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Modelling of acoustic agglomeration processes using the direct simulation Monte Carlo method

机译:使用直接模拟蒙特卡洛方法对声团聚过程进行建模

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摘要

The direct simulation Monte Carlo (DSMC) method is applied to simulate acoustic agglomeration in travelling sound waves;orthokinetic and hydrodynamic mechanisms are considered as well as Brownian coagulation.The method is based on the constant-volume Monte Carlo approach combined with a modified full-conditioning algorithm of Gillespie,and is proved accurate by simulating only Brownian coagulation.Using the DSMC method,the validities of the classic Mednikov orthokinetic kernel,the Konig hydrodynamic kernel and the Song's orthokinetic and hydrodynamic models are examined by simulating acoustic agglomeration with only individual kernels.The predictions obtained by applying simple additive combinations of Song's orthokinetic model with the Konig equation and Song's hydrodynamic model are validated against experimental data in the literature.It has been found that the individual Song's models and the two combinations yield fairly good agreement with the measurements in some experimental cases,but all have limitations in covering a wide range of experimental conditions.This suggests that the present modelling needs further improvement to correctly describe the coupled contributions of two or more mechanisms.
机译:直接模拟蒙特卡罗(DSMC)方法用于模拟行进声波中的声团聚;考虑了正动力学和流体动力机制以及布朗凝聚法。该方法基于恒定体积蒙特卡罗方法结合改进的全波使用DSMC方法,通过仅模拟单个核的声团聚来检验经典Mednikov正动力学核,Konig流体动力学核和Song的正动力学和水动力模型的有效性,并使用DSMC方法进行了验证。根据文献中的实验数据验证了通过将Song的动力学模型与Konig方程的简单加法组合与Song的流体力学模型相结合所获得的预测结果,发现单独的Song模型和这两种组合与测量结果相当吻合在一些实验性的ca中但是,在覆盖广泛的实验条件方面都存在局限性。这表明当前的模型需要进一步改进,以正确描述两种或多种机制的耦合作用。

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