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Homogeneous cooling state for a granular mixture

机译:颗粒状混合物的均匀冷却状态

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摘要

The homogeneous cooling state fur a binary mixture of inelastic hard spheres is studied using the Enskog kinetic theory. In the same way as for the one-component fluid, we propose a scaling solution in which the time dependence of the distribution functions occurs entirely through the temperature of the mixture. A surprising result is that the (partial) temperatures of each species are different, although their cooling rates are the same. Approximate forms for the distribution functions are constructed to leading order in a Sonine polynomial expansion showing a small deviation from Maxwellian, similar to that for the one-component case. The temperatures and overall cooling rate are calculated in terms of the restitution coefficients, the reduced density, and the ratios of mass, concentration, and sizes. [S1063-651X(99)00211-1]. [References: 15]
机译:使用Enskog动力学理论研究了非弹性硬球体的二元混合物的均匀冷却态。以与单组分流体相同的方式,我们提出了一种定标解决方案,其中分布函数的时间依赖性完全通过混合物的温度发生。令人惊讶的结果是,尽管每种物种的(局部)温度不同,但它们的冷却速率却相同。分布函数的近似形式按Sonine多项式展开式的前导顺序构造,与Maxwellian的偏差很小,类似于单分量情况。根据恢复系数,降低的密度以及质量,浓度和尺寸之比来计算温度和总体冷却速率。 [S1063-651X(99)00211-1]。 [参考:15]

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