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首页> 外文期刊>Chemical Physics: A Journal Devoted to Experimental and Theoretical Research Involving Problems of Both a Chemical and Physical Nature >A comparison of different water models for melting point calculation of methane hydrate using molecular dynamics simulations
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A comparison of different water models for melting point calculation of methane hydrate using molecular dynamics simulations

机译:用分子动力学模拟对甲烷水合物熔点计算不同水模型的比较

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摘要

Molecular dynamics simulation is a powerful tool to understand the gas hydrate nucleation, growth, and dissociation at molecular level. Prerequisite of super-cooling during gas hydrate formation and a certain degree of super-healing during melting shows significant hysteresis in the transition between solid and liquid state due to large nucleation barrier. Different water models quantitatively differ in their prediction of thermodynamic and kinetic properties of bulk water, including phase behaviour. The present work carries out a systematic investigation of the effect of the chosen water model on the phase behaviour, in particular, the decomposition of methane hydrate. Void-induced melting has been used to predict the melting point of methane hydrate using TIP4P/Ice, TIP4P/2005, TIP4P, and SPC/E water models. This method avoids the need for a predetermined interface for melting point calculations and thus may have its importance in identifying dissociation kinetics of bulk hydrate.
机译:分子动力学模拟是一种强大的工具,可以了解分子水平的天然气水合物成核,生长和解离。 在气体水合物形成期间超级冷却的先决条件和在熔化过程中的一定程度的超级愈合显示出由于大规模的成核屏障而在固体和液态之间的过渡中显示出显着的滞后。 不同的水模型在其预测散装水的热力学和动力学性质的预测中定量地不同,包括相位行为。 本作者对所选择的水模型对相行为的影响进行系统调查,特别是甲烷水合物的分解。 空隙诱导的熔化已用于使用Tip4p /冰,Tip4p / 2005,Tip4p和Spc / E水模型预测甲烷水合物的熔点。 该方法避免了对熔点计算的预定界面需要预定界面,因此可以具有重要性来识别散装水合物的解离动力学。

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