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惯性悬浮液中的姆潘巴效应。

Mpemba effect in inertial suspensions.

作者信息

Takada Satoshi, Hayakawa Hisao, Santos Andrés

机构信息

Institute of Engineering, Tokyo University of Agriculture and Technology, 2-24-16, Naka-cho, Koganei, Tokyo 184-8588, Japan.

Yukawa Institute for Theoretical Physics, Kyoto University, Kyoto 606-8502, Japan.

出版信息

Phys Rev E. 2021 Mar;103(3-1):032901. doi: 10.1103/PhysRevE.103.032901.

Abstract

The Mpemba effect (a counterintuitive thermal relaxation process where an initially hotter system may cool down to the steady state sooner than an initially colder system) is studied in terms of a model of inertial suspensions under shear. The relaxation to a common steady state of a suspension initially prepared in a quasiequilibrium state is compared with that of a suspension initially prepared in a nonequilibrium sheared state. Two classes of Mpemba effect are identified, the normal and the anomalous one. The former is generic, in the sense that the kinetic temperature starting from a cold nonequilibrium sheared state is overtaken by the one starting from a hot quasiequilibrium state, due to the absence of initial viscous heating in the latter, resulting in a faster initial cooling. The anomalous Mpemba effect is opposite to the normal one since, despite the initial slower cooling of the nonequilibrium sheared state, it can eventually overtake an initially colder quasiequilibrium state. The theoretical results based on kinetic theory agree with those obtained from event-driven simulations for inelastic hard spheres. It is also confirmed the existence of the inverse Mpemba effect, which is a peculiar heating process, in these suspensions. More particularly, we find the existence of a mixed process in which both heating and cooling can be observed during relaxation.

摘要

本文基于剪切作用下的惯性悬浮模型研究了姆潘巴效应(一种违反直觉的热弛豫过程,即初始温度较高的系统可能比初始温度较低的系统更快冷却至稳态)。将最初处于准平衡态的悬浮液弛豫至共同稳态的情况与最初处于非平衡剪切态的悬浮液弛豫至共同稳态的情况进行了比较。确定了两类姆潘巴效应,即正常姆潘巴效应和反常姆潘巴效应。前者具有普遍性,即从冷的非平衡剪切态开始的动力学温度会被从热的准平衡态开始的动力学温度超越,这是因为后者不存在初始粘性加热,从而导致初始冷却更快。反常姆潘巴效应与正常姆潘巴效应相反,因为尽管非平衡剪切态的初始冷却较慢,但它最终可能会超过初始温度较低的准平衡态。基于动力学理论的理论结果与从非弹性硬球的事件驱动模拟中获得的结果一致。还证实了在这些悬浮液中存在逆姆潘巴效应,这是一种特殊的加热过程。更具体地说,我们发现存在一种混合过程,在弛豫过程中可以观察到加热和冷却现象。

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