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On the relevance of accounting for the evolution of the fractal dimension in aerosol process simulations

机译:关于考虑气溶胶过程模拟中分形维数演变的相关性

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A population balance model is presented, which tracks particle growth in the gas phase and accounts for simultaneous agglomeration and sintering: Simulations reveal the evolution of the full distribution of a volue equivalent diameter and, amongst others, the evolution of the agglomerate collision diameter, a mean primary particle size and the number of primary particles per agglomerate. Furthermore, assuming fractal behaviour of the growing agglomerate particles - for the first time - a model for the evolution of a mean value of the fractal dimension based on physical and process parameters is proposed and incorporated into the simulation model. PARSIVAL, a commercial solver for integro-differential equations is employed to solve the equations involved. It is based on a generalised finite-element scheme with self-adaptive grid-and order construction. Calculations are performed to validate the model against monodisperse and sectional models published in literature for the exemplary case of Si production. The results are in good agreement if the same simplifying assumptions are made. However, results obtained from the new model for both-isothermal and non-isothermal process conditions - clearly show that it is important to consider the changing fractal dimension in many cases.
机译:提出了一种人口平衡模型,该模型可跟踪气相中的颗粒生长并解释同时发生的团聚和烧结:模拟揭示了体积等效直径的完整分布的演变,以及(其中包括)团聚碰撞直径的演变。平均初级粒径和每团的初级颗粒数。此外,首次假设正在增长的附聚物颗粒的分形行为,提出了基于物理和过程参数的分形维数平均值演变模型,并将其纳入仿真模型。 PARSIVAL是一种用于积分微分方程的商业求解器,用于求解所涉及的方程。它基于具有自适应网格和顺序构造的广义有限元方案。针对Si生产的示例性情况,进行了计算以针对单分散模型和文献中公开的截面模型进行验证。如果进行相同的简化假设,则结果是一致的。但是,从等温和非等温过程条件的新模型获得的结果清楚地表明,在许多情况下,考虑分形维数的变化很重要。

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