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A model for wet aggregation of ash particles in volcanic plumes and clouds:1. Theoretical formulation

机译:火山羽和云中灰粒的湿聚集模型:1。理论表述

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We develop a model to describe ash aggregates in a volcanic plume. The model is based on a solution of the classical Smoluchowski equation, obtained by introducing a similarity variable and a fractal relationship for the number of primary particles in an aggregate. The considered collision frequency function accounts for different mechanisms of aggregation, such as Brownian motion, ambient fluid shear, and differential sedimentation.Although model formulation is general, here only sticking efficiency related to the presence of water is considered. However, the different binding effect of liquid water and ice is discerned. The proposed approach represents a first compromise between the full description of the aggregation process and the need to decrease the computational time necessary for solving the full Smoluchowski equation. We also perform a parametric study on the main model parameters and estimate coagulation kernels and timescales of the aggregation process under simplified conditions of interest in volcanology. Further analyses and applications to real eruptions are presented in the companion paper by Folch et al.
机译:我们开发了一个模型来描述火山羽中的灰分聚集体。该模型基于经典Smoluchowski方程的解,该方程是通过引入相似变量和聚集体中初级粒子数量的分形关系而获得的。考虑的碰撞频率函数考虑了不同的聚集机制,例如布朗运动,环境流体剪切和微分沉降。尽管模型公式很笼统,但这里仅考虑与水存在相关的粘着效率。然而,可以看出液态水和冰的不同结合效果。所提出的方法代表了对聚集过程的完整描述与减少求解完整Smoluchowski方程所需的计算时间之间的第一折衷。我们还对主要模型参数进行参数研究,并在简化的火山学研究条件下估算凝结核和聚集过程的时标。 Folch等人在随附的论文中介绍了对实际喷发的进一步分析和应用。

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