Propagator-moments approximation for recurrence CFD: Application to species transport in turbulent flows

IF 4.1 2区 工程技术 Q2 ENGINEERING, CHEMICAL
H. Lumetzberger , S. Pirker , T. Lichtenegger
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引用次数: 0

Abstract

Accurate, long-term simulations of turbulent flows pose a large challenge for standard CFD algorithms. Recurrence CFD (rCFD) provides a simple, data-assisted approximation for recurrent dynamics. We present the theoretical foundations of this approach in terms of propagator theory for passive transport processes and derive expressions for convective and diffusive contributions to large-step species transfer. We tested our new implementation on a double-sided, cuboid lid-driven cavity and compared various treatments of diffusion against detailed CFD calculations. Based on these insights, we applied the methodology to a down-scaled, industrial case of impurity transport in a steelmaking tundish at Reynolds number Re=220,000. We obtained results in mostly very good agreement with detached-eddy simulations at 1/2700 of their runtime, which made rCFD faster than real time.
复现 CFD 的传播者-近似值:湍流中物种迁移的应用
精确的、长期的湍流模拟对标准CFD算法提出了很大的挑战。递归CFD (rCFD)为递归动力学提供了一种简单的、数据辅助的近似方法。我们从被动输运过程的传播子理论出发,提出了这种方法的理论基础,并推导了对流和扩散对大阶物种转移的贡献表达式。我们在一个双面、长方体盖子驱动的腔体上测试了我们的新实现,并将各种扩散处理方法与详细的CFD计算进行了比较。基于这些见解,我们将该方法应用于雷诺数Re=220000Re=220000的炼钢中间包中杂质输运的缩小规模的工业案例。在1/2700的运行时间内,我们得到的结果与分离涡模拟的结果非常吻合,这使得rCFD比实时更快。
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来源期刊
Chemical Engineering Science
Chemical Engineering Science 工程技术-工程:化工
CiteScore
7.50
自引率
8.50%
发文量
1025
审稿时长
50 days
期刊介绍: Chemical engineering enables the transformation of natural resources and energy into useful products for society. It draws on and applies natural sciences, mathematics and economics, and has developed fundamental engineering science that underpins the discipline. Chemical Engineering Science (CES) has been publishing papers on the fundamentals of chemical engineering since 1951. CES is the platform where the most significant advances in the discipline have ever since been published. Chemical Engineering Science has accompanied and sustained chemical engineering through its development into the vibrant and broad scientific discipline it is today.
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