The idealized theory for the quasi-static flow of granular materials which satisfy the Coulomb–Mohr hypothesis is considered. This theory arises in the limit as the angle of internal friction approaches π/2, and accordingly these materials may be referred to as being ‘highly frictional’. In this limit, the stress field for both two-dimensional and axially symmetric flows may be formulated in terms of a single nonlinear second-order partial differential equation for the stress angle. To obtain an accompanying velocity field, a flow rule must be employed. Assuming the non-dilatant double-shearing flow rule, a further partial differential equation may be derived in each case, this time for the streamfunction. Using Lie symmetry methods, a comp...
The slow flow of granular materials is often marked by the existence of narrow shear layers, adjacen...
For axially symmetric flows of granular materials, the velocity equations uncouple from the stress e...
The form of the stress tensor is investigated in smooth, dense granular flows whichare generated in ...
The idealised theory for the quasi-static flow of granular materials which satisfy the Coulomb-Mohr ...
One approach to modeling fully developed shear flow of frictional granular materials is to use a yie...
The Airy stress function, although frequently employed in classical linear elasticity, does not rece...
AbstractThe Airy stress function, although frequently employed in classical linear elasticity, does ...
To model cohesionless granular flow using continuum theory, the usual approach is to assume the cohe...
Some recent studies have considered the stability of unbounded rapid granular shear flow, with the ...
Goodman and Cowin (1972) proposed a continuum theory of a dry cohesionless granular material in whic...
An approximate solution to the flow of a cohesionless granular material in a conical hopper is prese...
In this paper, we deal with the materials possessing angles of internal friction ϕ for which 1 − sin...
Hybrid frictional-kinetic equations are used to predict the velocity, grain temperature, and stress ...
A mathematical study has been undertaken to model various kinds of granular flows including the perf...
This article continues Part I. Here the non-equilibrium responses of the constitutive variables t (C...
The slow flow of granular materials is often marked by the existence of narrow shear layers, adjacen...
For axially symmetric flows of granular materials, the velocity equations uncouple from the stress e...
The form of the stress tensor is investigated in smooth, dense granular flows whichare generated in ...
The idealised theory for the quasi-static flow of granular materials which satisfy the Coulomb-Mohr ...
One approach to modeling fully developed shear flow of frictional granular materials is to use a yie...
The Airy stress function, although frequently employed in classical linear elasticity, does not rece...
AbstractThe Airy stress function, although frequently employed in classical linear elasticity, does ...
To model cohesionless granular flow using continuum theory, the usual approach is to assume the cohe...
Some recent studies have considered the stability of unbounded rapid granular shear flow, with the ...
Goodman and Cowin (1972) proposed a continuum theory of a dry cohesionless granular material in whic...
An approximate solution to the flow of a cohesionless granular material in a conical hopper is prese...
In this paper, we deal with the materials possessing angles of internal friction ϕ for which 1 − sin...
Hybrid frictional-kinetic equations are used to predict the velocity, grain temperature, and stress ...
A mathematical study has been undertaken to model various kinds of granular flows including the perf...
This article continues Part I. Here the non-equilibrium responses of the constitutive variables t (C...
The slow flow of granular materials is often marked by the existence of narrow shear layers, adjacen...
For axially symmetric flows of granular materials, the velocity equations uncouple from the stress e...
The form of the stress tensor is investigated in smooth, dense granular flows whichare generated in ...