Controlling mixing and segregation in time periodic granular flows

Lieferzeit: Lieferbar innerhalb 14 Tagen

71,90 

Fascinating ideas and methods to control particle mixing and separation by using time-modulated and rate-based flows

ISBN: 3659865745
ISBN 13: 9783659865749
Autor: Bhattacharya, Tathagata
Verlag: LAP LAMBERT Academic Publishing
Umfang: 204 S.
Erscheinungsdatum: 14.05.2016
Auflage: 1/2016
Format: 1.3 x 22 x 15
Gewicht: 322 g
Produktform: Kartoniert
Einband: Kartoniert
Artikelnummer: 9432671 Kategorie:

Beschreibung

The discrete element method (DEM) is considered the gold standard for simulating particle flows. In this book, DEM is employed to investigate the mixing and segregation of granular material in various prototypical solid handling devices commonly found in process industries. Recently, it has been suggested that segregation in particle mixers can be thwarted if the particle flow is inverted at a rate above a critical forcing frequency. Based on the above hypothesis, various configurations of solid mixers (rotating drums) are numerically and experimentally studied to investigate the conditions for improved mixing. In addition, an experimentally validated DEM model is used to find the critical chute length for segregation based on the above hypothesis of time modulation. While segregation is often an undesired effect, sometimes separating the components of a particle mixture is the ultimate goal. Here, two examples of novel rate-based separation devices are demonstrated that have the potential to revolutionize the way particles are separated today across many industries by providing an alternate energy efficient and green means of performing this economically important task.

Autorenporträt

Dr. Bhattacharya is among those rare scientists who have an extensive blend of multidisciplinary academic training (Bachelor's in Mechanical Engineering, Master's in Materials science & a PhD in Chemical Engineering) & a broad industrial research experience. He applies transport phenomena and process modeling to solve complex industrial problems.

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