Xinpu Shen | Petroleum Engineering | Best Researcher Award

Prof. Xinpu Shen | Petroleum Engineering | Best Researcher Award

Professor at China University of Petroleum-Beijing, China

Prof. Xinpu Shen is a distinguished researcher and educator in the field of geomechanics and petroleum engineering, with extensive experience spanning academia and industry. His career highlights include pioneering work in numerical modeling for hydraulic fracturing, wellbore stability, multiphase flow, and casing deformation, which have significantly advanced reservoir engineering practices. He has held senior advisory roles in leading global energy companies, contributing to innovative solutions for complex engineering challenges, while also serving as a professor at top universities where he has taught and supervised students in mechanics, finite element methods, and related subjects. Prof. Shen has successfully led several nationally funded research projects, showcasing his ability to bridge theoretical advances with practical applications. Recognized internationally for his contributions, including being named a Simulia Champion by Dassault Systems, he continues to impact both industry and academia through his research, mentorship, and commitment to advancing geomechanics in energy engineering.

Professional Profile 

Google Scholar | Scopus Profile

Education

Prof. Xinpu Shen has a strong academic foundation in engineering and mechanics, beginning with a bachelor’s degree in mechanical engineering from North China University of Technology, where he built a solid grounding in applied mechanics and engineering design. He pursued a master’s degree in solid mechanics at Northeastern University, further enhancing his expertise in the analysis of materials and structural behavior. His academic journey culminated with a doctorate in solid mechanics from Tsinghua University, one of China’s most prestigious institutions, where he specialized in advanced theories of mechanical behavior and numerical modeling. This educational background equipped him with a deep understanding of both fundamental and applied mechanics, enabling him to bridge theoretical insights with practical engineering applications. His progression through increasingly advanced studies reflects a continuous commitment to mastering his field, laying the intellectual foundation for his later contributions in petroleum engineering, geomechanics, and computational mechanics research.

Experience

Prof. Shen has accumulated extensive professional experience across academia and industry, with nearly three decades dedicated to advancing geomechanics and petroleum engineering. He served as a professor and associate professor at leading universities, where he taught core subjects including mechanics of materials, damage mechanics, plasticity theory, and finite element methods, nurturing future engineers and researchers. Beyond teaching, he has coordinated several nationally funded research projects, demonstrating strong leadership in managing complex scientific initiatives. His industrial experience is equally distinguished, with a significant tenure as a senior technical advisor at Halliburton, where he developed innovative numerical solutions for hydraulic fracturing, reservoir stimulation, and wellbore integrity. He also led research teams in geomechanics within international consulting and engineering companies, contributing to the design and optimization of large-scale energy projects. This unique combination of academic and industrial expertise positions him as a rare professional capable of bridging fundamental science with real-world engineering challenges.

Research Focus

Prof. Shen’s research is centered on geomechanics within the context of petroleum engineering, particularly the development of advanced numerical and theoretical models to address complex subsurface engineering problems. His work covers a wide spectrum of topics, including hydraulic fracturing mechanisms, multiphase flow modeling, wellbore stability analysis, casing deformation prediction, and fracture network development under high-pressure water flooding. He has also contributed significantly to damage mechanics and finite element modeling, applying these approaches to analyze material failure and structural integrity in extreme environments. His research extends to developing in-house software and innovative computational techniques that improve efficiency and accuracy in field applications. By bridging theoretical mechanics with applied petroleum engineering, his work not only advances scientific understanding but also offers practical solutions for optimizing drilling, production, and reservoir management. His focus reflects a strong commitment to addressing industry challenges while simultaneously expanding the frontiers of geomechanics research.

