Numerical analysis of a characteristic stabilized finite element method for the time-dependent Navier–Stokes equations with nonlinear slip boundary conditions
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摘要
Based on a characteristic method, this work is concerned with a finite element approximation to the time-dependent Navier–Stokes equations with nonlinear slip boundary conditions. Since this slip boundary condition of friction type contains a subdifferential property, its continuous variational problem is formulated as an inequality, which can turn into an equality problem by using a powerful regularized method. Then a fully discrete characteristic scheme under the stabilized lower order finite element pairs is proposed for the equality problem. Optimal error estimates for velocity and pressure are derived under the corresponding L2,H1-norms. Finally, a smooth problem test is reported to demonstrate the theoretically predicted convergence order and the expected slip phenomena, and the simulation of a bifurcated blood flow model is displayed to illustrate the efficiency of the proposed method.
论文关键词:Time-dependent Navier–Stokes equations,Nonlinear slip boundary conditions,Characteristic method,Lower order finite element pairs,Error estimates
论文评审过程:Received 18 April 2015, Revised 15 December 2016, Available online 3 February 2017, Version of Record 23 February 2017.
论文官网地址:https://doi.org/10.1016/j.cam.2017.01.012