The scaling properties of the temperature structure function (SF) and temperature-velocity cross-structure function (CSF) are investigated in turbulent Rayleigh-Benard convection (RBC). The measured SFs and CSFs exhibit good scaling in space and time and the resulting SF and CSF exponents are obtained both at the centre of the convection cell and near the sidewall. A universal relationship between the CSF exponent and the thermal dissipation exponent is found, confirming that the anomalous scaling of passive temperature fluctuations in turbulent RBC is indeed caused by the spatial intermittency of the thermal dissipation field. It is also found that the difference in the functional form of the measured SF and CSF exponents at the two differ...
A large-scale circulation velocity, often called the "wind", has been observed in turbulent convecti...
Temporal statistics of temperature and velocity fluctuations are studied in a highly turbulent conve...
In the first part of the thesis, we carried out direct two-dimensional (2D) multipoint measurements ...
The scaling properties of the temperature structure function (SF) and temperature–velocity cross-str...
Direct numerical simulation and stereoscopic particle image velocimetry of turbulent convection are ...
We investigate the interplay between large-scale patterns, so-called superstructures, in the fluctua...
4 pages, 6 figuresAnomalous correlation functions of the temperature field in two-dimensional turbul...
A systematic study of velocity oscillations in turbulent thermal convection is carried out in small ...
The space-time cross-correlation function C-T(r, tau) of local temperature fluctuations in turbulent...
We present new results from a direct numerical simulation of a three-dimensional homogeneous Rayleig...
This Brief addresses two issues of interest of turbulent Rayleigh-Bénard convection. The first issue...
Rayleigh-Benard convection occurs in fluids in enclosed containers under circumstances where heat is...
A systematic study of the thermal dissipation field and its statistical properties is carried out in...
We report experimental results for the temperature variance 2(z) and the corresponding frequency spe...
A large-scale circulation velocity, often called the "wind", has been observed in turbulent convecti...
Temporal statistics of temperature and velocity fluctuations are studied in a highly turbulent conve...
In the first part of the thesis, we carried out direct two-dimensional (2D) multipoint measurements ...
The scaling properties of the temperature structure function (SF) and temperature–velocity cross-str...
Direct numerical simulation and stereoscopic particle image velocimetry of turbulent convection are ...
We investigate the interplay between large-scale patterns, so-called superstructures, in the fluctua...
4 pages, 6 figuresAnomalous correlation functions of the temperature field in two-dimensional turbul...
A systematic study of velocity oscillations in turbulent thermal convection is carried out in small ...
The space-time cross-correlation function C-T(r, tau) of local temperature fluctuations in turbulent...
We present new results from a direct numerical simulation of a three-dimensional homogeneous Rayleig...
This Brief addresses two issues of interest of turbulent Rayleigh-Bénard convection. The first issue...
Rayleigh-Benard convection occurs in fluids in enclosed containers under circumstances where heat is...
A systematic study of the thermal dissipation field and its statistical properties is carried out in...
We report experimental results for the temperature variance 2(z) and the corresponding frequency spe...
A large-scale circulation velocity, often called the "wind", has been observed in turbulent convecti...
Temporal statistics of temperature and velocity fluctuations are studied in a highly turbulent conve...
In the first part of the thesis, we carried out direct two-dimensional (2D) multipoint measurements ...