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Granular State Effects on Wave Propagation

机译:颗粒状态对波传播的影响

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摘要

Sound and pressure wave propagation in a granular material is of interest not only for its intrinsic and practical value, but also because it provides a non-intrusive means of probing the state of a granular material. By examining wave speeds and attenuation, insight can be gained into the nature of the contacts between the particles. In the present paper, wave speeds and attenuation rates are first examined for a static granular bed for a variety of system parameters including particle size, composition and the overburden of the material above the measuring transducers. Agitation of the bed is then introduced by shaking the material vertically. This causes the bed to transition from a static granular state to a vibrofluidized state. The dilation of the bed allows for relative particle motion and this has a significant effect on the measured wave speeds and attenuation. Further, the fluid-like characteristics of the agitated bed distort the force-chain framework through which the waves are thought to travel. The consequences of bed consolidation, a natural result of shaking, are also examined.
机译:声波和压力波在粒状材料中的传播不仅受到其固有和实用价值的关注,而且还因为它提供了一种探测粒状材料状态的非侵入性手段,因此受到关注。通过检查波速和衰减,可以洞悉粒子之间的接触性质。在本文中,首先检查静态颗粒床的波速和衰减率,以获得各种系统参数,包括粒径,组成和测量传感器上方材料的覆盖层。然后通过垂直摇动物料来进行床的搅拌。这导致床从静态颗粒状态转变为振动流体状态。床的膨胀允许相对的粒子运动,这对测得的波速和衰减有重大影响。此外,搅拌床的类似流体的特性使力链框架扭曲,认为波浪通过该力链框架传播。还检查了床巩固的后果,这是震动的自然结果。

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