Forced turbulence combined with the effect of rotation and shear flow is studied. In a previous paper [N. Leprovost and E. J. Kim, Phys. Rev. E 78, 016301 (2008)], we considered the case where the shear and the rotation are perpendicular. Here, we consider the complementary case of parallel rotation and shear, elucidating how rotation and flow shear influence the generation of shear flow (e.g., the direction of energy cascade), turbulence level, transport of particles, and momentum. We show that turbulence amplitude and transport are always quenched due to strong shear ( ξ = ν k 2 y / A ⪡ 1 , where A is the shearing rate, ν is the molecular viscosity, and k y is a characteristic wave number of small-scale turbulence)...
Aims. We study the Reynolds stresses which describe turbulent momentum transport from turbulence af...
Homogeneous turbulence in rotating shear flows is studied by means of pseudospectral direct numerica...
We tackle the question of how anisotropy in flows subject to background rotation favours structures ...
Forced turbulence combined with the effect of rotation and shear flow is studied. In a previous pape...
Rotation and shear flows are ubiquitous features of many astrophysical and geophysical bodies. To un...
We study the effect of rotation on sheared turbulence, due to differential rotation. By solving quas...
The effect of rotation on a homogeneous turbulent shear flow has been studied by means of a series o...
Angular momentum transport due to hydrodynamic turbulent convection is studied using local three-dim...
We consider turbulence induced by an arbitrary forcing and derive turbulence amplitude and turbulent...
This study is based on a series of nine direct numerical simulations of homogeneous turbulence, in w...
Context. Turbulent transport in stellar radiative zones is a key ingredient of stellar evolution the...
International audienceHomogeneous turbulence in rotating shear flows is studied by means of pseudosp...
International audienceThis study is based on a series of nine direct numerical simulations of homoge...
To elucidate the influence of shear flow on the generation of magnetic fields through the modificati...
Aims. We study the Reynolds stresses which describe turbulent momentum transport from turbulence af...
Homogeneous turbulence in rotating shear flows is studied by means of pseudospectral direct numerica...
We tackle the question of how anisotropy in flows subject to background rotation favours structures ...
Forced turbulence combined with the effect of rotation and shear flow is studied. In a previous pape...
Rotation and shear flows are ubiquitous features of many astrophysical and geophysical bodies. To un...
We study the effect of rotation on sheared turbulence, due to differential rotation. By solving quas...
The effect of rotation on a homogeneous turbulent shear flow has been studied by means of a series o...
Angular momentum transport due to hydrodynamic turbulent convection is studied using local three-dim...
We consider turbulence induced by an arbitrary forcing and derive turbulence amplitude and turbulent...
This study is based on a series of nine direct numerical simulations of homogeneous turbulence, in w...
Context. Turbulent transport in stellar radiative zones is a key ingredient of stellar evolution the...
International audienceHomogeneous turbulence in rotating shear flows is studied by means of pseudosp...
International audienceThis study is based on a series of nine direct numerical simulations of homoge...
To elucidate the influence of shear flow on the generation of magnetic fields through the modificati...
Aims. We study the Reynolds stresses which describe turbulent momentum transport from turbulence af...
Homogeneous turbulence in rotating shear flows is studied by means of pseudospectral direct numerica...
We tackle the question of how anisotropy in flows subject to background rotation favours structures ...