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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Molecular dynamics simulation of the CH4 and CH4-H2O systems up to 10 GPa and 2573 K
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Molecular dynamics simulation of the CH4 and CH4-H2O systems up to 10 GPa and 2573 K

机译:最高10 GPa和2573 K的CH4和CH4-H2O系统的分子动力学模拟

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摘要

Based on our previous study of the intermolecular potential for pure H2O and the strict evaluation of the competitive potential models for pure CH4 and the ab initio fitting potential surface across CH4-H2O molecules in this study, we carried out more than two thousand molecular dynamics simulations for the PVTx properties of pure CH4 and the CH4-H2O Mixtures up to 2573 K and 10 GPa. Comparison of 1941 simulations with experimental PVT data for pure CH4 shows an average deviation of 0.96% and a maximum deviation of 2.82%. The comparison of the results of 519 simulations of the mixtures with the experimental measurements reveals that the PVTv properties of the CH4-H2O mixtures generally agree with the extensive experimental data with an average deviation of 0.83% and 4% in maximum, which is equivalent to the experimental uncertainty. Moreover, the maximum deviation between the experimental data and the simulation results decreases to about 2% as temperature and pressure increase, indicating that the high accuracy of the simulation is well retained in the high temperature and pressure region. After the validation of the simulation method and the intermolecular potential models, we systematically simulated the PVTx properties of this binary system from 673 K and 0.05 GPa to 2573 K and 10 GPa. In order to integrate all the simulation results and the experimental data for the calculation of thermodynamic properties, an equation of state (EOS) is developed for the CH4-H2O system covering 673-2573 K and 0.01-10 GPa. Isochores for compositions < 4 mol% CH4 UP to 773 K and 600 MPa are also determined in this paper. The program for the EOS can be downloaded from www.geochem-model.org/programs.htm. (c) 2007 Elsevier Ltd. All rights reserved.
机译:基于我们之前对纯H2O的分子间电势的研究以及对纯CH4的竞争电势模型以及CH4-H2O分子的从头算起的拟合表面的严格评估,我们进行了两千多次分子动力学模拟纯CH4和高达4-573 K和10 GPa的CH4-H2O混合物的PVTx性能。将1941年模拟与纯CH4的实验PVT数据进行比较后,发现平均偏差为0.96%,最大偏差为2.82%。 519种混合物的模拟结果与实验测量值的比较表明,CH4-H2O混合物的PVTv特性通常与广泛的实验数据相符,平均偏差最大为0.83%,最大偏差为4%。实验不确定性。此外,随着温度和压力的增加,实验数据和模拟结果之间的最大偏差减小到约2%,这表明在高温和高压区域中可以很好地保留模拟的高精度。在验证了模拟方法和分子间电势模型之后,我们系统地模拟了该二元系统的673 K和0.05 GPa至2573 K和10 GPa的PVTx特性。为了整合所有模拟结果和用于计算热力学性质的实验数据,针对CH4-H2O系统开发了涵盖673-2573 K和0.01-10 GPa的状态方程(EOS)。本文还确定了组成小于4摩尔%CH4 UP至773 K和600 MPa的等渗线。可以从www.geochem-model.org/programs.htm下载EOS程序。 (c)2007 Elsevier Ltd.保留所有权利。

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