XXXI International Mineral Processing Congress 2024 Proceedings/Washington, DC/Sep 29–Oct 3 3845
de Klerk, D., Govender, I., Mainza, A., 2019. Geometric
features of tumbling mill flows: A positron emission
particle tracking investigation. Chemical Engineering
Science 206, 41–49.
Hawkesworth, M.R., O’Dwyer, M., Walker, J., Fowles, P.,
Heritage, J., Stewart, P., Witcomb, R., Bateman, J.,
Connolly, J., Stephenson, R., 1986. A positron cam-
era for industrial application. Nuclear Instruments and
Methods A 253, 145–157.
Kumaran, V., 2004. Constitutive relations and linear stabil-
ity of a sheared granular flow. Journal of Fluid Mechanics
506, 1–43.
Monaghan, J.J. (1992). Smoothed particle hydrodynamics.
Ann. Rev. Astron. Appl. 30, 543–574.
Moodley, T. L., &Govender, I., 2022. Experimental valida-
tion of DEM in rotating drums using Positron Emission
Particle Tracking. Mechanics Research Communications.
Parker, D.J., Broadent, C.J., Fowles, P., Hawkesworth, M.R.,
McNeil, G.T., 1993. Positron emission particle track-
ing a technique for studying flow within engineering
equipment. Nuclear Instruments Methods in Physics
Research 326(3), 592–607.
Potapov, A and Campbell, C. S., 2001. Liquid–solid flows
using smoothed article hydrodynamics and the discrete
element method. Powder Technology, 116:204–213.
Rose, H., Sullivan, R., 1957. A treatise on the Internal
Mechanics of Ball, Tube and Rod mills. Constable,
London.
Previous Page Next Page