The Shields parameter, also called the Shields criterion or Shields number, is a
nondimensional number used to calculate the initiation of motion of
sediment
Sediment is a solid material that is transported to a new location where it is deposited. It occurs naturally and, through the processes of weathering and erosion, is broken down and subsequently sediment transport, transported by the action of ...
in a
fluid flow
In physics, physical chemistry and engineering, fluid dynamics is a subdiscipline of fluid mechanics that describes the flow of fluids – liquids and gases. It has several subdisciplines, including (the study of air and other gases in motion ...
. It is a dimensionalization of a
shear stress
Shear stress (often denoted by , Greek alphabet, Greek: tau) is the component of stress (physics), stress coplanar with a material cross section. It arises from the shear force, the component of force vector parallel to the material cross secti ...
, and is typically denoted
or
. This parameter has been developed by
Albert F. Shields, and is called later Shields parameter. The Shields parameter is the main parameter of the
Shields formula
The Shields formula is a formula for the stability calculation of granular material (sand, gravel) in running water.
The stability of granular material in flow can be determined by the Shields formula or the Izbash formula. The first is more sui ...
. The Shields parameter is given by:
:
where:
*
is a dimensional shear stress;
*
is the density of the sediment;
*
is the density of the fluid;
*
is acceleration due to gravity;
*
is a characteristic particle diameter of the sediment.
The critical shear stress and also the critical Shields number (
and
) describe the conditions when the sediment starts moving. Note that the shear stress is a property of the current, while the critical shear stress is a property of the sediment.
Physical meaning
By multiplying the top and bottom of the Shields parameter by ''D''
2, you can see that it is proportional to the ratio of fluid force on the particle to the weight of the particle.
References
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External links
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Sedimentology
Dimensionless numbers of physics
Fluid dynamics
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