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Liquid vapor equilibria for an ab initio model for water

机译:水从头算模型的液体蒸气平衡

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The vapor-liquid coexistence densities for water near the critical point were determined using a polarizable ab initio based model and grand canonical Monte Carlo simulations combined with the histogram reweighting technique. The predictions of the model used, which is found to give good agreement with experimental data at ambient conditions, are far below the experimental critical temperature and density. The saturation pressure is also overestimated. The source of this discrepancy may be related to the high pressure that the model exhibits even for liquid water. Since there is no fitting to experimental data, it is possible to refine the potential in a systematic way. In particular, an improvement in the sampling of the ab initio calculation for the repulsive part of the intermolecular potential is suggested in order to obtain better agreement with experiment at high temperatures and pressures.
机译:临界点附近水的气-液共存密度使用可极化的从头算模型和大正则蒙特卡罗模拟结合直方图加权技术确定。使用的模型的预测与环境条件下的实验数据具有很好的一致性,但远低于实验的临界温度和密度。饱和压力也被高估了。这种差异的原因可能与该模型甚至对于液态水所表现出的高压有关。由于没有适合的实验数据,因此有可能以系统的方式优化潜力。特别地,建议改进分子间电势的排斥部分的从头算的采样,以便与高温和高压下的实验更好地吻合。

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