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Ripening and focusing of aggregate size distributions with overall volume growth

机译:随着总量的增长,成熟的和集中的总量分布

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We explore the evolution of the aggregate size distribution in systems where aggregates grow by diffusive accretion of mass. Supersaturation is controlled in such a way that the overall aggregate volume grows linearly in time. Classical Ostwald ripening, which is recovered in the limit of vanishing overall growth, constitutes an unstable solution of the dynamics. In the presence of overall growth evaporation of aggregates always drives the dynamics into a new, qualitatively different growth regime where ripening ceases, and growth proceeds at a constant number density of aggregates. We provide a comprehensive description of the evolution of the aggregate size distribution in the constant density regime: the size distribution does not approach a universal shape, and even for moderate overall growth rates the standard deviation of the aggregate radius decays monotonically. The implications of this theory for the focusing of aggregate size distributions are discussed for a range of different settings including the growth of tiny rain droplets in clouds, as long as they do not yet feel gravity, and the synthesis of nano-particles and quantum dots.
机译:我们探讨了聚集体通过质量扩散扩散而增长的系统中聚集体尺寸分布的演变。过饱和度的控制方式应使总聚集量随时间线性增长。奥斯特瓦尔德(Ostwald)的经典成熟期(在整体生长消失的极限内恢复)构成了动力学的不稳定解决方案。在整体增长的情况下,聚集体的蒸发总是将动力学驱动到新的,质的不同的生长机制中,在该机制中,成熟停止,并且以恒定数目的聚集体密度进行生长。我们对恒定密度区域中的骨料尺寸分布的演变提供了全面的描述:骨料尺寸分布并不接近通用形状,即使总体增长率适中,骨料半径的标准偏差也会单调衰减。讨论了该理论对聚集体粒度分布聚焦的含义,涉及一系列不同的设置,包括云中微小的雨滴的生长(只要它们还没有重力),以及纳米粒子和量子点的合成。

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