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The Potential of Mean Force concept for bridging (length and time) scales in the modeling of complex porous materials

机译:复杂多孔材料建模中桥接(长度和时间)尺度的平均力概念的潜力

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We introduce the concept of Potential of Mean Force, PMF, as a way to implement upscaling modeling from the nano-scale to micron-scale. A PMF is a free energy function representing in an effective way the interactions between objects (cement hydrates, clay platelets, etc.) at thermodynamics conditions. The PMF is therefore the key piece of information allowing to coarse-grained Physical-Chemistry information in a meso-scale model formulation. The use of PMF offers a huge computational advantage as it allows a straight up-scaling to the meso-scale while keeping essential interactions information that are the hallmark of Physical-Chemistry processes. Such a coarse-grained modeling integrates atomistic response into inter-particle potentials that fully propagate molecular scale information all the way to the meso-scale.
机译:我们介绍了平均力潜力(PMF)概念,以实现从纳米级到微米级的放大建模。 PMF是一种自由能函数,以一种有效的方式表示了热力学条件下物体(水泥水合物,粘土薄片等)之间的相互作用。因此,PMF是关键信息,可在中尺度模型公式化中获得粗粒度的物理化学信息。 PMF的使用提供了巨大的计算优势,因为它可以直接放大到中观尺度,同时保留作为物理化学过程特征的基本交互信息。这种粗粒度建模将原子响应整合到粒子间电势中,从而将分子尺度信息完全传播到中尺度。

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