航空结冰预报应用的一种新的数值方法

IF 3 3区 工程技术 Q3 COMPUTER SCIENCE, INTERDISCIPLINARY APPLICATIONS
B. An , C. Xi , F. Mellibovsky , J.M. Bergada , D. Li , W.M. Sang
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引用次数: 0

摘要

我们提出了一种新的数值算法来预测水滴的积累,导致飞行中冰的增加。与传统的拉格朗日和欧拉方法不同,新方法基于单相多组分晶格玻尔兹曼方法(SPMC-LBM),这是一种专注于空气颗粒和水滴在气相(蒸汽颗粒)中的运动的介观算法。将蒸汽粒子的轨迹和撞击近似等效于水滴的轨迹和撞击。采用经典的Messinger模型对冰的生长过程进行了数值模拟。采用树形网格结构进行局部网格细化,提高了计算效率和鲁棒性。为了模拟水收集过程,我们提出了一种处理弯曲边界蒸汽粒子的新方法。此外,我们开发了一种非量纲化方法将物理扩散系数转换为晶格扩散系数,有效地捕获了多组分混合流中的扩散效应。对于混合流中较重的分量,采用拉格朗日9位插值方案对分布函数的流化过程进行补充。数值结果表明,该方法与实验数据吻合较好,在处理三维几何形状和复杂结冰条件方面具有发展潜力。采用树形网格大大提高了网格生成过程。值得注意的是,这是LBM相关应用的一个改进,因为这是LBM第一次被用于航空结冰问题的预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A novel numerical method for applications of aero-icing predictions
We present a new numerical algorithm for predictions of water droplets accumulation responsible for in-flight ice accretion. Unlike the traditional Lagrangian and Eulerian methodologies, the new approach is based on the single-phase multi-component lattice Boltzmann method (SPMC-LBM), which is a mesoscopic algorithm that focuses on the movement of air particles and water droplets in gas phase (vapour particles). The trajectory and impingement of the vapour particles is taken as approximately equivalent to that of water droplets. The ice growth process is simulated numerically by employing the classic Messinger’s model. The tree grid structure is used for local grid refinement and to improve the computational efficiency and robustness. To simulate water collection processes, we propose a novel approach for treating vapour particles at curved boundaries. Additionally, we develop a nondimensionalization method to convert physical diffusion coefficients into lattice diffusion coefficients, effectively capturing diffusion effects in multi-component mixed flows. For the heavier component in the mixed flow, a Lagrangian 9-bit interpolation scheme is employed for the supplement of the streaming process of the distribution functions. The numerical results show this novel method agrees well with experimental data, having a potential for development to allow tackling three dimensional geometries and complicated icing conditions. The adoption of a tree grid substantially enhances the mesh generation process. Notice as well it is an improvement for LBM related applications, since it is for the first time that LBM has been employed in the predictions on aero-icing problems.
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来源期刊
Computers & Fluids
Computers & Fluids 物理-计算机:跨学科应用
CiteScore
5.30
自引率
7.10%
发文量
242
审稿时长
10.8 months
期刊介绍: Computers & Fluids is multidisciplinary. The term ''fluid'' is interpreted in the broadest sense. Hydro- and aerodynamics, high-speed and physical gas dynamics, turbulence and flow stability, multiphase flow, rheology, tribology and fluid-structure interaction are all of interest, provided that computer technique plays a significant role in the associated studies or design methodology.
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