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Enhanced dissipation and stability of Poiseuille flow for two-dimensional Boussinesq system

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arxiv 2405.11787 v1 pith:HLIYQVE3 submitted 2024-05-20 math.AP

classification math.AP
keywords fracleftrightlbracerbraceflowpoiseuillesmall
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abstract

We investigate the nonlinear stability problem for the two-dimensional Boussinesq system around the Poiseuille flow in a finite channel. The system has the characteristic of Navier-slip boundary condition for the velocity and Dirichlet boundary condition for the temperature, with a small viscosity $\nu$ and small thermal diffusion $\mu,$ respectively. More precisely, we prove that if the initial velocity and initial temperature satisfies$$||u_{0}-(1-y^2,0) ||_{H^{\frac{7}{2}+}}\leq c_0\min\left\lbrace \mu,\nu\right\rbrace ^{\frac{2}{3}}$$ and $$ ||\theta_{0}||_{H^1}+|||D_x|^{\frac{1}{8}}\theta_{0}||_{H^1}\leq c_1\min\left\lbrace \mu,\nu\right\rbrace ^{{\frac{31}{24}}}$$ for some small constants $c_0$ and $c_1$ which are both independent of $\mu,\nu$, then we can reach the conclusion that the velocity remains within $O\left( \min\left\lbrace \mu,\nu\right\rbrace ^{\frac{2}{3}}\right) $ of the Poiseuille flow; the temperature remains $O\left( \min\left\lbrace \mu,\nu\right\rbrace ^{\frac{31}{24}}\right) $ of the constant 0, and approaches to 0 as $t\rightarrow\infty.$

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Cited by 2 Pith papers

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  1. Stability threshold of Couette flow for 3D Boussinesq system in Sobolev spaces

    math.AP 2025-04 conditional novelty 7.0 of 10

    For the 3D Boussinesq system near Couette flow with constant background temperature, H2 perturbations satisfying velocity and temperature smallness bounds of order ν and ν² respectively stay global in time.

  2. Enhanced Dissipation, Taylor Dispersion, and Inviscid Damping of Couette flow in the Boussinesq system on the Plane

    math.AP 2025-01 conditional novelty 7.0 of 10

    A proof that Couette flow in the stably stratified Boussinesq system on R^2 is asymptotically stable for Richardson number R>1/4, with explicit enhanced dissipation, Taylor dispersion, and inviscid damping rates.

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