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Updated: Apr 22, 2026

Impacts of Free-falling Spheres on a Deep Liquid Pool with Altered Fluid and Impactor Surface Conditions
Published on: February 17, 2019
Penetration of spherical projectiles into wet granular media
S P D Birch1, M Manga2, B Delbridge2
1Department of Earth and Atmospheric Sciences, Cornell University, Ithaca, New York 14853-6801, USA and Department of Earth and Planetary Science, University of California Berkeley, Berkeley, California 94720-4767, USA.
Abstract:
We measure experimentally the penetration depth d of spherical particles into a water-saturated granular medium made of much smaller sand-sized grains. We vary the density, size R, and velocity U of the impacting spheres, and the size δ of the grains in the granular medium. We consider velocities between 7 and 107 m/s, a range not previously addressed, but relevant for impacts produced by volcanic eruptions. We find that d∝R(1/3)δ(1/3)U(2/3). The scaling with velocity is similar to that identified in previous, low-velocity collisions, but it also depends on the size of the grains in the granular medium. We develop a model, consistent with the observed scaling, in which the energy dissipation is dominated by the work required to rearrange grains along a network of force chains in the granular medium.
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