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Quadrature method of moments for modeling multi-component spray vaporization

机译:用于多组分喷雾汽化建模的矩矩方法

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摘要

This article puts forward the quadrature method of moments (QMoM) for modeling droplet composition during the spray vaporization process. This method is implemented for solving the Continuous Thermodynamic Model (CTM) of multi-component droplet vaporization, an advantageous alternative to the classical Discrete Component Model (DCM) when the droplet is formed of a great number of components. The CTM approach consists in modeling the droplet’s composition using a probability density function (PDF). This method was first tried out for vaporizing droplets by Hallett, who assumed a Gamma-function for the PDF. However, Harstadt et al. underlined some problems in the case of vapor condensation on the droplet surface, since the Gamma-PDF model presumes the PDF’s mathematical form. The QMoM which does not require this hypothesis is studied in this article, according to Lage’s research dealing with QMoM application to phase equilibria. The numerical features of QMoM are investigated in detail, and then the method is implemented for the difficult test case of vapor condensation. The results are analyzed to illustrate the application of QMoM to multi-component droplet vaporization modeling and to provide a better understanding of the QMoM main advantages and limitations.
机译:本文提出了矩矩法(QMoM),用于对喷雾汽化过程中的液滴成分进行建模。该方法用于解决多组分液滴蒸发的连续热力学模型(CTM),这是当液滴由大量组分形成时经典离散组分模型(DCM)的一种有利替代方案。 CTM方法包括使用概率密度函数(PDF)对液滴的组成进行建模。哈莱特(Hallett)首先尝试了这种方法来蒸发液滴,他假设PDF具有伽玛功能。但是,Harstadt等。由于Gamma-PDF模型假定了PDF的数学形式,因此在液滴表面上发生蒸汽冷凝的情况下突显了一些问题。根据拉格(Lage)关于将QMoM应用于相平衡的研究,本文研究了不需要此假设的QMoM。详细研究了QMoM的数值特征,然后针对困难的蒸汽冷凝测试案例实施了该方法。分析结果以说明QMoM在多组分液滴蒸发建模中的应用,并提供对QMoM主要优点和局限性的更好理解。

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