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Quantitative transfer of regularity of the incompressible Navier-Stokes equations from $\mathbb{R}^3$ to the case of a bounded domain (2107.01803v2)

Published 5 Jul 2021 in math.AP

Abstract: Let $u_0\in C_05 ( B_{R_0})$ be divergence-free and suppose that $u$ is a strong solution of the three-dimensional incompressible Navier-Stokes equations on $[0,T]$ in the whole space $\mathbb{R}3$ such that $| u |{L\infty ((0,T);H5 (\mathbb{R}3 ))} + | u |{L\infty ((0,T);W{5,\infty }(\mathbb{R}3 ))} \leq M <\infty$. We show that then there exists a unique strong solution $w$ to the problem posed on $B_R$ with the homogeneous Dirichlet boundary conditions, with the same initial data and on the same time interval for $R\geq \max(1+R_0, C(a) C(M){1/a} \exp ({CM4T/a})) )$ for any $a\in [0,3/2)$, and we give quantitative estimates on $u-w$ and the corresponding pressure functions.

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