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A simple bimodal model for the evolution of non-spherical particles undergoing nucleation, coagulation and coalescence

机译:一个简单的双峰模型,用于研究非球形颗粒经历成核,凝聚和聚结的过程

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摘要

A simple and efficient particle dynamics model is developed accounting for simultaneous nucleation, coagulation, and coalescence or sintering of non-spherical particle size distributions approximately: a size-fixed nucleation mode and a moving accumulation mode. The size-fixed nucleation mode accounts for the introduction of newly generated particles and the moving accumulation mode. The size-fixed nucleation mode accounts for the introduction of newly generated particles and the moving accumulation mode characterizes the particle growth by coagulation and coalescence. The simulation results for titania particle formation and growth using the proposed bimodal model are compared with those using the previous monodisperse non-spherical particle dynamics model and non-spherical polydisperse sectional model. The present bimodal model results in a very good agreement with the polydiserse sectional model even when particle nucleation coexists with coagulation process while the monodisperse model shows significant differences. It successfully predicts the morphological change of the non-spherical particles by coalescence. The present model is also shown to be capable of predicting the polydispersity of non-spherical particle distribution. The present non-spherical bimodal model requires the same level of the computation time that the simple monodisperse model does.
机译:建立了一个简单而有效的粒子动力学模型,该模型考虑了非球形粒度分布的同时成核,凝结,聚结或烧结:尺寸固定的成核模式和移动累积模式。尺寸固定的成核模式说明了新生成粒子的引入和移动累积模式。尺寸固定的成核模式说明了新生成粒子的引入,而移动累积模式则通过凝聚和聚结来表征粒子的生长。使用提出的双峰模型对二氧化钛颗粒形成和生长的模拟结果与使用先前的单分散非球形颗粒动力学模型和非球形多分散截面模型的模拟结果进行了比较。即使颗粒成核与凝结过程共存,而单分散模型显示出显着差异,本双峰模型仍能与多分散截面模型很好地吻合。通过聚结成功地预测了非球形颗粒的形态变化。还显示了本模型能够预测非球形颗粒分布的多分散性。当前的非球面双峰模型需要与简单单分散模型相同水平的计算时间。

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