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Percolation Breakdown in Binary and Ternary Monodisperse and Polydisperse Systems of Spherical Particles

  • Johannes Josef Schneider,
  • Alessia Faggian,
  • Mathias Sebastian Weyland,
  • William David Jamieson,
  • Jin Li,
  • Hans-Georg Matuttis,
  • Silvia Holler,
  • Federica Casiraghi,
  • Aitor Patiño Diaz,
  • Lorena Cebolla Sanahuja,
  • Martin Michael Hanczyc,
  • Dandolo Flumini,
  • Peter Eggenberger Hotz,
  • David Anthony Barrow,
  • Pantelitsa Dimitriou,
  • Oliver Castell,
  • Rudolf Marcel Füchslin

摘要

We perform computer simulations of an agglomeration process for monodisperse and polydisperse systems of spherical particles in a cylindrical container, using a simplified stochastic-hydrodynamic model. We consider a ternary system with three particle types A, B, and C, in which only connections of the type \(A-B\) can be forged, while any other connections with particles of the same type or with C-particles are forbidden, and for comparison a binary system with two particle types A and C, in which only connections of the type \(A-A\) can be formed. We study the breakdown of the percolation in the agglomeration at the bottom of the cylinder with an increasing fraction of C-particles.