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Related papers: Penetrating a granular medium by successive impact…

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The intruder segregation dependence on size and density is investigated in the framework of a hydrodynamic theoretical model for vibrated granular media. We propose a segregation mechanism based on the difference of densities between…

Statistical Mechanics · Physics 2007-05-23 L. Trujillo , H. J. Herrmann

We investigate the impact of a free-falling water drop onto a granular layer. First, we constructed a phase diagram of crater shapes with two control parameters, impact speed and grain size. A low-speed impact makes a deeper cylindrical…

Soft Condensed Matter · Physics 2011-02-17 H. Katsuragi

Projectile impact into a light granular material composed of expanded polypropylene (EPP) particles is investigated systematically with various impact velocities. Experimentally, the trajectory of an intruder moving inside the granular…

Soft Condensed Matter · Physics 2019-12-03 Kai Huang , Dariel Hernadez Delfin , Felix Rech , Valentin Dichtl , Raúl Cruz Hidalgo

Understanding the penetration dynamics of intruders in granular beds is relevant not only for fundamental physics, but also for geophysical processes and construction on sediments or granular soils in areas potentially affected by…

Soft Condensed Matter · Physics 2016-09-30 L. Alonso-Llanes , G. Sánchez-Colina , E. Martínez , A. J. Batista-Leyva , R. Toussaint , E. Altshuler

We study experimentally and computationally the dynamics of granular flow during impacts, where intruders strike a collection of disks from above. In the regime where granular force dynamics are much more rapid than the intruder motion, we…

Soft Condensed Matter · Physics 2016-05-25 Abram H. Clark , Lou Kondic , Robert P. Behringer

We present experimental measurements of penetration depths for the impact of spheres into wetted granular media. We observe that the penetration depth in the liquid saturated case scales with projectile density, size, and drop height in a…

Soft Condensed Matter · Physics 2015-06-19 Theodore A. Brzinski , Jorin Schug , Kelly Mao , Douglas J. Durian

This work summarizes a series of studies on two-dimensional granular impact, where an intruding object strikes a granular material at high speed. Many previous studies on granular impact have used a macroscopic force law, which is dominated…

Soft Condensed Matter · Physics 2016-11-03 Abram H. Clark , Alec Petersen , Lou Kondic , Corey O'Hern , Robert P. Behringer

We present evidence for the interactions between a ball and the container boundaries, as well as between two balls, that are mediated by the granular medium during impact cratering. The presence of the bottom boundary affects the final…

Soft Condensed Matter · Physics 2009-01-05 E. L. Nelson , H. Katsuragi , P. Mayor , D. J. Durian

We show how a weak force, $f$, enables intruder motion through dense granular materials subject to external mechanical excitations, in the present case stepwise shearing. A force acts on a Teflon disc in a two dimensional system of…

Soft Condensed Matter · Physics 2018-07-18 Hu Zheng , Dong Wang , Jonathan Barés , Robert P. Behringer

Recently, experiments showed that forces on intruders dragged horizontally through dense, hydrostatic granular packings mainly depend on the local surface orientation and can be seen as the sum of the forces exerted on small surface…

Soft Condensed Matter · Physics 2013-07-19 Fabricio Q. Potiguar , Yang Ding

We perform an experimental study of granular impact, where intruders strike 2D beds of photoelastic disks from above. High-speed video captures the intruder dynamics and the local granular force response, allowing investigation of…

Soft Condensed Matter · Physics 2012-12-10 Abram. H. Clark , Lou Kondic , Robert P. Behringer

We experimentally and computationally study the early-stage forces during intruder impacts with granular beds in the regime where the impact velocity approaches the granular force propagation speed. Experiments use 2D assemblies of…

Soft Condensed Matter · Physics 2020-04-30 Nasser Krizou , Abram H. Clark

Experimental investigations of the exit dynamics of a horizontal cylindrical object were performed in water and silicone oil (50 cSt). The fully immersed cylinder was initially at rest in a still fluid tank before being pushed (or pulled…

When a cylindrical object penetrates granular matter near a vertical boundary, it experiences two effects: its center of mass moves horizontally away from the wall, and it rotates around its symmetry axis. Here we show experimentally that,…

Soft Condensed Matter · Physics 2021-11-05 M. Espinosa , V. L. Díaz , A. Serrano , E. Altshuler

We investigate experimentally the influence of rotation on the penetration depth of a spherical projectile impacting a granular medium. We show that a rotational motion significantly increases the penetration depth achieved. Moreover, we…

Soft Condensed Matter · Physics 2024-05-14 D. D. Carvalho , Y. Bertho , E. M. Franklin , A. Seguin

As a droplet impacts on a granular substrate, both the intruder and the target deform, during which the liquid may penetrate into the substrate. {These three aspects together distinguish} it from other impact phenomena in the literature. We…

Soft Condensed Matter · Physics 2015-11-16 Song-Chuan Zhao , Rianne de Jong , Devaraj van der Meer

We investigate the coupling between interstitial medium and granular particles by studying the hopper flow of dry and submerged system experimentally and numerically. In accordance with earlier studies, we find, that the dry hopper empties…

Soft Condensed Matter · Physics 2017-04-10 Juha Koivisto , Marko Korhonen , Mikko J. Alava , Carlos P. Ortiz , Douglas J. Durian , Antti Puisto

We present data for the penetration of a variety of spheres, dropped from rest, into a level non-cohesive granular medium. We improve upon our earlier work [Uehara {\it et al.} Phys. Rev. Lett. {\bf 90}, 194301 (2003)] in three regards.…

Soft Condensed Matter · Physics 2007-05-23 M. A. Ambroso , C. R. Santore , A. R. Abate , D. J. Durian

Velocity-squared drag forces are common in describing an object moving through a granular material. The resulting force law is a nonlinear differential equation, and closed-form solutions of the dynamics are typically obtained by making…

Soft Condensed Matter · Physics 2013-04-01 Abram H. Clark , Robert P. Behringer

Friction at the endwalls of partially-filled horizontal rotating tumblers induces curvature and axial drift of particle trajectories in the surface flowing layer. Here we describe the results of a detailed discrete element method study of…

Soft Condensed Matter · Physics 2022-01-19 Umberto d'Ortona , Nathalie Thomas , Richard Lueptow