Skip to main content

Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction.

Publication ,  Journal Article
Kozlowski, R; Carlevaro, CM; Daniels, KE; Kondic, L; Pugnaloni, LA; Socolar, JES; Zheng, H; Behringer, RP
Published in: Physical review. E
September 2019

We report on a series of experiments in which a grain-sized intruder is pushed by a spring through a two-dimensional granular material composed of photoelastic disks in a Couette geometry. We study the intruder dynamics as a function of packing fraction for two types of supporting substrates: A frictional glass plate and a layer of water for which basal friction forces are negligible. We observe two dynamical regimes: Intermittent flow, in which the intruder moves freely most of the time but occasionally gets stuck, and stick-slip dynamics, in which the intruder advances via a sequence of distinct, rapid events. When basal friction is present, we observe a smooth crossover between the two regimes as a function of packing fraction, and we find that reducing the interparticle friction coefficient causes the stick-slip regime to shift to higher packing fractions. When basal friction is eliminated, we observe intermittent flow at all accessible packing fractions. For all cases, we present results for the statistics of stick events, the intruder velocity, and the force exerted on the intruder by the grains. Our results indicate the qualitative importance of basal friction at high packing fractions and suggest a possible connection between intruder dynamics in a static material and clogging dynamics in granular flows.

Duke Scholars

Altmetric Attention Stats
Dimensions Citation Stats

Published In

Physical review. E

DOI

EISSN

2470-0053

ISSN

2470-0045

Publication Date

September 2019

Volume

100

Issue

3-1

Start / End Page

032905

Related Subject Headings

  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering
 

Citation

APA
Chicago
ICMJE
MLA
NLM
Kozlowski, R., Carlevaro, C. M., Daniels, K. E., Kondic, L., Pugnaloni, L. A., Socolar, J. E. S., … Behringer, R. P. (2019). Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction. Physical Review. E, 100(3–1), 032905. https://doi.org/10.1103/physreve.100.032905
Kozlowski, Ryan, C Manuel Carlevaro, Karen E. Daniels, Lou Kondic, Luis A. Pugnaloni, Joshua E. S. Socolar, Hu Zheng, and Robert P. Behringer. “Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction.Physical Review. E 100, no. 3–1 (September 2019): 032905. https://doi.org/10.1103/physreve.100.032905.
Kozlowski R, Carlevaro CM, Daniels KE, Kondic L, Pugnaloni LA, Socolar JES, et al. Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction. Physical review E. 2019 Sep;100(3–1):032905.
Kozlowski, Ryan, et al. “Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction.Physical Review. E, vol. 100, no. 3–1, Sept. 2019, p. 032905. Epmc, doi:10.1103/physreve.100.032905.
Kozlowski R, Carlevaro CM, Daniels KE, Kondic L, Pugnaloni LA, Socolar JES, Zheng H, Behringer RP. Dynamics of a grain-scale intruder in a two-dimensional granular medium with and without basal friction. Physical review E. 2019 Sep;100(3–1):032905.

Published In

Physical review. E

DOI

EISSN

2470-0053

ISSN

2470-0045

Publication Date

September 2019

Volume

100

Issue

3-1

Start / End Page

032905

Related Subject Headings

  • 51 Physical sciences
  • 49 Mathematical sciences
  • 40 Engineering