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The Research Seminar is a weekly space that focuses on various areas of applied mathematics, with special emphasis on Mathematical Optimization and Modeling. The main objective is to share the research results of the Modemat and put the researchers of the Center in contact with academics from all over the world, in person or through virtual platforms. Organizer of the seminar: Sergio González Andrade. To subscribe to the Seminar mailing list or propose a talk in it, please write to: sergio.gonzalez@epn.edu.ec

A generalized three-dimensional discrete element method with electrostatic induced cohesion

A generalized three-dimensional discrete element method with electrostatic induced cohesion

By Alex Jerves, profesor de la Universidad Internacional e investigador del Instituto de Investigaciones Científicas Pioneros del Ecuador – Inspire

Seminar Date: 2020-10-29

Many granular materials can be electrostatically charged when colliding as part of several dust handling processes (Pei et al. in Powder Technol 248:34–43, 2013). The attractive and repulsive forces that result from this handling can lead to the aggregation or segregation of the grains (Grzybowski et al. in Nat Mater 2(4):241–245, 2003) and to an unanticipated grain dispersion (Wu et al. in Ind Eng Chem Res 47(15):5005–5015, 2008). Therefore, understanding the kinematics and dynamics of electrically charged grains is very important in the processing of materials with electrostatic induced cohesion (Pei et al. in AIChE J 61(6):1792–1803, 2015). The present work introduces a new level set-based discrete element method which enables us, for the first time, to a generalized modeling and computational simulation of real three-dimensional cohesive granular media such as clays

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