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Teacher Details
  • Personal Information
    Wang XiaoKun

    Wang XiaoKun

    Department:
    |Department of Computer Science and Technology|
    Professional Title:
    Lecturer  
    Position:
    Office:
    1001 of MEE Building
    Tel:
    E-Mail:
    wangxiaokun@ustb.edu.cn
    Undergraduate Courses:
    Compilation principle
    Graduate Courses:
    Research Directions:
    Computer Graphics Virtual Reality 3D Visualization
    Academic And Social Part-Time:
  • Resume

    2006.09-2010.07 Minzu University of China, Bachelor

    2010.09-2013.07 Central University for Nationalities, Master

    2013.09-2017.01 University of Science and Technology Beijing, PhD

    2017.01-present University of Science and Technology Beijing, postdoctoral faculty


  • Representative Papers

    [1] Xiaojuan Ban, Xiaokun Wang*, Liangliang He, Yalan Zhang, Lipeng Wang.Adaptively Stepped SPH for Fluid Animation Based on Asynchronous Time Integration. Neural Computing and Applications, 2018, 29(1), 33-42. (SCI, CCF C)

    [2] Xiaokun Wang, Xiaojuan Ban*, Yalan Zhang, Sinuo Liu, Pengfei Ye. Surface tension model based on implicit incompressible SPH for fluid Simulation. Journal of Computer Science and Technology, 2017, 32(6):1186-1197. ( SCI, CCF B)

    [3] Xiaokun Wang, Xiaojuan Ban*, Runzi He, Xing Liu. Fluid-Solid Boundary Handling using Pairwise Interaction Model for Non-Newtonian Fluid. Symmetry, 2018, 10(4), 94. (SCI)

    [4] XiaoKun Wang, Xiaojuan Ban*,Xu Liu, YaLan Zhang, LiPeng Wang. Efficient Extracting Surfaces Approach Employing Anisotropic Kernels for SPH Fluids. Journal of Visualization, 2015, 19(2): 301-317. (SCI)

    [5] Xiaokun Wang ,Xiaojuan Ban, Yalan Zhang, Xu Liu. Rigid Body Sampling and Individual Time-Stepping for Rigid-Fluid Coupling of SPH Fluids. Scientific Programming, 2017, 4:1-11. (SCI)

    [6] Xiaokun Wang, XiaoJuan Ban, Sinuo Liu, Runzi He, Yuting Xu. Small-Scale Surface Details Simulation using Divergence-free SPH. Journal of Visual Languages and Computing, accept, 2018. (SCI)

    [7] Yalan Zhang, Xiaojuan Ban, Xiaokun Wang, et al. A Symmetry Particle Method towards Implicit Non-Newtonian Fluids. Symmetry, 2017, 9(2):26. (SCI)

    [8] Wang Xiaokun, Ban Xiaojuan, Liu Xu, Zhang Yalan, Wang Lipeng. Efficient anisotropic surface reconstruction algorithm for SPH fluid[J]. Journal of Computer Aided Design and Graphics, 2016, 28(9): 1497-1505 . (EI)

    [9] Xiaokun Wang, Xiaojuan Ban, Xu Liu, Yalan Zhang. Rigid body sampling and individual time-stepping for rigid-fluid coupling of particle based fluids. Lecture Notes in Computer Science, 2016: 210-218. (EI)

    [10] Xiaokun Wang, Xiaojuan Ban, Yalan Zhang, Zhigeng Pan and Sinuo Liu. Anisotropic Surface Reconstruction for Multiphase Fluids. IEEE International Conference on Cyberworlds (CW), 2017. (EI)

    [11] Ruixiang Li, Xiaokun Wang*. Individual Time-Stepping for Rigid-Fluid Coupling of Particle Based Fluids. IEEE International Conference on Cyberworlds(CW), 2016:235-238. (EI)

    [12] Liangliang He, Xiaojuan Ban, Xu Liu, Xiaokun Wang. Individual Time Stepping for SPH Fluids. Eurographics, 2015. (CCF B)


  • Research Performance

    Horizontal items:

    Chinalco Ruimin's new intelligent manufacturing model-intelligent decision-making system, the main participant, 2018.06-2019.12

     

    Research projects:

    1. National Natural Science Foundation of China Youth Project, simulation of fluid interaction phenomena in multiphase flow scenarios, chaired, 2018.01-2020.12

    2. Fundamental scientific research project of central universities, simulation of multiphase flow interaction phenomena of incompressible SPH fluid, presided over, 2017.07-2019.6

    3. General project of China Postdoctoral Fund, Non-Newtonian fluid simulation based on particle method, chair, 2017.12-2018.12

    4. General project of the National Natural Science Foundation of China, interactive animation for heterogeneous fluids, main participant, 2016.01-2019.12

    5. National Natural Science Foundation of China Youth Project, Research on Interactive Fluid Environment in Artificial Life Animation, Main Participant, 2014.01-2016.12


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