World's Best Scientists 2026 revealed!

D-Index & Metrics

Engineering and Technology

D-Index
48
Citations
8250
World Ranking
4609
National Ranking
899

Overview

Wei Ge is affiliated with the Chinese Academy of Sciences in China and has a focused research career in the field of Engineering, with particular specialization in Computational Mechanics. Their work spans several interconnected subfields, including Materials Chemistry, Mechanical Engineering, Ocean Engineering, and Biomedical Engineering.

The primary research topics covered by Wei Ge include granular flow and fluidized beds, lattice Boltzmann simulation studies, fluid dynamics simulations and interactions, particle dynamics in fluid flows, fluid dynamics and heat transfer, thermal properties of materials, and mineral processing and grinding.

The scientist has contributed to multiple articles in prominent publication venues, with the most frequent venues being Chemical Engineering Journal, Powder Technology, Particuology, Chemical Engineering Science, and Industrial & Engineering Chemistry Research.

Recent representative papers authored by Wei Ge include:

  • The Solar Upper Transition Region Imager (SUTRI) Onboard the SATech-01 Satellite, 2023, Research in Astronomy and Astrophysics
  • Long-time simulation of catalytic MTO reaction in a fluidized bed reactor with a coarse-grained discrete particle method - EMMS-DPM, 2020, Chemical Engineering Journal
  • A CFD-DEM-IBM method for Cartesian grid simulation of gas-solid flow in complex geometries, 2020, Chemical Engineering Journal
  • A computational fluid dynamics-discrete element-immersed boundary method for Cartesian grid simulation of heat transfer in compressible gas-solid flow with complex geometries, 2020, Physics of Fluids
  • Euler-Lagrange simulation of dense gas-solid flow with local grid refinement, 2022, Powder Technology

Wei Ge has established collaborative relationships with several frequent co-authors, including Ji Xu, Qi Chang, Junwu Wang, and Chaofeng Hou. These collaborations have led to a significant output of jointly authored publications.

In total, Wei Ge has produced a comprehensive body of work primarily in computational and mechanical engineering topics, with over a hundred publications demonstrating substantial involvement in granular flow and fluidized beds as well as numerical simulation techniques. The research bridges fundamental mechanics and applied engineering problems, focusing on the behavior and simulation of complex fluid-particle systems and heat transfer mechanisms.

Best Publications

  • CFD simulation of concurrent-up gas–solid flow in circulating fluidized beds with structure-dependent drag coefficient

    Ning Yang;Wei Wang;Wei Ge;Jinghai Li

  • The Sunway TaihuLight supercomputer: system and applications

    Haohuan Fu;Junfeng Liao;Jinzhe Yang;Lanning Wang

  • Eulerian simulation of heterogeneous gas–solid flows in CFB risers: EMMS-based sub-grid scale model with a revised cluster description

    Junwu Wang;Wei Ge;Jinghai Li

  • Simulation of Heterogeneous Structure in a Circulating Fluidized-Bed Riser by Combining the Two-Fluid Model with the EMMS Approach

    Ning Yang;Wei Wang;Wei Ge;Linna Wang

  • Multi-scale methodology for complex systems

    Jinghai Li;Jiayuan Zhang;Wei Ge;Xinhua Liu

  • EMMS-based discrete particle method (EMMS–DPM) for simulation of gas–solid flows

    Liqiang Lu;Ji Xu;Wei Ge;Yunpeng Yue

  • Quasi-real-time simulation of rotating drum using discrete element method with parallel GPU computing

    Ji Xu;Huabiao Qi;Xiaojian Fang;Liqiang Lu

  • Meso-scale oriented simulation towards virtual process engineering (VPE)-The EMMS Paradigm

    Wei Ge;Wei Wang;Ning Yang;Jinghai Li

  • Large-scale DNS of gas-solid flows on Mole-8.5

    Qingang Xiong;Bo Li;Guofeng Zhou;Xiaojian Fang

  • From Multiscale Modeling to Meso-Science: A Chemical Engineering Perspective

    Jinghai Li;Wei Ge;Wei Wang;Ning Yang

  • From Multiscale Modeling to Meso-Science: A Chemical Engineering Perspective

    Unknown

  • Physical mapping of fluidization regimes—the EMMS approach

    Wei Ge;Jinghai Li

  • Explorations on the multi-scale flow structure and stability condition in bubble columns

    Ning Yang;Jianhua Chen;Hui Zhao;Wei Ge

  • Analytical multi-scale method for multi-phase complex systems in process engineering—Bridging reductionism and holism

    Wei Ge;Feiguo Chen;Jian Gao;Shiqiu Gao

  • Computer virtual experiment on fluidized beds using a coarse-grained discrete particle method-EMMS-DPM

    Liqiang Lu;Ji Xu;Wei Ge;Guoxian Gao

  • Multiscale structures in particle–fluid systems: Characterization, modeling, and simulation

    Wei Ge;Qi Chang;Qi Chang;Chengxiang Li;Junwu Wang

  • Discrete simulation of granular and particle-fluid flows: from fundamental study to engineering application

    Wei Ge;Limin Wang;Ji Xu;Feiguo Chen

  • Macro-scale phenomena reproduced in microscopic systems—pseudo-particle modeling of fluidization

    Wei Ge;Jinghai Li

  • Dissipative structure in concurrent-up gas–solid flow

    Jinghai Li;Lixiong Wen;Wei Ge;Heping Cui

  • A theoretical bubble breakup model for slurry beds or three-phase fluidized beds under high pressure

    Hui Zhao;Wei Ge

  • Large-Scale DNS of Gas-Solid Flow on Mole-8.5

    Qingang Xiong;Guofeng Zhou;Bo Li;Ji Xua

Frequent Co-Authors

Jinghai Li
Jinghai Li Chinese Academy of Sciences
Wei Wang
Wei Wang Chinese Academy of Sciences
Li Guo
Li Guo Chinese Academy of Sciences
Qingang Xiong
Qingang Xiong General Motors (United States)
Joachim Werther
Joachim Werther Hamburg University of Technology
Chuan-Yu Wu
Chuan-Yu Wu University of Surrey
Guangwen Yang
Guangwen Yang Tsinghua University
Fangli Qiao
Fangli Qiao Ministry of Natural Resources and Forestry
Yuemin Zhao
Yuemin Zhao China University of Mining and Technology
Zhongmin Liu
Zhongmin Liu Chinese Academy of Sciences

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