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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Domain growth in computer simulations of segregating two-dimensional binary fluids
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Domain growth in computer simulations of segregating two-dimensional binary fluids

机译:分离二维二元流体的计算机模拟中的域增长

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We studied phase segregation kinetics with hydrodynamic interactions, following a quench, in the two-dimensional binary fluid lattice gas model of Rothman and Keller. Carrying out computer simulations at different overall fluid densities d, with equal volume fractions of the two components, we find that the growth of domain sizes R(t) at different d has a scaling behavior with all data well fitted by R(t)/Rs=a+b(t/ts)2/3. The characteristic lengths Rs(d) and times ts(d) are related in a simple way to the viscosity and surface tension of the system at different values of d. We also discuss the growth exponents expected in the general case of phase segregation with hydrodynamic interactions.
机译:我们在Rothman和Keller的二维二元流体晶格气体模型中研究了淬灭后具有水动力相互作用的相分离动力学。在两个组分的体积分数相等的情况下,在不同的总流体密度d下进行计算机模拟,我们发现在不同d时域尺寸R(t)的增长具有缩放行为,所有数据都很好地拟合R(t)/ Rs = a + b(t / ts)2/3。特征长度Rs(d)和时间ts(d)以简单的方式与系统在不同d值下的粘度和表面张力有关。我们还将讨论在具有水动力相互作用的相分离的一般情况下预期的增长指数。

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