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首页> 外文期刊>The Journal of Chemical Physics >Modeling velocity autocorrelation functions for confined fluids using gamma distributions
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Modeling velocity autocorrelation functions for confined fluids using gamma distributions

机译:使用伽马分布为密闭流体建模速度自相关函数

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We propose a model for the short-time dynamics of fluids confined in slit-shaped pores.The model has been developed from the observation that the real lobe of the instantaneous normal mode density of states (INM DOS) closely follows a gamma distribution.By proposing that the density of states of the confined fluid can be represented by a gamma distribution,the resulting velocity autocorrelation function (VACF) is constructed such that it is accurate upto the fourth frequency moment.The proposed model results in an analytical expression for the VACF and relaxation times.The VACFs obtained from the model have been compared with the VACFs obtained from molecular dynamic simulations and INM analysis for fluids confined in slit-shaped pores over a wide range of confinement and temperatures.The model is seen to capture the short-time behavior of the VACF extremely accurately and in this region is superior to the predictions of the VACF obtained from the real lobe of the INM DOS.Although the model predicts a zero self-diffusivity,the predicted relaxation times are in better agreement with the molecular dynamics results when compared with those obtained from the INM theory.
机译:我们提出了一种限制在狭缝状孔隙中的流体的短时动力学模型,该模型是根据观察到的瞬时法向态态密度(INM DOS)的实际波瓣紧密地遵循伽马分布而建立的。提出密闭流体的状态密度可以用伽马分布表示,因此构造了速度自相关函数(VACF),使其在第四个频率矩之前都是精确的。所提出的模型得出VACF的解析表达式我们将从模型获得的VACF与分子动力学模拟和INM分析获得的VACF进行了比较,这些VACF限制了狭缝形孔隙在宽范围和温度范围内的流动。 VACF的时间行为非常准确,并且在该区域内优于从INM DOS的真实波瓣获得的VACF的预测。该模型预测自扩散率为零,与从INM理论获得的结果相比,预测的弛豫时间与分子动力学结果更好地吻合。

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