The articles in the book treat flow instability and transition starting with classical material dealt with in an innovative and rigorous way, some newer physical mechanisms explained for the first time and finally with the very complex topic of bombustion and two-phase flow instabilities.
The articles in the book treat flow instability and transition starting with classical material dealt with in an innovative and rigorous way, some new...
The articles in the book treat flow instability and transition starting with classical material dealt with in an innovative and rigorous way, some newer physical mechanisms explained for the first time and finally with the very complex topic of bombustion and two-phase flow instabilities.
The articles in the book treat flow instability and transition starting with classical material dealt with in an innovative and rigorous way, some new...
High Accuracy Computing Methods presents topics in a single source format using unified spectral theory of computing. With developments of DNS and LES, practitioners are rediscovering waves as important in fluid flows, and capturing these numerically is central to high accuracy computing. Analysis of waves and its use in numerical methods in propagating energy at the right velocity (dispersion effects) and with right amplitude (dissipation) are essential. Most industrial codes using Reynolds-averaged Navier Stokes equation with turbulence models cannot conceive of capturing waves. The new...
High Accuracy Computing Methods presents topics in a single source format using unified spectral theory of computing. With developments of DNS and LES...