The free settling velocity of cylinders and disks falling in quiescent Newtonian and power law liquids has been measured over wide ranges of experimental conditions of the particle Reynolds number (10-5-~300), power law flow behaviour index (0.31-1) and the length-to-diameter ratio, ~0.4-~14. The corresponding range of sphericity is 0.62 to 0.86. An existing drag expression which has been tested extensively for spherical particles falling in Newtonian and in power law fluids has been slightly modified here for non-spherical particles. In particular, the use of this drag expression necessitates a knowledge of an equal volume sphere diameter (to evaluate the Reynolds number and drag coefficient) and the ratio of the surface area to the projec...
Two formulas are proposed for explicitly evaluating drag coefficient and settling velocity of spheri...
Single relations that can be used to calculate both the terminal settling velocities of spheres and ...
The settling characteristics of large non-spherical particles in the form of discs have been studied...
Extensive experimental results on the free fall of a range of non-spherical particles such as square...
Particle settling in a non-Newtonian power law fluid is of interest to many industrial applications,...
In this work, a selection of widely used correlations have been critically evaluated for estimating ...
New extensive data on the terminal falling velocities of conical shaped bodies in scores of Newtonia...
New experimental data on the free settling velocity of straight chains (up to twenty spheres) and pl...
We present a new general model for the prediction of the drag coefficient of non-spherical solid par...
Knowledge of the settling velocity of spherical particles in non-Newtonian power law liquids is requ...
The aim of this work is to study the wall effect on drag coefficient to reduce the net drag hydrodyn...
We present a new general model for the prediction of the drag coefficient of non-spherical solid par...
ABSTRACT: A systematic error exists in sedimentation techniques used for measuring particle diameter...
The equations of motion for spherical particles accelerating from rest in power law liquids have bee...
The settlement of particles is of great importance in many areas. The accurate determination of drag...
Two formulas are proposed for explicitly evaluating drag coefficient and settling velocity of spheri...
Single relations that can be used to calculate both the terminal settling velocities of spheres and ...
The settling characteristics of large non-spherical particles in the form of discs have been studied...
Extensive experimental results on the free fall of a range of non-spherical particles such as square...
Particle settling in a non-Newtonian power law fluid is of interest to many industrial applications,...
In this work, a selection of widely used correlations have been critically evaluated for estimating ...
New extensive data on the terminal falling velocities of conical shaped bodies in scores of Newtonia...
New experimental data on the free settling velocity of straight chains (up to twenty spheres) and pl...
We present a new general model for the prediction of the drag coefficient of non-spherical solid par...
Knowledge of the settling velocity of spherical particles in non-Newtonian power law liquids is requ...
The aim of this work is to study the wall effect on drag coefficient to reduce the net drag hydrodyn...
We present a new general model for the prediction of the drag coefficient of non-spherical solid par...
ABSTRACT: A systematic error exists in sedimentation techniques used for measuring particle diameter...
The equations of motion for spherical particles accelerating from rest in power law liquids have bee...
The settlement of particles is of great importance in many areas. The accurate determination of drag...
Two formulas are proposed for explicitly evaluating drag coefficient and settling velocity of spheri...
Single relations that can be used to calculate both the terminal settling velocities of spheres and ...
The settling characteristics of large non-spherical particles in the form of discs have been studied...