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Homogeneous Free Cooling State in Binary Granular Fluids of Inelastic Rough Hard Spheres

机译:非弹性粗糙的硬球的二元颗粒液中的均相自由冷却状态

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In a recent paper [A. Santos, G. M. Kremer, and V. Garzo, Prog. Theor. Phys. Suppl. 184, 31-48 (2010)] the collisional energy production rates associated with the translational and rotational granular temperatures in a granular fluid mixture of inelastic rough hard spheres have been derived. In the present paper the energy production rates are explicitly decomposed into equipartition rates (tending to make all the temperatures equal) plus genuine cooling rates (reflecting the collisional dissipation of energy). Next the homogeneous free cooling state of a binary mixture is analyzed, with special emphasis on the quasi-smooth limit. A previously reported singular behavior (according to which a vanishingly small amount of roughness has a finite effect, with respect to the perfectly smooth case, on the asymptotic long-time translational/translational temperature ratio) is further elaborated. Moreover, the study of the time evolution of the temperature ratios shows that this dramatic influence of roughness already appears in the transient regime for times comparable to the relaxation time of perfectly smooth spheres.
机译:在最近的一篇论文中[A. Santos,G. M. Kremer和V. Garzo,Prog。你。物理。提供。已经推导出与颗粒流体混合物的粒状粗糙的硬球中的粒状流体混合物中的平移和旋转颗粒温度相关的碰撞能量产生速率。在本文中,能源生产率明确地分解成备分率(倾向于使所有温度相等)加上真正的冷却速率(反映能量的碰撞耗散)。接下来分析二元混合物的均匀自由冷却状态,特别强调准平滑限制。进一步详细阐述了先前报道的单一行为(根据该粗糙度的粗糙度较小的粗糙度具有有限效果,在渐近的长时间平移/平移温度比上进一步阐述。此外,对温度比的时间演化的研究表明,粗糙度的这种急剧影响已经出现在瞬态制度中,暂时在与完全光滑的球体的弛豫时间相当的时间。

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