论文标题

驱动二进制混合物中类似MPEMBA的效应

Mpemba-like effect in driven binary mixtures

论文作者

González, Rubén Gómez, Khalil, Nagi, Garzó, Vicente

论文摘要

当在不同初始温度下的两个样品以使温度在朝平衡的放松期间相互交叉时,MPEMBA效应就会发生。在本文中,我们显示了与热储层(BATH)接触的分子二元混合物中MPEMBA样效应的出现。混合物的气态颗粒与热储层之间的相互作用是通过粘性阻力加上随机Langevin样期限建模的。外部浴室的存在是每个组件的总温度和部分温度的时间演变,即使初始温度差的温度差异是温度的相同顺序,也可以出现mpemba现象。分析结果是通过考虑每个组件的速度分布函数的多振体麦克斯韦近似值获得的。从平衡的靠近和遥远的初始状态(较大的mpemba样效应)进行理论分析。前一种情况使我们能够开发出一个简单的理论,在该理论中,温度的时间演化方程在其渐近平衡溶液周围线性化。该线性理论为跨界时间提供了一种表达。我们还提供了大型MPEMBA效应的定性描述。我们的理论结果与通过直接仿真蒙特卡洛法和进行分子动力学模拟来求解恩科的动力学方程获得的计算机模拟非常吻合。最后,驱动颗粒混合物的初步结果还显示出对非弹性碰撞的类似mpemba样效应的发生。

The Mpemba effect occurs when two samples at different initial temperatures evolve in such a way that the temperatures cross each other during the relaxation towards equilibrium. In this paper we show the emergence of a Mpemba-like effect in a molecular binary mixture in contact with a thermal reservoir (bath). The interaction between the gaseous particles of the mixture and the thermal reservoir is modeled via a viscous drag force plus a stochastic Langevin-like term. The presence of the external bath couples the time evolution of the total and partial temperatures of each component allowing the appearance of the Mpemba phenomenon, even when the initial temperature differences are of the same order of the temperatures themselves. Analytical results are obtained by considering multitemperature Maxwellian approximations for the velocity distribution functions of each component. The theoretical analysis is carried out for initial states close to and far away (large Mpemba-like effect) from equilibrium. The former situation allows us to develop a simple theory where the time evolution equation for the temperature is linearized around its asymptotic equilibrium solution. This linear theory provides an expression for the crossover time. We also provide a qualitative description of the large Mpemba effect. Our theoretical results agree very well with computer simulations obtained by numerically solving the Enskog kinetic equation by means of the direct simulation Monte Carlo method and by performing molecular dynamics simulations. Finally, preliminary results for driven granular mixtures also show the occurrence of a Mpemba-like effect for inelastic collisions.

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