A new and simplified formula for predicting the settling velocity of natural sediment particles is developed. The formula proposes an explicit relationship between the particle Reynolds number and a dimensionless particle parameter. It is applicable to a wide range of Reynolds numbers from the Stokes flow to the turbulent regime. The proposed formula has the highest degree of prediction accuracy when compared with other published formulas. It also agrees well with the widely used diagrams and tables proposed by the U. S. Inter-Agency Committee (1957).Accepted versio
Natural particles are frequently applied in drinking water treatment in up-flow fluidisation process...
Settling phenomenon of solid particles immersed in a turbulent fluid has been investigated, in a con...
A method for predicting the terminal settling velocity of a single solid spherical particle in water...
ABSTRACT: A new and simplified formula for predicting the settling velocity of natural sediment part...
AbstractBased on the general relationship described by Cheng between the drag coefficient and the Re...
Based on the general relationship described by Cheng between the drag coefficient and the Reynolds n...
The settling velocity of sediment is one of the essential parameters in studying freshwater reservoi...
Two formulas are proposed for explicitly evaluating drag coefficient and settling velocity of spheri...
The critical condition for incipient sediment motion is formulated in this note based on the settlin...
A revision of the popular equation of Richardson and Zaki (1954a, Transactions of the Institute of C...
The settlement of particles is of great importance in many areas. The accurate determination of drag...
Soil erosion and deposition models based on the governing mass balance equation require knowledge of...
This research has tried to find a relation between particle settling velocity and shape. This was do...
The literature provides a comprehensive collection of equations to estimate theterminal settling vel...
Single relations that can be used to calculate both the terminal settling velocities of spheres and ...
Natural particles are frequently applied in drinking water treatment in up-flow fluidisation process...
Settling phenomenon of solid particles immersed in a turbulent fluid has been investigated, in a con...
A method for predicting the terminal settling velocity of a single solid spherical particle in water...
ABSTRACT: A new and simplified formula for predicting the settling velocity of natural sediment part...
AbstractBased on the general relationship described by Cheng between the drag coefficient and the Re...
Based on the general relationship described by Cheng between the drag coefficient and the Reynolds n...
The settling velocity of sediment is one of the essential parameters in studying freshwater reservoi...
Two formulas are proposed for explicitly evaluating drag coefficient and settling velocity of spheri...
The critical condition for incipient sediment motion is formulated in this note based on the settlin...
A revision of the popular equation of Richardson and Zaki (1954a, Transactions of the Institute of C...
The settlement of particles is of great importance in many areas. The accurate determination of drag...
Soil erosion and deposition models based on the governing mass balance equation require knowledge of...
This research has tried to find a relation between particle settling velocity and shape. This was do...
The literature provides a comprehensive collection of equations to estimate theterminal settling vel...
Single relations that can be used to calculate both the terminal settling velocities of spheres and ...
Natural particles are frequently applied in drinking water treatment in up-flow fluidisation process...
Settling phenomenon of solid particles immersed in a turbulent fluid has been investigated, in a con...
A method for predicting the terminal settling velocity of a single solid spherical particle in water...