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 simplifying assumptions. Here, we consider a generalized version of such a force law which has been used in many studies of granular impact. We show that recasting the force law into an equation for the kinetic energy vs. depth, K(z), yields a linear differential equation, and thus general closed-form solutions for the velocity vs. depth. This approach also has several advantages in fitting such models to experimental data, which we demonstrate by applying it to data from 2D impact experiments. We also prese...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The response of dense ensembles of non-cohesive granular media (GM) subject to the motion of an intr...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
A dense, dry granular target can cause a free-falling intruding object to come to an abrupt stop as ...
The first part of this thesis focuses on the study of the force exerted by a granular packing on an ...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The first part of this thesis focuses on the study of the force exerted by a granular packing on an ...
Context. The impact of a solid object onto a small-body surface can be modeled by the solid impact o...
Context. The impact of a solid object onto a small-body surface can be modeled by the solid impact o...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The response of dense ensembles of non-cohesive granular media (GM) subject to the motion of an intr...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
The penetration of large objects into granular media is encountered commonly both in nature (e.g. im...
A dense, dry granular target can cause a free-falling intruding object to come to an abrupt stop as ...
The first part of this thesis focuses on the study of the force exerted by a granular packing on an ...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The first part of this thesis focuses on the study of the force exerted by a granular packing on an ...
Context. The impact of a solid object onto a small-body surface can be modeled by the solid impact o...
Context. The impact of a solid object onto a small-body surface can be modeled by the solid impact o...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The evaluation of impact forces exerted by flowing granular masses on rigid obstacles is of fundamen...
The response of dense ensembles of non-cohesive granular media (GM) subject to the motion of an intr...