Artículo
Intruder in a two-dimensional granular system: Effects of dynamic and static basal friction on stick-slip and clogging dynamics
Carlevaro, Carlos Manuel
; Kozlowski, Ryan; Pugnaloni, Luis Ariel
; Zheng, Hu; Socolar, Joshua E. S.; Kondic, Lou
Fecha de publicación:
31/01/2020
Editorial:
American Physical Society
Revista:
Physical Review E
ISSN:
2470-0045
e-ISSN:
2470-0053
Idioma:
Inglés
Tipo de recurso:
Artículo publicado
Clasificación temática:
Resumen
We present simulation results for an intruder pulled through a two-dimensional granular system by a spring using a model designed to mimic the experiments described by Kozlowski et al. [Phys. Rev. E 100, 032905 (2019)2470-004510.1103/PhysRevE.100.032905]. In that previous study the presence of basal friction between the grains and the base was observed to change the intruder dynamics from clogging to stick-slip. Here we first show that our simulation results are in excellent agreement with the experimental data for a variety of experimentally accessible friction coefficients governing interactions of particles with each other and with boundaries. We then use simulations to explore a broader range of parameter space, focusing on the friction between the particles and the base. We consider both static and dynamic basal friction coefficients, which are difficult to vary smoothly in experiments. The simulations show that dynamic friction strongly affects the stick-slip behavior when the coefficient is decreased below 0.1, while static friction plays only a marginal role.
Palabras clave:
GRANULAR FLOWS
,
GRANULAR MATERIALS
,
JAMMING
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Articulos(IFLYSIB)
Articulos de INST.FISICA DE LIQUIDOS Y SIST.BIOLOGICOS (I)
Articulos de INST.FISICA DE LIQUIDOS Y SIST.BIOLOGICOS (I)
Citación
Carlevaro, Carlos Manuel; Kozlowski, Ryan; Pugnaloni, Luis Ariel; Zheng, Hu; Socolar, Joshua E. S.; et al.; Intruder in a two-dimensional granular system: Effects of dynamic and static basal friction on stick-slip and clogging dynamics; American Physical Society; Physical Review E; 101; 1; 31-1-2020; 1-9
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