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首页> 外文期刊>Fluid Phase Equilibria >Structural and dynamical properties of methane clathrate hydrates from molecular dynamics: Comparison of atomistic and more coarse grained potential models
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Structural and dynamical properties of methane clathrate hydrates from molecular dynamics: Comparison of atomistic and more coarse grained potential models

机译:从分子动力学看甲烷笼形水合物的结构和动力学性质:原子和更粗粒度势能模型的比较

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摘要

In an attempt to study the accuracy and utility of 'coarse grained' models for methane-clathrate systems, molecular-dynamics simulations were run for three different potential models. One was fully atomistic of TIP4P water and fully atomistic methane, the next model was atomistic SPC water and coarse-grained UA methane, whilst the final model was the fully coursed-grained mW model. All models were run at two different sizes (8 and 64 fully-occupied sl clathrate unit cells) at 250 K and 60 bar. It was found that the coarse-grained models had a high level of accuracy in recreating structural properties, such as density or radial distribution functions (RDFs), with the obvious exception of not being able to create RDFs for atoms which are neglected by the model. More coarse grained models were shown to have lower accuracy for time-dependent phenomena, such as identifying the density or velocity fluctuations' frequencies. (C) 2016 Elsevier B.V. All rights reserved.
机译:为了研究甲烷粗酸盐系统“粗粒”模型的准确性和实用性,针对三种不同的潜在模型进行了分子动力学模拟。一个是完全原子化的TIP4P水和完全原子化的甲烷,下一个模型是原子化SPC水和粗颗粒UA甲烷,而最终模型是完全过程化的mW模型。所有模型均以250 K和60 bar的两种不同大小(8个和64个完全占据的sl笼状晶胞)运行。发现粗粒模型在重建结构特性(例如密度或径向分布函数(RDF))方面具有很高的准确性,但明显的例外是无法为模型所忽略的原子创建RDF 。对于时间相关现象,例如识别密度或速度波动的频率,显示出更多的粗粒度模型具有较低的精度。 (C)2016 Elsevier B.V.保留所有权利。

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