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Hydrodynamic effects on phase separation of binary mixtures with reversible chemical reaction

机译:流体动力学对可逆化学反应二元混合物相分离的影响

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摘要

The hydrodynamic effect on the phase separation dynamics of chemically reacting binary mixtures is investigated based on the extended model H. Our simulation results reveal that many interesting patterns are obtained under different chemical reaction rates due to the coupling of hydrodynamics and chemical reaction. For the case of high reaction rate, when the average order parameter at equilibrium is equal to zero, spiral structure appear due to the delicate coupling between the hydrodynamic flow and chemical reaction regardless of the value of initial order parameter. When the chemical reaction rate is low, the pattern observed under the critical quench seems like the result of double phase separation. On the other hand, under the off-critical quench, at the same low chemical reaction rate, phase inversion behavior is observed, and it is aggravated under the hydrodynamic flow. Moreover, the domain growth kinetics under both critical and off-critical quenches is investigated.
机译:基于扩展模型H,研究了水动力作用对化学反应的二元混合物相分离动力学的影响。我们的模拟结果表明,由于水动力作用和化学反应的耦合,在不同的化学反应速率下获得了许多有趣的模式。对于高反应速率的情况,当平衡时的平均阶数参数等于零时,无论初始阶数参数的值如何,由于流体动力流和化学反应之间的精细耦合,都会出现螺旋结构。当化学反应速率低时,在临界淬灭下观察到的模式似乎是双相分离的结果。另一方面,在非临界淬火下,在相同的低化学反应速率下,观察到相转化行为,并且在水动力流作用下加剧。此外,研究了在临界和非临界淬灭下的畴生长动力学。

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