We simulate the movement and agglomeration of oil droplets in water under constraints, like confinement, using a simplified stochastic-hydrodynamic model. In the analysis of the network created by the droplets in the agglomeration, we focus on the paths between pairs of droplets and compare the computational results for various system sizes.
Paths in a Network of Polydisperse Spherical Droplets / Schneider, Johannes Josef; Faggian, Alessia; Holler, Silvia; Casiraghi, Federica; Jin, Li; Sanahuja, Lorena Cebolla; Matuttis, Hans-Georg; Hanczyc, Martin Michael; Barrow, David Anthony; Weyland, Mathias Sebastian; Flumini, Dandolo; Hotz, Peter Eggenberger; Eschle, Patrik; Diaz, Aitor Patiño; Füchslin, Rudolf Marcel. - (2022). (Intervento presentato al convegno ALIFE tenutosi a Trento nel 18-22 July 2022) [10.1162/isal_a_00502].
Paths in a Network of Polydisperse Spherical Droplets
Faggian, Alessia;Holler, Silvia;Casiraghi, Federica;Li, Jin;Sanahuja, Lorena Cebolla;Hanczyc, Martin Michael;
2022-01-01
Abstract
We simulate the movement and agglomeration of oil droplets in water under constraints, like confinement, using a simplified stochastic-hydrodynamic model. In the analysis of the network created by the droplets in the agglomeration, we focus on the paths between pairs of droplets and compare the computational results for various system sizes.File | Dimensione | Formato | |
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