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Numerical analysis of 2D Navier--Stokes equations with nonsmooth initial value in the critical space

Numerical Analysis 2025-10-02 v1 Numerical Analysis

Abstract

This paper addresses the numerical solution of the two-dimensional Navier--Stokes (NS) equations with nonsmooth initial data in the L2L^2 space, which is the critical space for the two-dimensional NS equations to be well-posed. In this case, the solutions of the NS equations exhibit certain singularities at t=0t=0, e.g., the HsH^s norm of the solution blows up as t0t\rightarrow 0 when s>0s>0. To date, the best convergence result proved in the literature are first-order accuracy in both time and space for the semi-implicit Euler time-stepping scheme and divergence-free finite elements (even high-order finite elements are used), while numerical results demonstrate that second-order convergence in time and space may be achieved. Therefore, there is still a gap between numerical analysis and numerical computation for the NS equations with L2L^2 initial data. The primary challenge to realizing high-order convergence is the insufficient regularity in the solutions due to the rough initial condition and the nonlinearity of the equations. In this work, we propose a fully discrete numerical scheme that utilizes the Taylor--Hood or Stokes-MINI finite element method for spatial discretization and an implicit-explicit Runge--Kutta time-stepping method in conjunction with graded stepsizes. By employing discrete semigroup techniques, sharp regularity estimates, negative norm estimates and the L2L^2 projection onto the divergence-free Raviart--Thomas element space, we prove that the proposed scheme attains second-order convergence in both space and time. Numerical examples are presented to support the theoretical analysis. In particular, the convergence in space is at most second order even higher-order finite elements are used. This shows the sharpness of the convergence order proved in this article.

Keywords

Cite

@article{arxiv.2510.00393,
  title  = {Numerical analysis of 2D Navier--Stokes equations with nonsmooth initial value in the critical space},
  author = {Buyang Li and Qiqi Rao and Hui Zhang and Zhi Zhou},
  journal= {arXiv preprint arXiv:2510.00393},
  year   = {2025}
}

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27 pages