论文标题

有颗粒状的潜力吗?

Is there a Granular Potential?

论文作者

Gramlich, Josh M., Zarif, Mahdi, Bowles, Richard K.

论文摘要

尽管温度在其性质中没有作用,但粒状材料(例如沙子或颗粒)具有许多与分子系统中观察到的结构和动态特征相似的。这导致了为颗粒材料开发统计力学的努力,该机制的重点是建立相当于微型典型合奏和温度样热力学变量。在这里,我们通过将颗粒状电势引入爱德华兹集合,作为对化学势的类似物,并使用颗粒系统的简单模型探索其性能,从而扩展这些思想。模型的简单动力学蒙特卡洛模拟显示了导致平衡的质量传输的效果,以及如何将其连接到系统中体积的重新分布。对模型的确切分析处理表明,颗粒电位与压实度的紧凑性和比率决定了能够交换体积和颗粒的两个开放系统之间的平衡,并且质量从高度到低值移动到低值。对颗粒电位的分析表明,在系统中添加粒子会增加熵,但在低压实性下降低了熵。最后,我们证明了使用小型系统热力学方法来测量颗粒状电位差异。

Granular materials, such as sand or grain, exhibit many structural and dynamic characteristics similar to those observed in molecular systems, despite temperature playing no role in their properties. This has led to an effort to develop a statistical mechanics for granular materials that has focused on establishing an equivalent to the microcanonical ensemble and a temperature-like thermodynamic variable. Here, we expand on these ideas by introducing a granular potential into the Edwards ensemble, as an analogue to the chemical potential, and explore its properties using a simple model of a granular system. A simple kinetic Monte Carlo simulation of the model shows the effect of mass transport leading to equilibrium and how this is connected to the redistribution of volume in the system. An exact analytical treatment of the model shows that the compactivity and the ratio of the granular potential to the compactivity determine the equilibrium between two open systems that are able to exchange volume and particles, and that mass moves from high to low values of this ratio. Analysis of the granular potential shows that adding a particle to the system increases the entropy at high compactivity, but decreases the entropy at low compactivity. Finally, we demonstrate the use of a small system thermodynamics method for the measurement of granular potential differences.

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