Biography

Prof. Chuanjun Chen

Professor

School of Mathematical and Informational Sciences, Yantai University, Shandong, China.

Email: cjchen@ytu.edu.cn


Qualifications

2006 Ph.D., School of Mathematical Sciences, Shandong University, Shandong, China.

2001 B.Sc., School of Mathematical Sciences, Shandong University, Shandong, China.


Publications (Selected)

  1. Chuanjun Chen, Xiaofeng Yang, Highly efficient and unconditionally energy stable semi-discrete time-marching numerical scheme for the two-phase incompressible flow phase-field system with variable-density and viscosity, Science China Mathematics, 65(2022).
  2. Chuanjun Chen, Xiaofeng Yang, Fully-decoupled, energy stable second-order time-accurate and finite element numerical scheme of the binary immiscible Nematic-Newtonian model, Computer Methods in Applied Mechanics and Engineering, 395(2022), 114963.
  3. Chuanjun Chen, Xiaofeng Yang, A second-order time accurate and fully-decoupled numerical scheme of the Darcy-Newtonian-Nematic model for two-phase complex fluids confined in the Hele-Shaw cell, Journal of Computational Physics, 456(2022), 111026.
  4. Chuanjun Chen, Yuzhi Lou, Hanzhang Hu, Two-grid finite volume element method for the time-dependent Schrödinger equation, Computers & Mathematics with Applications, 108 (2022), 185-195.
  5. Qiongwei Ye, Zhigang Ouyang, Chuanjun Chen, XiaofengYang, Efficient decoupled second-order numerical scheme for the flow-coupled Cahn–Hilliard phase-field model of two-phase flows, Journal of Computational and Applied Mathematics, 405(2022), 113875.
  6. Peng Liu, Zhigang Ouyang, Chuanjun Chen, XiaofengYang, A novel fully-decoupled, linear, and unconditionally energy-stable scheme of the conserved Allen–Cahn phase-field model of a two-phase incompressible flow system with variable density and viscosity, Communications in Nonlinear Science and Numerical Simulation, 107(2022), 106120.
  7. Xiaoli Li, Yanping Chen, Chuanjun Chen, An improved two-grid technique for the nonlinear time-fractional parabolic equation based on the block-centered finite difference method, Journal of Computational Mathematics, 40(2022), 455-473.
  8. Chuanjun Chen, Xiaofeng Yang, Fully-discrete finite element numerical scheme with decoupling structure and energy stability for the Cahn-Hilliard phase-field model of two-phase incompressible flow system with variable density and viscosity, ESAIM-Mathematical Modelling and Numerical Analysis, 55 (5)(2021), 2323-2347. Oct.
  9. Wenting Mao, Huasheng Wang, Chuanjun Chen, A-posteriori error estimations based on postprocessing technique for two-sided fractional differential equations, Applied Numerical Mathematics, 167(7)(2021), 73-91. SEP.
  10. Yuanyuan Zhang, Chuanjun Chen, Chunjia Bi, A quadratic finite volume method for nonlinear elliptic problems, Advances in Computational Mathematics, 47(3)(2021), 32.
  11. Yuzhi Lou, Chuanjun Chen, Guanyu Xue, Two-grid finite volume element method combined with Crank-Nicolson scheme for semilinear parabolic equations, Advances in Applied Mathematics and Mechanics, 13 (2021), 892-913.
  12. Yunjie Gong, Chuanjun Chen, Yuzhi Lou, Guanyu Xue, Crank-Nicolson method of a two-grid finite volume element algorithm for nonlinear parabolic equations, East Asian Journal on Applied Mathematics, 11(3) (2021), 540-559.
  13. Chuanjun Chen, Xi Li, Jun Zhang, XiaofengYang, Efficient linear, decoupled, and unconditionally stable scheme for a ternary Cahn-Hilliard type Nakazawa-Ohta phase-field model for tri-block copolymers, Applied Mathematics and Computation, 388(2021), 125463 JAN.
  14. Huan Liu, Xiangcheng Zheng, Chuanjun Chen, Hong Wang, A characteristic finite element method for the time-fractional mobile/immobile advection diffusion model, Advances in Computational Mathematics, 47(3)(2021), 41. JUN.
  15. Chen Xu, Chuanjun Chen, Xiaofeng Yang, Efficient, non-iterative, and decoupled numerical scheme for a new modified binary phase-field surfactant system, Numerical Algorithms, 86(2021), 863–885.
Free SCIRP Newsletters
Copyright © 2006-2024 Scientific Research Publishing Inc. All Rights Reserved.
Top