首页> 外文期刊>International Journal of Modern Physics: Conference Series >A MARKER-BASED EULERIAN-LAGRANGIAN METHOD FOR MULTIPHASE FLOW WITH SUPERSONIC COMBUSTION APPLICATIONS
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A MARKER-BASED EULERIAN-LAGRANGIAN METHOD FOR MULTIPHASE FLOW WITH SUPERSONIC COMBUSTION APPLICATIONS

机译:超声速燃烧的多相流基于马克的EULERIAN-LAGRANGIAN方法

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摘要

The atomization of liquid fuel is a kind of intricate dynamic process from continuous phase to discrete phase. Procedures of fuel spray in supersonic flow are modeled with an Eulerian-Lagrangian computational fluid dynamics methodology. The method combines two distinct techniques and develops an integrated numerical simulation method to simulate the atomization processes. The traditional finite volume method based on stationary (Eulerian) Cartesian grid is used to resolve the flow field, and multi-component Navier-Stokes equations are adopted in present work, with accounting for the mass exchange and heat transfer occupied by vaporization process. The marker-based moving (Lagrangian) grid is utilized to depict the behavior of atomized liquid sprays injected into a gaseous environment, and discrete droplet model 13 is adopted. To verify the current approach, the proposed method is applied to simulate processes of liquid atomization in supersonic cross flow. Three classic breakup models, TAB model, wave model and K-H/R-T hybrid model, are discussed. The numerical results are compared with multiple perspectives quantitatively, including spray penetration height and droplet size distribution. In addition, the complex flow field structures induced by the presence of liquid spray are illustrated and discussed. It is validated that the maker-based Eulerian-Lagrangian method is effective and reliable.
机译:液体燃料的雾化是一种从连续相到离散相的复杂动态过程。使用欧拉-拉格朗日计算流体动力学方法对超音速流动中的燃料喷射过程进行建模。该方法结合了两种不同的技术,并开发了一种集成的数值模拟方法来模拟雾化过程。传统的基于固定(欧拉)笛卡尔网格的有限体积法用于求解流场,目前的工作采用了多组分Navier-Stokes方程,考虑了汽化过程中的质量交换和热传递。利用基于标记的移动(拉格朗日)网格来描绘注入到气态环境中的雾化液体喷雾的行为,并采用离散液滴模型13。为了验证当前的方法,将所提出的方法应用于模拟超声速横流中的液体雾化过程。讨论了三种经典的分解模型:TAB模型,波浪模型和K-H / R-T混合模型。将数值结果与多个角度进行定量比较,包括喷雾渗透高度和液滴尺寸分布。另外,图示和讨论了由液体喷雾的存在引起的复杂的流场结构。验证了基于制造商的欧拉-拉格朗日方法是有效和可靠的。

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