Award and Honor

Prof. Shen’s outstanding contributions to geomechanics and petroleum engineering have been recognized with honors at both national and international levels. A highlight of his career is his recognition as a Simulia Champion by Dassault Systèmes, a global leader in simulation and modeling technologies, reflecting his innovative application of advanced computational methods to complex engineering challenges. This honor underscores his impact on integrating cutting-edge numerical tools into real-world problem-solving, bridging academia, research, and industry applications. In addition to formal awards, his career achievements are reflected in his successful coordination of nationally funded research projects, which showcase both his leadership and his ability to generate impactful solutions of societal and industrial relevance. His recognition by leading organizations positions him among the foremost experts in his field, while his dual role as a researcher and educator amplifies the long-term impact of his work by influencing future generations of engineers and researchers.

Publications Top Notes

  • Title: Damage model for jointed rock mass and its application to tunnelling
    Authors: G. Swoboda, X. P. Shen, L. Rosas
    Year: 1998
    Citations: 93

  • Title: Optimizing multistage hydraulic fracturing design based on three-dimensional (3D) continuum damage mechanics
    Authors: X. Shen, W. B. Standifird, S. Evans
    Year: 2017
    Citations: 30

  • Title: Constitutive theory of plasticity coupled with orthotropic damage for geomaterials
    Authors: X. Shen, Z. Mroz, B. Xu
    Year: 2001
    Citations: 27

  • Title: Numerical analysis of casing failure under non-uniform loading in subsalt wells in paradox basin
    Authors: X. Shen
    Year: 2011
    Citations: 25

  • Title: Predictive model for water absorption in sublayers using a machine learning method
    Authors: W. Liu, W. D. Liu, J. Gu, X. Shen
    Year: 2019
    Citations: 21

  • Title: Trajectory optimization for offshore wells and numerical prediction of casing failure due to production-induced compaction
    Authors: X. Shen, M. Bai, W. Standifird, R. Mitchell
    Year: 2012
    Citations: 21

  • Title: Drilling and Completion in Petroleum Engineering
    Authors: X. Shen, M. Bai, W. Standifird
    Year: 2012
    Citations: 21

  • Title: Stress and deformation characteristics of completion and testing tubing string with expansion joints for ultra-deep HTHP gas wells
    Authors: X. Yang, X. Shen, X. Cui, K. Wang, G. Shen, Z. Wang, T. Qin
    Year: 2020
    Citations: 20

  • Title: A calculation method for the allowable fracturing injection pressure of preventing casing deformation
    Authors: X. Shen, P. Zhang
    Year: 2019
    Citations: 20

  • Title: Optimized perforation tunnel geometry, density and orientation to control sand production
    Authors: J. Zhang, W. B. Standifird, X. Shen
    Year: 2007
    Citations: 20

  • Title: A plasticity-based damage model for concrete
    Authors: X. Shen, L. Yang, F. Zhu
    Year: 2004
    Citations: 20

  • Title: Research progress of ODS FeCrAl alloys – a review of composition design
    Authors: X. Wang, X. Shen
    Year: 2023
    Citations: 17

  • Title: The Characteristics of Elasto-Brittle-Plastic Softening Constitutive Theory and Its Numerical Calculation
    Authors: X. Shen, Z. Cen, B. Xu
    Year: 1995
    Citations: 15

  • Title: DEA-161 Joint Industry Project to Develop an Improved Methodology for Wellbore Stability Prediction: Deepwater Gulf of Mexico Viosca Knoll 989 Field Area
    Authors: X. P. Shen
    Year: 2009
    Citations: 14

  • Title: Analysis of progressive interface failure under monotonic loading
    Authors: Z. Mroz, X. Shen
    Year: 1999
    Citations: 14

Conclusion

Prof. Xinpu Shen’s publication record reflects a strong blend of theoretical development and practical application in geomechanics and petroleum engineering. His most-cited works demonstrate lasting influence in areas such as damage modeling, hydraulic fracturing design, wellbore stability, casing deformation, and advanced constitutive theories. The balance between high-impact journal papers, patents, books, and industry-oriented studies highlights his ability to contribute to both scientific advancement and real-world engineering solutions. His collaborative research with international and national partners further illustrates his versatility and reach in addressing complex challenges across academia and industry. Overall, his body of work positions him as a leading researcher whose contributions have significantly shaped the understanding and practice of geomechanics, making him a strong candidate for recognition through prestigious research awards.

