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Existence and non-uniqueness of weak solutions with continuous energy to the 3D deterministic and stochastic Navier-Stokes equations

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arxiv 2407.17463 v1 pith:ITTVHORL submitted 2024-07-24 math.AP physics.flu-dyn

classification math.APphysics.flu-dyn
keywords energysolutionsinitialstochastictimebackwarddeterministicequations
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The continuity of the kinetic energy is an important property of incompressible viscous fluid flows. We show that for any prescribed finite energy divergence-free initial data there exist infinitely many global in time weak solutions with smooth energy profiles to both the 3D deterministic and stochastic incompressible Navier-Stokes equations. In the stochastic case the constructed solutions are probabilistically strong. Our proof introduces a new backward convex integration scheme with delicate selections of initial relaxed solutions, backward time intervals, and energy profiles. Our initial relaxed solutions satisfy a new time-dependent frequency truncated NSE, different from the usual approximations as it decreases the large Reynolds error near the initial time, which plays a key role in the construction.

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  1. Nonuniqueness in law of stochastic 3d navierstokes equations with general multiplicative noise

    math.PR 2025-05 conditional novelty 7.0 of 10

    For every divergence-free, mean-free initial condition in L2, the 3D stochastic Navier-Stokes equations with Lipschitz multiplicative noise admit infinitely many global probabilistically strong weak solutions, implyin...

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