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Exact stress and velocity distributions in a cohesionless material discharging from a conical hopper

✍ Scribed by S.B.M. Moreea; R.M. Nedderman


Publisher
Elsevier Science
Year
1996
Tongue
English
Weight
776 KB
Volume
51
Category
Article
ISSN
0009-2509

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✦ Synopsis


The method of characteristics has been used to predict the exact stress and velocity fields in an incompressible, cohesionless, Coulomb material discharging from a conical hopper for a great variety of boundary conditions imposed on the top surface. It is found that in all cases the stresses and velocity tend to the radial stress and velocity fields and that convergence is achieved about half way down the hopper. This justifies the use of the radial stress field in Jenike's design method. The velocity fields often show regions of more or less constant velocity separated by velocity characteristics. This justifies the assumptions in Drescher's method of predicting velocity distributions.