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Gas-driven subharmonic waves in a vibrated two-phase granular material

机译:振动的两相颗粒材料中的气体驱动次谐波

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摘要

Vibrated powders exhibit striking phenomena: subharmonic waves, oscillons, convection, heaping, and even bubbling. We demonstrate novel rectangular profile subharmonic waves for vibrated granular material, that occur uniquely in the two-phase case of grains, and a fluid, such as air. These waves differ substantially from those for the gas-free case, exhibit different dispersion relations, and occur for specific shaking parameters and air pressure, understandable with gas-particle flow models. These waves occur when the gas diffusively penetrates the granular layer in a time comparable to the shaker period. As the pressure is lowered towards P=0, the granular-gas system exhibits a Knudsen regime. This instability provides an opportunity to quantitatively test models of two-phase flow.
机译:振动的粉末表现出惊人的现象:次谐波,振荡,对流,堆积甚至起泡。我们演示了振动的颗粒状材料的新颖矩形轮廓次谐波波,这种情况仅在谷物和流体(例如空气)的两相情况下发生。这些波与无气体情况下的波有很大不同,表现出不同的色散关系,并且发生在特定的振动参数和气压下,这在气体颗粒流模型中是可以理解的。当气体在与摇床周期相当的时间内扩散扩散进入颗粒层时,就会产生这些波。随着压力朝P = 0降低,颗粒气体系统表现出克努森状态。这种不稳定性为定量测试两相流模型提供了机会。

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