The universality and mathematical physical structure of wall-bounded turbulent flows is a topic of discussions over many decades. There is no agreement about questions like what is the physical mean flow structure, how universal is it, and how universal are theoretical concepts for local and global flow variations. These questions are addressed by using latest direct numerical simulation (DNS) data at moderate Reynolds numbers Re and experimental data up to extreme Re. The mean flow structure is explained by analytical models for three canonical wall-bounded turbulent flows (channel flow, pipe flow, and the zero-pressure gradient turbulent boundary layer). Thorough comparisons with DNS and experimental data provide support for the validity ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of re...
First-principle-based prediction of mean-flow quantities of wall-bounded turbulent flows (channel, p...
Understanding of the structure of turbulent flows at extreme Reynolds numbers (Re) is relevant becau...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of res...
In this Letter, we suggest a simple and physically transparent analytical model of pressure driven t...
The Reynolds number scaling of flow topology in the eigenframe of the strain-rate tensor is investig...
The Reynolds number scaling of flow topology in the eigenframe of the strain-rate tensor is investig...
We review wall-bounded turbulent flows, particularly high–Reynolds number, zero–pressure gradient bo...
The trinity of so-called "canonical" wall-bounded turbulent flows, comprising the zero pressure grad...
The history and theory supporting the idea of a universal log law for turbulent wall-bounded flows a...
The history and theory supporting the idea of a universal log law for turbulent wall-bounded flows a...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of re...
First-principle-based prediction of mean-flow quantities of wall-bounded turbulent flows (channel, p...
Understanding of the structure of turbulent flows at extreme Reynolds numbers (Re) is relevant becau...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of res...
In this Letter, we suggest a simple and physically transparent analytical model of pressure driven t...
The Reynolds number scaling of flow topology in the eigenframe of the strain-rate tensor is investig...
The Reynolds number scaling of flow topology in the eigenframe of the strain-rate tensor is investig...
We review wall-bounded turbulent flows, particularly high–Reynolds number, zero–pressure gradient bo...
The trinity of so-called "canonical" wall-bounded turbulent flows, comprising the zero pressure grad...
The history and theory supporting the idea of a universal log law for turbulent wall-bounded flows a...
The history and theory supporting the idea of a universal log law for turbulent wall-bounded flows a...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
The logarithmic velocity profile of wall-bounded turbulent flow, despite its widespread adoption in ...
Wall-bounded turbulent flows at high Reynolds numbers have become an increasingly active area of re...
First-principle-based prediction of mean-flow quantities of wall-bounded turbulent flows (channel, p...