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首页> 外文期刊>The Journal of Chemical Physics >The Stokes-Einstein relation for simple fluids: From hard-sphere to Lennard-Jones via WCA potentials
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The Stokes-Einstein relation for simple fluids: From hard-sphere to Lennard-Jones via WCA potentials

机译:STOKES-EINSTEIN与简单流体的关系:通过WCA电位从硬球到Lennard-Jones

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The Stokes-Einstein (SE) relation is examined for hard-sphere (HS) and Weeks-Chandler-Andersen (WCA) fluids by the molecular dynamics method on temperatures and densities corresponding to the saturated vapor line of Lennard-Jones (LJ) liquids. While the self-diffusion coefficient, D, and shear viscosity, eta(SV), increases and decreases, respectively, with increasing steepness in interaction potentials, the same SE relation holds for HS and WCA fluids as that obtained for LJ liquids, i.e., D eta(sv) = (k(B)T/C)(N/V)(1/3), where k(B) is the Boltzmann constant, T is the temperature, and N is the particle number included in the system volume V. The coefficient C is almost constant at about 6 to 2 pi for eta 0.3, where eta is the packing fraction. The results show that the SE relation for simple liquids and fluids does not need to bear any concepts of both the hydrodynamic particle size and the boundary condition. In light of this SE relation, the Enskog, Eyring-Ree, and Zwanzig theories are quantitatively tested. In addition, the cause of deviation from unity of the exponent in the fractional SE relation for simple fluids is clearly accounted for. The present results show that applying both the original and the fractional SE relations to simple liquids and fluids does not lead to any meaningful discussions. Published by AIP Publishing.
机译:通过对应于Lennard-Jones(LJ)液体的饱和蒸汽系对应的温度和密度的分子动力学方法,检查Stokes-einstein(HS)和数周 - Chandler-Andersen(WCA)流体。 。虽然自扩散系数,D和剪切粘度,ETA(SV)分别增加和减少,随着相互作用电位的较高,相同的SE关系用于HS和WCA流体,因为LJ液体,即, d eta(sv)=(k(b)t / c)(n / v)(1/3),其中k(b)是boltzmann常数,t是温度,n是包含在的粒子数系统体积V.系数C几乎恒定在约6至2 pi for eta& 0.3,eta是包装分数。结果表明,对于简单的液体和流体的SE关系不需要承担流体动力粒度和边界条件的任何概念。鉴于这种SE关系,定量测试了Enskog,Oegring-Ree和Zwanzig理论。此外,清楚地占了偏离分数SE关系中指数的统一的原因。目前的结果表明,将原始和分数硒关系应用于简单的液体和流体不会导致任何有意义的讨论。通过AIP发布发布。

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