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Application of transient-time correlation functions to nonequilibrium molecular-dynamics simulations of elongational flow

机译:瞬态时间相关函数在伸长流非平衡分子动力学模拟中的应用

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摘要

The transient-time correlation function (TTCF) technique of Morriss and Evans [Mel. Phys. 54, 629 (1985); Phys. Rev. A 35, 792 (1987); Mol. Phys. 61, 1151 (1987); Phys. Rev. A 38, 4142 (1988); Statistical Mechanics of Nonequilibrium Liquids (Academic, London, 1990)] is applied to the case of an atomic fluid undergoing steady isothermal elongational flow. It is found that nonequilibrium molecular-dynamics TTCF calculations of the diagonal elements of the pressure tensor are extremely efficient for small applied strain rates, where the signal-to-noise ratio for the equivalent direct time-averaged pressures is far too low. At higher strain rates, TTCF is seen to faithfully reproduce the long-time steady-state values of the pressures, but is unable to account for observed transient oscillations. The technique thus provides an unambiguous means of calculating the long-time steady-state response of a fluid under steady elongational flow and opens the possibility of studying more complex molecular fluids under relatively weak flow, allowing for greater simulation time compared to the relaxation time of the fluid.
机译:Morriss和Evans的瞬态时间相关函数(TTCF)技术[Mel。物理54,629(1985);物理A 35,792(1987);大声笑物理61,1151(1987);物理A 38,4142(1988);非平衡液体的统计力学(Academic,伦敦,1990年)适用于原子流体经历稳定的等温伸长流动的情况。已经发现,对于较小的应用应变率,压力张量对角线元素的非平衡分子动力学TTCF计算非常有效,其中等效直接时间平均压力的信噪比太低。在较高的应变速率下,可以看到TTCF能够忠实地再现压力的长期稳态值,但无法解释观察到的瞬态振荡。因此,该技术提供了一种明确的方法来计算在稳定的伸长流下流体的长期稳态响应,并为研究相对弱的流下更复杂的分子流体提供了可能性,与之相比,其弛豫时间更长。流体。

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