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CFD of the MHD Mold Flow by Means of Hybrid LES/RANS Turbulence Modeling

机译:混合LES / RANS湍流模型对MHD模具流的CFD

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In the last decades, electromagnetic braking (EMBr) systems become a powerful tool to dampen possible jet oscillations in the continuous casting mold. Further studies showed that if a EMBr is not positioned correctly, it can induce flow oscillations. Hence, the design of these braking systems can be promoted by adequate CFD simulations. In most cases, unsteady RANS simulations (URANS) are sufficient to resolve low-frequency, large-scale oscillations of these MHD flows. Alternatively, Large Eddy Simulations (LES) may also resolve important details of the turbulence. However, since they require much finer computational grids, the computational costs are much higher. A bridge between both approaches are hybrid methods like the Scale Adaptive Simulation (SAS). In this study, we compare the performance of SAS with URANS and LES. Results are validated in detail by comparison with data from a Ruler-EMBr model experiment.
机译:在过去的几十年中,电磁制动(EMBr)系统已成为一种强大的工具,可以抑制连铸结晶器中可能发生的射流振荡。进一步的研究表明,如果EMBr放置不正确,则会引起流动振荡。因此,可以通过适当的CFD仿真来促进这些制动系统的设计。在大多数情况下,不稳定的RANS模拟(URANS)足以解决这些MHD流的低频大规模振荡。或者,大涡模拟(LES)也可以解析湍流的重要细节。但是,由于它们需要更精细的计算网格,因此计算成本要高得多。两种方法之间的桥梁是混合方法,例如规模自适应仿真(SAS)。在这项研究中,我们比较了SAS与URANS和LES的性能。通过与Ruler-EMBr模型实验的数据进行比较,详细验证了结果。

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