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DYNAMICAL PROPERTIES AND TRANSPORT COEFFICIENTS OF KIHARA LINEAR FLUIDS

机译:奇哈拉线性流体的动力学性质和传输系数

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Transport properties of spherical and linear molecules modeled by the Kihara potential are studied by molecular dynamics simulations. Diffusion coefficients, shear viscosities, and thermal conductivities are calculated for a wide range of the fluid region and for several elongations. The corresponding individual and collective correlation functions are discussed along with angular velocity and reorientational correlation functions. Relaxation times and simple models relevant to orientational motion are also studied. The results obtained are discussed in a corresponding states framework, using previous Gibbs ensemble Monte Carlo data for the liquid-vapor equilibria of the models. In this way, the role of elongation can be studied. It is found that in most of the liquid region, the diffusion coefficient is weakly dependent on elongation. On the other hand, both viscosity and thermal conductivity are found to decrease with elongation. The dependence of transport coefficients on density and temperature is also discussed. On testing the Stokes-Einstein relation, it was observed that, unlike previous findings for hard spheres, stick boundary conditions perform just as good as slip boundary conditions for the Lennard-Jones fluid and the low-elongated Kihara fluid. (C) 1997 American Institute of Physics. [References: 69]
机译:通过分子动力学模拟研究了用Kihara势建模的球形和线性分子的传输性质。计算了流体区域范围和伸长率的扩散系数,剪切粘度和热导率。讨论了相应的个体和集体相关函数以及角速度和方向相关函数。还研究了与定向运动有关的弛豫时间和简单模型。使用先前的Gibbs系谱蒙特卡洛数据进行模型的液-汽平衡,在相应的状态框架中讨论获得的结果。这样,可以研究伸长的作用。发现在大多数液体区域中,扩散系数几乎不依赖于伸长率。另一方面,发现粘度和导热率均随伸长率而降低。还讨论了传输系数对密度和温度的依赖性。在测试Stokes-Einstein关系时,观察到,与以前对于硬球体的发现不同,对于Lennard-Jones流体和低伸长率Kihara流体,粘滞边界条件的表现与滑动边界条件一样好。 (C)1997美国物理研究所。 [参考:69]

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