We examine the effects of local turbulence Reynolds number R⋋ and inflow conditions on the magnitude of vorticity in plane turbulent wakes. Measurements of the spanwise component (ω₃) of the fluctuating vorticity vector ω = ω₁i + ω₂j + ω₃k (here the subscripts 1, 2 and 3 denote the streamwise, lateral and spanwise directions, respectively) are made in turbulent wakes of a screen and a circular cylinder. Lateral distributions of ω*₃ (normalized) in general depend on both R⋋ and inflow conditions. In the developing region, as the downstream distance x₁ increases, ω*₃ increases significantly in the screen wake but decreases slightly in the cylinder wake. Far downstream in the self-preserving region, ω*₃ increases linearly with R⋋ while it no l...
The streamwise evolution of an inclined circular cylinder wake was investigated by measuring all thr...
In this paper we investigate by experiments the effect of Reynolds number on a passive scalar (tempe...
Author name used in this publication: A. RinoshikaAuthor name used in this publication: Y. Zhou2005-...
We examine the effects of local turbulence Reynolds number R(lambda) and inflow conditions on the ma...
Measurements of the lateral components ω j (j=2 and 3) of the vorticity fluctuation vector have been...
The three components of the vorticity vector in the intermediate region of a turbulent cylinder wake...
Measurements have been made in nominally two-dimensional turbulent wakes generated by five different...
Turbulence studies were made in the wake of a rotating circular cylinder in a uniform free stream. T...
Approximations to the three vorticity components have been simultaneously obtained using a combinati...
The classic turbulent axisymmetric wake derivation for the spreading of wake half-width, δ, and maxi...
The objective of this experimental study is to characterise the small-scale turbulence in the interm...
This paper considers the lectures on turbulent shear layers and wakes presented and discussed at the...
Wake development behind circular cylinders at Reynolds numbers from 40 to 10,000 was investigated in...
The structure of sphere wakes in a turbulent environment was measured over the following test range:...
The preferential organisation of coherent vortices in a turbulent boundary layer in relation to loca...
The streamwise evolution of an inclined circular cylinder wake was investigated by measuring all thr...
In this paper we investigate by experiments the effect of Reynolds number on a passive scalar (tempe...
Author name used in this publication: A. RinoshikaAuthor name used in this publication: Y. Zhou2005-...
We examine the effects of local turbulence Reynolds number R(lambda) and inflow conditions on the ma...
Measurements of the lateral components ω j (j=2 and 3) of the vorticity fluctuation vector have been...
The three components of the vorticity vector in the intermediate region of a turbulent cylinder wake...
Measurements have been made in nominally two-dimensional turbulent wakes generated by five different...
Turbulence studies were made in the wake of a rotating circular cylinder in a uniform free stream. T...
Approximations to the three vorticity components have been simultaneously obtained using a combinati...
The classic turbulent axisymmetric wake derivation for the spreading of wake half-width, δ, and maxi...
The objective of this experimental study is to characterise the small-scale turbulence in the interm...
This paper considers the lectures on turbulent shear layers and wakes presented and discussed at the...
Wake development behind circular cylinders at Reynolds numbers from 40 to 10,000 was investigated in...
The structure of sphere wakes in a turbulent environment was measured over the following test range:...
The preferential organisation of coherent vortices in a turbulent boundary layer in relation to loca...
The streamwise evolution of an inclined circular cylinder wake was investigated by measuring all thr...
In this paper we investigate by experiments the effect of Reynolds number on a passive scalar (tempe...
Author name used in this publication: A. RinoshikaAuthor name used in this publication: Y. Zhou2005-...