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首页> 外文期刊>Planetary and space science >Scaling of convective velocity in a vertically vibrated granular bed
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Scaling of convective velocity in a vertically vibrated granular bed

机译:垂直振动颗粒床中对流速度的缩放

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We experimentally study the velocity scaling of granular convection which is a possible mechanism of the regolith migration on the surface of small asteroids. In order to evaluate the contribution of granular convection to the regolith migration, the velocity of granular convection under the microgravity condition has to be revealed. Although it is hard to control the gravitational acceleration in laboratory experiments, scaling relations involving the gravitational effect can be evaluated by systematic experiments. Therefore, we perform such a systematic experiment of the vibration-induced granular convection. From the experimental data, a scaling form for the granular convective velocity is obtained. The obtained scaling form implies that the granular convective velocity can be decomposed into two characteristic velocity components: vibrational and gravitational velocities. In addition, the system size dependence is also scaled. According to the scaling form, the granular convective velocity v depends on the gravitational acceleration g as v ∝ g~(0.97) when the normalized vibrational acceleration is fixed.
机译:我们通过实验研究了颗粒对流的速度定标,这是小型小行星表面重排石迁移的可能机制。为了评估颗粒对流对胶结岩迁移的贡献,必须揭示微重力条件下颗粒对流的速度。尽管在实验室实验中很难控制重力加速度,但是可以通过系统实验评估涉及重力效应的比例关系。因此,我们对振动引起的颗粒对流进行了系统的实验。从实验数据中,获得对流速度的比例形式。所获得的标度形式意味着颗粒对流速度可以分解为两个特征速度分量:振动速度和重力速度。另外,系统大小依赖性也被缩放。根据定标形式,当归一化的振动加速度固定时,颗粒对流速度v取决于重力加​​速度g为v ∝ g〜(0.97)。

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