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The AIMS Conference Series
Special Session 68: Recent advances on interfaces dynamics modeling, simulation and applications
Organizer(s): Shixin Xu , Huaxiong Huang , Ming-Chih Lai
Parallel Session 17 :: Friday, 12/20, 8:00-9:30
Capital Suite 21 B
8:00-8:30
Xiaoping Wang
(The Chinese University of Hong Kong (Shenzhen) and the Shenzhen International Center for Industrial and Applied Mathematics, Peoples Rep of China)
An efficient unconditional energy stable scheme for multiphase flow simulations
8:30-9:00
Wenjun Ying
(Shanghai Jiao Tong University, Peoples Rep of China)
A Cartesian grid method for nonhomogeneous elliptic interface problems on unbounded domains
9:00-9:30
Benzhuo Lu
(Academy of Mathematics and Systems Science, Chinese Academy of Sciences, Peoples Rep of China)
Interfaced neural networks for solving (parametric) interface PDE problems
Parallel Session 18 :: Friday, 12/20, 14:00-16:00
Capital Suite 21 B
14:00-14:30
Xianmin XU
(Chinese Academy of Sciences, Peoples Rep of China)
The Onsager variational principle and physics preserving numerical schemes
14:30-15:00
Xuelian Bao
(South China University of Technology, Peoples Rep of China)
Coupled Capillary-Perivascular Flow and Mass Transport: Modeling and Computation
15:00-15:30
Zhen Zhang
(Southern University of Science and Technology, Peoples Rep of China)
Simulation of wetting/dewetting process on a permeable and inextensible elastic sheet
15:30-16:00
Rong Tang
(The Hong Kong Polytechnic University, Hong Kong)
Convergent finite element approximations of surface evolution with relaxed minimal deformation
Parallel Session 19 :: Friday, 12/20, 16:15-18:45
Capital Suite 21 B
16:15-16:45
Jia Zhao
(Binghamton University, USA)
Thermodynamically consistent hydrodynamic phase-field computational modeling for fluid-structure interaction with moving contact lines
16:45-17:15
Zhenlin Guo
(Beijing Computational Science Research Center, Peoples Rep of China)
Numerical Studies for Multicomponent Vesicles
17:15-17:45
Yuzhe Qin
(Shanxi University, Peoples Rep of China)
A phase field description of droplet dynamics with ion transport