论文标题

定义纳米孔的异质介质中的液体压力

Defining the pressures of a fluid in a nanoporous, heterogeneous medium

论文作者

Galteland, Olav, Rauter, Michael T., Varughese, Kevin K., Bedeaux, Dick, Kjelstrup, Signe

论文摘要

我们描述了限制在山上的多孔培养基的单相流体的热力学状态,其小型系统的热力学(也称为纳米热力学)。这种定义具有单独的控制变量集的小型系统热力学的方式可能对在不可构造的多孔介质中的运输研究可能很有用,在这些培养基中,目前在压力计算上尚无共识。对于限制的流体,我们观察到有两种压力,即积分和差压力。我们使用分子模拟来研究和确认代表性基本体积(REV)的纳米热力学关系。对于以不同孔隙率的固体球体中心晶格中单相流体的模型系统,我们计算流体密度,流体 - 固体表面张力,复制能量,积分压力,熵和内部能量。

We describe the thermodynamic state of a single-phase fluid confined to a porous medium with Hill's thermodynamics of small systems, also known as nanothermodynamics. This way of defining small system thermodynamics, with a separate set of control variables, may be useful for the study of transport in non-deformable porous media, where presently no consensus exists on pressure computations. For a confined fluid, we observe that there are two pressures, the integral and the differential pressures. We use molecular simulations to investigate and confirm the nanothermodynamic relations for a representative elementary volume (REV). For a model system of a single-phase fluid in a face-centered cubic lattice of solid spheres of varying porosity, we calculate the fluid density, fluid-solid surface tension, replica energy, integral pressure, entropy, and internal energy.

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