelligent energy systems. She not only represents the new era of AI-driven engineering but also serves as an inspiration for the next generation of researchers aiming to solve the world’s most pressing energy challenges.

✍️Publication Top Notes


📘End-to-end multiplayer violence detection based on deep 3D CNN

Author: C Li, L Zhu, D Zhu, J Chen, Z Pan, X Li, B Wang

Journal: international conference on network …

Year: 2018


📘PPS-QMIX: Periodically Parameter Sharing for Accelerating Convergence of Multi-Agent Reinforcement Learning

Author: K Zhang, DD Zhu, Q Xu, H Zhou, C Zheng

Journal: international conference on network …arXiv preprint arXiv:2403.02635

Year:  2024


📘An intelligent drilling guide algorithm design framework based on high interactive learning mechanism

Author: Y Zhao, DD Zhu, F Wang, XP Dai, HS Jiao, ZJ Zhou

Journal: Petroleum Science

Year:  2025

Pingqing Fan | Precision actuating | Best Researcher Award

Prof Dr. Pingqing Fan | Precision actuating | Best Researcher Award

Prof Dr. Pingqing Fan, Shanghai University of Engineering Science, China

“Prof. Dr. Pingqing Fan is a renowned expert in the field of materials science and engineering. Currently serving as a professor at Shanghai University of Engineering Science, China, Dr. Fan has made significant contributions to the development of advanced materials and technologies. His research focuses on the design, synthesis, and characterization of functional materials, with applications in energy storage, conversion, and environmental sustainability.”

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Educational Qualification📚

Pingqing Fan’s academic journey is marked by her dedication to excellence and a focus on engineering innovation. She earned her Ph.D. from Shanghai University, where she cultivated her expertise in mechanical and automotive engineering. Her early studies laid a solid foundation in piezoelectric drive theory and bionic robotics, areas that have become central to her career.

Pingqing’s passion for research blossomed during her doctoral studies, where she began to explore the complexities of precision actuating and bionic systems. Her academic foundation has not only driven her own research but also inspired her teaching, making her a respected figure in academia.

Professional Endeavors 💼

Currently a professor and research supervisor at the School of Mechanical and Automotive Engineering at Shanghai University of Engineering Science, Pingqing Fan has dedicated her career to both teaching and groundbreaking research. She is also actively involved in consultancy projects and collaborations with industrial giants like the Western Institute of Computing Technology and CATARC Automotive Test Center.

Her professional roles extend beyond academia to influential positions in professional societies. As a senior member of the China Society of Automotive Engineers and a committee member of its Off-Road Vehicle Technology Branch, she contributes to shaping the future of automotive engineering in China.

Contributions and Research Focus 🔬

Key Research Areas:

  • Piezoelectric Drive Theory: Pingqing has advanced the understanding of high-energy density piezoelectric actuators, paving the way for innovations in precision motion systems.
  • Bionic Robotics: Her research in biomimicry has led to the development of robotics inspired by natural forms, blending engineering precision with biological ingenuity.
  • Precision Actuating Systems: Her work in precision actuators ensures enhanced performance in various industrial applications.

Major Contributions:

Pingqing Fan has spearheaded over 16 consultancy and industry projects, emphasizing the practical application of her research. Her innovative platform for developing electronic water pump controllers for vehicles highlights her commitment to sustainable and efficient automotive solutions.

With 21 published journal articles in esteemed platforms like SCI and Scopus, her work has received widespread recognition, with 465 citations showcasing its impact on the global academic community. Furthermore, she has filed 12 patents, reflecting her ability to translate theoretical knowledge into practical inventions.

Accolades and Recognition 🏆

Pingqing’s achievements have earned her a distinguished reputation in both academia and industry. Her leadership in projects funded by the Shanghai Natural Science Foundation and the Shanghai Automobile Industry Development Fund underscores the value of her contributions.

Her book, identified by ISBN 9787302356035, serves as a vital resource for students and professionals, further cementing her status as a thought leader. As an Academic Bridge Evaluation Expert, she has shaped evaluation criteria that influence academic and industrial practices.

Publication Top Notes 📄

Contributors: Jiateng Shi; Pingqing Fan; Jie Liu
Journal: Ultrasonics
Year: 2025

Research on robot path planning by integrating state-based decision-making A* algorithm and inertial dynamic window approach

ContributorsShun Xing; Pingqing Fan; Xipei Ma; Yansong Wang
Journal: Intelligent Service Robotics
Year: 2024

A novel high energy density single-phase linear piezoelectric motor: design and experiment

Contributors佳腾 石; Pingqing Fan; Yansong Wang; Xipei Ma; Jianpeng Zhou
Journal: Ferroelectrics
Year: 2024
ContributorsWeiPeng Bi; Pingqing Fan; Yansong Wang; Xipei Ma; Jianpeng Zhou
Journal: Review of Scientific Instruments
Year: 2023
Contributors: Yangyang Ge; Xipei Ma; Pingqing Fan; Hu; Tao Yuan; Yansong Wang
Journal: Review of Scientific Instruments
Year: 2023