Simulation of thin film flows with a moving mesh mixed finite element method

Publication date

2018-12-01

Authors

Zhang, H.
Zegeling, Paul AndriesISNI 0000000039492568

Editors

Advisors

Supervisors

Document Type

Article
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License

taverne

Abstract

We present an efficient mixed finite element method to solve the fourth-order thin film flow equations using moving mesh refinement. The moving mesh strategy is based on harmonic mappings developed by Li et al. (2001,2002). To achieve a high quality mesh, we adopt an adaptive monitor function and smooth it based on a diffusive mechanism. A variety of numerical tests are performed to demonstrate the accuracy and efficiency of the method. The moving mesh refinement accurately resolves the overshoot and downshoot structures and reduces the computational cost in comparison to numerical simulations using a fixed mesh.

Keywords

Gravity driven finger, Moving mesh refinement, Non-monotone traveling wave, Smoothing method, Thin film flow equation, Taverne, Computational Mathematics, Applied Mathematics

Citation

Zhang, H & Zegeling, P A 2018, 'Simulation of thin film flows with a moving mesh mixed finite element method', Applied Mathematics and Computation, vol. 338, pp. 274-289. https://doi.org/10.1016/j.amc.2018.06.017