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The chapter describes the physics of granular solids in fluids.
Recent research work on the slumping rolling transition of granular solids in rotary kilns is reviewed.
Large steel silos are widely used to store huge quantities of granular solids in industry and agriculture.
Pneumatic conveying of granular solids in vertical and inclined risers was studied using electrical capacitance tomography (ECT).
Deliberate mixing of granular solids is an essential operation in the production of industrial powder products usually constituted from different ingredients.
Large steel silos are typical kinds of thin-walled structure which are widely used for storing huge quantities of granular solids in industry and agriculture.
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Within the last decade one novel way, now finding acceptance, is the formation of granular solid into a descending bed through which gas is then passed transversely, a cross-flow moving bed.
The activity of laccase immobilized on perlite was estimated by measuring the oxidation rate of 2,2′-azino-bis (3-ethylbenzothiazoline-6-sulphonic acid) (ABTS) in a recirculating fixed bed reactor previously designed for the assessment of activity of enzymes immobilized on granular solids [ 13].
This paper discusses the influences of the use of elastoplastic non-coaxial models for granular solids on predictions of wall pressure distributions in silos by using the finite element method.
The well known theory by Johanson [J.R. Johanson, A rolling theory for granular solids, Transactions of the ASME, Journal of Applied Mechanics, December 1965, 842 848.] was based on defining the nip angle which identifies a nip region where the material is trapped and pressed to higher bulk density.
Johanson's roll compaction model [J.R. Johanson, A rolling theory for granular solids, ASME Journal of Applied Mechanics E32 (1965) 842 848] is modified to improve its predictions of a compacted ribbon's relative density.
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