Miao He | Petroleum Engineering | Best Researcher Award

Assoc Prof Dr. Miao He | Petroleum Engineering | Best Researcher Award

Associate Professor, Doctoral Supervisor, Yangtze University, China

🏆 Assoc Prof Dr. Miao He, an esteemed figure in the field of Petroleum Engineering, has been honored with the prestigious Best Researcher Award for their outstanding contributions. Serving as an Associate Professor and Doctoral Supervisor at Yangtze University in China, Dr. He exemplifies excellence in academia and research. Their dedication to advancing knowledge and innovation in petroleum engineering has earned them recognition and respect within the academic community. Through their leadership and expertise, Dr. He continues to inspire future generations of researchers and engineers, shaping the landscape of petroleum engineering for years to come. 🛢️📚

Profile 

Scopus

Research Projects

🔬 He Miao is leading several significant research projects, including the Youth Fund of the National Natural Science Foundation of China, projects with CNPC, CNOOC, Sinopec, and various academic institutions. These projects cover areas such as deepwater drilling, wellbore stability, drilling fluid technology, and more.

Academic Papers

📚 He Miao has authored and co-authored over 40 academic papers published in reputable journals such as Thermal Science and Engineering Progress, Ocean Engineering, and Physics of Fluids. His research contributions encompass topics ranging from coupled modeling of wellbore temperature and stress fields to the development of advanced drilling fluid systems.

Patents and Software

💡 He Miao has contributed to several patented inventions and software developments related to drilling engineering and wellbore management. These innovations include interpretation methods, simulation software, and testing devices aimed at improving drilling efficiency and safety.

Academic and Social Part-time

He Miao actively participates in academic and social activities, serving as a member of the Wuhan Youth Federation and a reviewer for the National Natural Science Foundation. He is also a member of professional organizations such as the Society of Petroleum Engineers (SPE) and contributes as a reviewer for various scientific journals. Additionally, he is involved in collaborative innovation efforts in the field of unconventional oil and gas.

Publications Top Notes

An updated numerical model of fracture fluid loss coupled with wellbore flow in managed pressure drilling
Year: 2023
Citation: Physics of Fluids, 35(5), 053110
Authors: Lin, D., He, M., Xu, M., Zhou, C., Chen, X.

Fully transient coupled prediction model of wellbore temperature and pressure for multi-phase flow during underbalanced drilling
Year: 2023
Citation: Geoenergy Science and Engineering, 223, 211540
Authors: Chen, X., He, M., Xu, M., Zhou, C.

Investigation of pressure wave propagation and attenuation characteristics in managed pressure drilling by fast switching throttle valve
Year: 2023
Citation: Physics of Fluids, 35(1), 014115
Authors: Zhou, C., He, M., Xu, M., Lin, D., Chen, X.

Enhanced stability of low oil-to-water ratio water-in-oil emulsions (oil-based drilling fluids): Synergistic effect of nano-SiO2 and emulsifiers
Year: 2022
Citation: Journal of Petroleum Science and Engineering, 219, 111053
Authors: Pu, L., Xu, P., Xu, M., He, M., Wei, M.

Inversion-based model for quantitative interpretation by a dual-measurement points in managed pressure drilling
Year: 2022
Citation: Process Safety and Environmental Protection, 165, pp. 969–976
Authors: He, M., Chen, X., Xu, M., Chen, H.

Lost circulation materials for deep and ultra-deep wells: A review
Year: 2022
Citation: Journal of Petroleum Science and Engineering, 214, 110404
Authors: Pu, L., Xu, P., Xu, M., Song, J., He, M.