We give an overview of the progress that has been made in recent years in understanding dynamic multiscaling in homogeneous, isotropic turbulence and related problems. We emphasise the similarity of this problem with the dynamic scaling of time-dependent correlation functions in the vicinity of a critical point in, e.g., a spin system. The universality of dynamic-multiscaling exponents in fluid turbulence is explored by detailed simulations of the GOY shell model for fluid turbulence
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...
High Reynolds numbers Navier-Stokes equations are believed to break self-similarity concerning both ...
The objective of this research has been to develop a consistent theory of the scaling behaviour of t...
We give an overview of the progress that has been made in recent years in understanding dynamic mult...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We systematize the study of dynamic multiscaling of time-dependent structure functions in different ...
We systematize the study of dynamic multiscaling of timedependent structure functions in different m...
We investigate the scaling form of appropriate time-scales extracted from time-dependent correlation...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We present a study of the multiscaling of time-dependent velocity and magnetic-field structure funct...
We discuss the dynamic multiscaling of velocity structure functions in fluid turbulence and contrast...
We obtain, by extensive direct numerical simulations, time-dependent and equal-time structure functi...
We present the first study of the dynamic scaling or multiscaling of passive-scalar turbulence. For ...
We discuss the dynamic multiscaling of velocity structure functions in #uid turbulence and contrast ...
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...
High Reynolds numbers Navier-Stokes equations are believed to break self-similarity concerning both ...
The objective of this research has been to develop a consistent theory of the scaling behaviour of t...
We give an overview of the progress that has been made in recent years in understanding dynamic mult...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We systematize the study of dynamic multiscaling of time-dependent structure functions in different ...
We systematize the study of dynamic multiscaling of timedependent structure functions in different m...
We investigate the scaling form of appropriate time-scales extracted from time-dependent correlation...
We show that different ways of extracting time scales from time-dependent velocity structure functio...
We present a study of the multiscaling of time-dependent velocity and magnetic-field structure funct...
We discuss the dynamic multiscaling of velocity structure functions in fluid turbulence and contrast...
We obtain, by extensive direct numerical simulations, time-dependent and equal-time structure functi...
We present the first study of the dynamic scaling or multiscaling of passive-scalar turbulence. For ...
We discuss the dynamic multiscaling of velocity structure functions in #uid turbulence and contrast ...
CSIR (INDIA), IFCPARThe physics of turbulence is the study of the chaotic and irregular behaviour in...
High Reynolds numbers Navier-Stokes equations are believed to break self-similarity concerning both ...
The objective of this research has been to develop a consistent theory of the scaling behaviour of t...