Copyright © 2009 The Society of Powder Technology Japan. Published by Elsevier B.V.Diffusing wave spectroscopy (DWS) can be used to elucidate the fundamentals of particle motion in dynamic dense granular media and the associated mean of the square of the particle velocity fluctuations about the mean flow velocity, which is related directly to the so-called ‘granular temperature’ that underpins many theories for dynamic granular processes. In this paper, we provide an overview of DWS and, by drawing on our previous and new work, demonstrate its application to various fluidized bed (FB) configurations.V. Zivkovic, M.J. Biggs, D.H. Glass and L. Xi
Dissipative granular systems that are driven continuously by an external forcing, like vertical shak...
We report measurements by diffusing-wave spectroscopy of particle motions in a gas-fluidized bed. Th...
We introduce a dynamic light scattering technique capable of resolving motion that changes systemati...
Diffusing wave spectroscopy (DWS), a non-intrusive multiple scattering technique, can be used to stu...
Multiple light scattering (MLS) techniques can be used to elucidate the fundamentals of particle mot...
The granular pressure and granular temperature underpin various models of granular flows while they ...
The behaviour of agitated submerged granular media is of wide relevance technologically and in natur...
We report granular temperature data and long-time dynamics of mono-disperse glass particles in a thr...
The granular temperature, pressure and viscosity are three key variables that underpin the kinetic t...
Density waves are characteristic for fluidized beds and affect measurements on liquidlike dynamics i...
The granular temperature and pressure underpins the kinetic theory of granular flows while they also...
It has been unclear whether bubbles are required to induce particle velocity fluctuations in gas fl...
Contradictory evidence over the role of bubbles in inducing particle velocity fluctuations has been ...
The granular temperature underpins the kinetic theory of granular flows as well as theories for heat...
Granular temperature underpins the kinetic theory of granular flows as well as models for heat trans...
Dissipative granular systems that are driven continuously by an external forcing, like vertical shak...
We report measurements by diffusing-wave spectroscopy of particle motions in a gas-fluidized bed. Th...
We introduce a dynamic light scattering technique capable of resolving motion that changes systemati...
Diffusing wave spectroscopy (DWS), a non-intrusive multiple scattering technique, can be used to stu...
Multiple light scattering (MLS) techniques can be used to elucidate the fundamentals of particle mot...
The granular pressure and granular temperature underpin various models of granular flows while they ...
The behaviour of agitated submerged granular media is of wide relevance technologically and in natur...
We report granular temperature data and long-time dynamics of mono-disperse glass particles in a thr...
The granular temperature, pressure and viscosity are three key variables that underpin the kinetic t...
Density waves are characteristic for fluidized beds and affect measurements on liquidlike dynamics i...
The granular temperature and pressure underpins the kinetic theory of granular flows while they also...
It has been unclear whether bubbles are required to induce particle velocity fluctuations in gas fl...
Contradictory evidence over the role of bubbles in inducing particle velocity fluctuations has been ...
The granular temperature underpins the kinetic theory of granular flows as well as theories for heat...
Granular temperature underpins the kinetic theory of granular flows as well as models for heat trans...
Dissipative granular systems that are driven continuously by an external forcing, like vertical shak...
We report measurements by diffusing-wave spectroscopy of particle motions in a gas-fluidized bed. Th...
We introduce a dynamic light scattering technique capable of resolving motion that changes systemati...