Swirling pipe flows are studied here with an aim towards understanding the onset of the inertial region — where the turbulent-inertia term in the mean momentum equation is balanced by pressure gradient and viscous term is sub-dominant — as well as the clarifying the velocity–vorticity correlations that make up the turbulent inertia. To this end, we first manipulate the mean momentum equation in both axial and azimuthal directions and find some exact results in the inertial region, and carry out direct numerical simulations of swirling pipe flows at axial friction Reynolds numbers of 170 and 500. The swirl number considered in our simulations is S≈0.3, and we compare our results to non-swirling pipe flows at similar Reynolds numbers. We find...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
The investigation of turbulent swirling flow has a great theoretical and practical importance becaus...
Direct numerical simulation of swirling pipe flows is performed to investigate the effects of swirl ...
A direct numerical simulation of a swirling pipe flow is performed to investigate the effects of swi...
A direct numerical simulation of a swirling pipe flow is performed to investigate the effects of swi...
First published online 26 September 2014A detailed analysis of the 'turbulent inertia' (TI) term (th...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Swirling flows are often observed in nature such as weather systems, cyclones and tornados. A number...
Abstract A detailed analysis of the ‘turbulent inertia’ (TI) term (the wall-normal gradient of the ...
The swirling flow field in any pipe cross section viewed from a cylindrical coordinate system a is c...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
The investigation of turbulent swirling flow has a great theoretical and practical importance becaus...
Direct numerical simulation of swirling pipe flows is performed to investigate the effects of swirl ...
A direct numerical simulation of a swirling pipe flow is performed to investigate the effects of swi...
A direct numerical simulation of a swirling pipe flow is performed to investigate the effects of swi...
First published online 26 September 2014A detailed analysis of the 'turbulent inertia' (TI) term (th...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Axially rotating turbulent pipe flow is an example in which the rotation strongly affects the turbul...
Swirling flows are often observed in nature such as weather systems, cyclones and tornados. A number...
Abstract A detailed analysis of the ‘turbulent inertia’ (TI) term (the wall-normal gradient of the ...
The swirling flow field in any pipe cross section viewed from a cylindrical coordinate system a is c...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
Both experimental and numerical studies have been performed aimed at the description of the decay of...
The investigation of turbulent swirling flow has a great theoretical and practical importance becaus...