Momentum-conserving ROMs for the incompressible Navier-Stokes equations

08/19/2022
by   Henrik K. E. Rosenberger, et al.
0

Projection-based model order reduction of an ordinary differential equation (ODE) results in a projected ODE. Based on this ODE, an existing reduced-order model (ROM) for finite volume discretizations satisfies the underlying conservation law over arbitrarily chosen subdomains. However, this ROM does not satisfy the projected ODE exactly but introduces an additional perturbation term. In this work, we propose a novel ROM with the same subdomain conservation properties which indeed satisfies the projected ODE exactly. We apply this ROM to the incompressible Navier-Stokes equations and show with regard to the mass equation how the novel ROM can be constructed to satisfy algebraic constraints. Furthermore, we show that the resulting mass-conserving ROM allows us to derive kinetic energy conservation and consequently nonlinear stability, which was not possible for the existing ROM due to the presence of the perturbation term.

READ FULL TEXT

page 1

page 2

page 3

page 4

research
09/11/2023

Local conservation laws of continuous Galerkin method for the incompressible Navier–Stokes equations in EMAC form

We consider local balances of momentum and angular momentum for the inco...
research
06/06/2022

A High Order Stabilized Solver for the Volume Averaged Navier-Stokes Equations

The Volume-Averaged Navier-Stokes equations are used to study fluid flow...
research
01/31/2023

Energy-Conserving Neural Network for Turbulence Closure Modeling

In turbulence modeling, and more particularly in the Large-Eddy Simulati...
research
03/20/2023

Improved Crouzeix-Raviart scheme for the Stokes and Navier-Stokes problem

The resolution of the incompressible Navier-Stokes equations is tricky, ...
research
11/06/2019

Variational multiscale modeling with discretely divergence-free subscales

We introduce a residual-based stabilized formulation for incompressible ...
research
10/08/2019

A Discrete and Continuum Model of Data Flow

We present a simplified model of data flow on processors in a high perfo...

Please sign up or login with your details

Forgot password? Click here to reset