We examine the multiscaling behavior of the normal- and superfluid-velocity structure functions in three-dimensional superfluid turbulence by using a shell model for the three-dimensional (3D) Hall-Vinen-Bekharevich-Khalatnikov (HVBK) equations. Our 3D-HVBK shell model is based on the Gledzer-Okhitani-Yamada shell model. We examine the dependence of the multiscaling exponents on the normal-fluid fraction and the mutual-friction coefficients. Our extensive study of the 3D-HVBK shell model shows that the multiscaling behavior of the velocity structure functions in superfluid turbulence is more complicated than it is in fluid turbulence
We discuss a stochastic closure for the equation of motion satisfied by multiscale correlation funct...
We present the first direct-numerical-simulation study of the statistical properties of two-dimensio...
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...
We examine the multiscaling behavior of the normal- and superfluid-velocity structure functions in t...
We present a systematic study of multiscaling properties of Magnetohydrodynamic (MHD) turbulence in ...
We show that a shell-model version of the three-dimensional Hall-magnetohydrodynamic (3D Hall-MHD) e...
We discuss the dynamic multiscaling of velocity structure functions in fluid turbulence and contrast...
From a numerical study of the magnetohydrodynamic (MHD) equations we show, for the first time in thr...
We discuss a shell-model for the 3D fully developed turbulence. By calculating the structure functio...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We review some recent work on scaling laws in turbulence. The Navier-Stokes equations and the equati...
We discuss the dynamic multiscaling of velocity structure functions in #uid turbulence and contrast ...
We present a study of the multiscaling of time-dependent velocity and magnetic-field structure funct...
This is a paper about multifractal scaling and dissipation in a shell model of turbulence, called th...
We discuss a stochastic closure for the equation of motion satisfied by multiscale correlation funct...
We discuss a stochastic closure for the equation of motion satisfied by multiscale correlation funct...
We present the first direct-numerical-simulation study of the statistical properties of two-dimensio...
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...
We examine the multiscaling behavior of the normal- and superfluid-velocity structure functions in t...
We present a systematic study of multiscaling properties of Magnetohydrodynamic (MHD) turbulence in ...
We show that a shell-model version of the three-dimensional Hall-magnetohydrodynamic (3D Hall-MHD) e...
We discuss the dynamic multiscaling of velocity structure functions in fluid turbulence and contrast...
From a numerical study of the magnetohydrodynamic (MHD) equations we show, for the first time in thr...
We discuss a shell-model for the 3D fully developed turbulence. By calculating the structure functio...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We review some recent work on scaling laws in turbulence. The Navier-Stokes equations and the equati...
We discuss the dynamic multiscaling of velocity structure functions in #uid turbulence and contrast ...
We present a study of the multiscaling of time-dependent velocity and magnetic-field structure funct...
This is a paper about multifractal scaling and dissipation in a shell model of turbulence, called th...
We discuss a stochastic closure for the equation of motion satisfied by multiscale correlation funct...
We discuss a stochastic closure for the equation of motion satisfied by multiscale correlation funct...
We present the first direct-numerical-simulation study of the statistical properties of two-dimensio...
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...