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首页> 外文期刊>Bulletin of the Korean Chemical Society >A Modified Enskog-Like Equation of Self-Diffusion Coefficients for Penetrable-Sphere Model Fluids
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A Modified Enskog-Like Equation of Self-Diffusion Coefficients for Penetrable-Sphere Model Fluids

机译:渗透球模型流体自扩散系数的修正的Enskog-Like方程

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Molecular dynamics simulations have been performed to investigate the transport properties of self-diffusion coefficients in the penetrable-sphere model system. The resulting simulation data for the product of the packing fraction and the self-diffusion coefficient exhibit a transition from an increasing function of density in lower repulsive systems, where the soft-type collisions are dominant, to a decreasing function in higher repulsive systems, where most particle collisions are the hard-type reflections due to the low-penetrability effects. A modified Enskog-like equation implemented by the effective packing fraction with the mean-field energy correction is also proposed, and this heuristic approximation yields a reasonably good result even in systems of high densities and high repulsive energy barriers.
机译:已经进行了分子动力学模拟,以研究可渗透球体模型系统中自扩散系数的传输特性。堆积分数和自扩散系数乘积的所得模拟数据显示出从较低的排斥系统(其中软类型碰撞占主导)的密度的增加函数到较高的排斥系统的函数的下降的过渡。由于低渗透性效应,大多数粒子碰撞是硬型反射。还提出了一个通过有效堆积分数与平均场能量校正实现的改进的类似于Enskog的方程,即使在高密度和高排斥能垒的系统中,这种启发式逼近也能产生相当好的结果。

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