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首页> 外文期刊>Advanced Powder Technology: The internation Journal of the Society of Powder Technology, Japan >An analytical solution of the population balance equation for simultaneous Brownian and shear coagulation in the continuum regime
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An analytical solution of the population balance equation for simultaneous Brownian and shear coagulation in the continuum regime

机译:连续体制度同时布朗和剪切凝血的群体平衡方程的分析解

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Brownian coagulation of aerosol particles can take place in both laminar and turbulent flows. Thus, the simultaneous Brownian and shear coagulation will always occur in practical applications. This study pre- sents an analytical solution to describe the size evolution of polydisperse particles undergoing simulta- neous Brownian and shear coagulation. The analytical solution is derived using the log-normal method of moments (LNMOM) with some approximations. Then, the analytical solution is validated by comparing with previous analytical solutions derived for limiting cases. The results show that the present analytical solution is consistent with previous analytical solutions for these limiting cases. Further, the time trajec- tories of the total particle number concentration, the geometric standard deviation and the geometric number mean particle volume predicted by the present analytical solution are compared with those of a numerical LNMOM model. The results show that the present analytical solution gives good predictions of the total particle number concentration but less accurate predictions of the geometric standard devi- ation and the geometric number mean particle volume. A dimensionless analysis shows that the coagu- lation rate ratio and the initial polydispersity are two important factors for characterizing the size evolution of simultaneous Brownian and shear coagulation.(C) 2020 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:可以在层状和湍流流动中进行气溶胶颗粒的布朗凝结。因此,同时发生的布朗和剪切凝固将始终发生在实际应用中。本研究激发了一种分析解决方案,以描述经受褐色和剪切凝固的多分散颗粒的尺寸演变。使用带有一些近似的矩(Lnmom)的日志正常方法来导出分析解决方案。然后,通过与用于限制病例的先前分析溶液进行比较来验证分析解决方案。结果表明,目前的分析解决方案与这些限制病例的先前分析解决方案一致。此外,将通过数值LNMOM模型的总粒子数浓度,几何标准偏差和通过本分析液预测的几何数平均粒子体积的时间特拉。结果表明,本分析解决方案提供了对总粒子数浓度的良好预测,但对几何标准决小和几何数平均粒子体积的准确预测。无量纲分析表明,凝结率比和初始多分散性是表征同时布朗和剪切凝固的大小演化的两个重要因素。(c)2020粉末技术社会日本。由elsevier b.v发表。和日本粉末科技会。版权所有。

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