Avalanches in 2D granular media
ORAL
Abstract
Granular systems are ubiquitous in nature, ranging from sand and colloids to planetary bodies and popcorn and present a very rich behavior. In this work, we focus on a single layer of mono-disperse beads that are shaken horizontally with an orbital motion (no out-of-plane oscillations). We find that a critical velocity exists above which a nucleation phenomenon is triggered: one bead leaves the plane and goes up. This event then triggers the ascension of other beads and ultimately leads to a steady state with two layers (one on the plate and one up in the air) and a permanent flow between them. We investigate this phenomenon using a combination of experiments, state-of-the-art machine learning algorithms and numerical simulations and identify a scaling law to describe it. Since our experiments can be easily visualized, we envisage that they could serve as a platform to gain insight into avalanches and phase transitions in more complex and less accessible systems.
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Presenters
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Florent Pollet
Harvard University
Authors
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Florent Pollet
Harvard University
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Adel A Djellouli
Harvard University
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Anne S Meeussen
Harvard University
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Gabriele Albertini
Harvard University
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Ilya Svetlizky
Harvard University
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Arthur Young
Harvard University
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Chris Rycroft
University of Wisconsin-Madison, University of Wisconsin–Madison
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Shmuel M Rubistein
Harvard University, Hebrew University of Jerusalem, The Hebrew University of Jerusalem
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Katia Bertoldi
Harvard University, Harvard