Global well-posedness for two-dimensional flows of viscoelastic rate-type fluids with stress diffusion
arXiv:2204.00378 · doi:10.1007/s00021-022-00696-1
Abstract
We consider the system of partial differential equations governing two-dimensional flows of a robust class of viscoelastic rate-type fluids with stress diffusion, involving a general objective derivative. The studied system generalizes the incompressible Navier--Stokes equations for the fluid velocity and pressure by the presence of an additional term in the constitutive equation for the Cauchy stress expressed in terms of a positive definite tensor . The tensor evolves according to a diffusive variant of an equation that can be viewed as a combination of corresponding counterparts of Oldroyd-B and Giesekus models. Considering spatially periodic problem, we prove that for arbitrary initial data and forcing in appropriate spaces, there exists a unique globally defined weak solution to the equations of motion, and more regular initial data and forcing launch a more regular solution with $\bs B$ positive definite everywhere.