The formation of large aggregates by Brownian growth and the onset of a runaway process

Ben Schubert, Jürgen Blum, Matthias Isensee, Noah S. Molinski, Adrian Pöppelwerth, Ingo von Borstel, R. Schräpler, D. Balapanov, Andrei Vedernikov
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Abstract

In an experiment onboard a microgravity sounding rocket, we observed the growth of agglomerates consisting of μm-sized silica spheres under well-defined conditions. After an initial short charge-induced growth phase, the charge-neutralized agglomerates grew due to Brownian-motion induced collisions, first in an orderly fashion and thereafter, due to the temporal increase in particle concentration, in a runaway process. The latter is characterized by the detachment of large oligarch agglomerates. We modeled the growth using a mean-field approximation as well as a Monte Carlo technique.
通过布朗增长形成大聚集体以及失控过程的开始
在微重力探空火箭上进行的一项实验中,我们观察到由微米大小的二氧化硅球组成的团聚体在明确的条件下生长。经过最初短暂的电荷诱导生长阶段后,电荷中和的团聚体由于布朗运动诱导的碰撞而生长,先是有序生长,随后由于粒子浓度的时间性增加而出现失控过程。后者的特点是大型寡头团聚体的脱离。我们使用均场近似法和蒙特卡罗技术建立了生长模型。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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