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摩擦力机制与侵入颗粒介质的无穷穿透条件。

Friction force regimes and the conditions for endless penetration of an intruder into a granular medium.

机构信息

Instituto de Física, Benemérita Universidad Autónoma de Puebla, Apartado Postal J-48, Puebla 72570, Mexico.

出版信息

Phys Rev E. 2017 Sep;96(3-1):030901. doi: 10.1103/PhysRevE.96.030901. Epub 2017 Sep 25.

Abstract

An intruder penetrating into a granular column experiences a depth-dependent friction force F(z). Different regimes of F(z) have been measured depending on the experimental design: a nearly linear dependence for shallow penetrations, total saturation at large depths, and an exponential increase when the intruder approaches the bottom of the granular bed. We report here an experiment that allows us to measure the different regimes in a single run during the quasistatic descent of a sphere in a light granular medium. From the analysis of the resistance in the saturation zone, it was found that F(z) follows a cube-power-law dependence on the intruder diameter and an exponential increase with the packing fraction of the bed. Moreover, we determine the critical mass m_{c} required to observe infinite penetration and its dependence on the above parameters. Finally, we use our results to estimate the final penetration depth reached by intruders of masses m<m_{c}. The results indicate that an intruder of any density (larger than the density of the granular bed) can sink indefinitely into the granular medium if the bed packing fraction is smaller than a critical value.

摘要

侵入者在颗粒柱中会遇到深度相关的摩擦力 F(z)。根据实验设计,已经测量了 F(z) 的不同状态:浅侵入时接近线性依赖,大深度时完全饱和,侵入者接近颗粒床底部时呈指数增长。我们在这里报告了一个实验,该实验允许我们在球体在轻颗粒介质中的准静态下降过程中在单次运行中测量不同的状态。从对饱和区阻力的分析中发现,F(z) 随侵入者直径呈立方幂律依赖关系,并随床层堆积分数呈指数增长。此外,我们确定了观察无限穿透所需的临界质量 m_{c}及其对上述参数的依赖性。最后,我们使用我们的结果来估计质量小于 m_{c}的侵入者最终达到的穿透深度。结果表明,如果床层堆积分数小于一个临界值,任何密度(大于颗粒床密度)的侵入者都可以无限地沉入颗粒介质中。

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