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Assessment of Different Turbulence Models for the Motion of Non-metallic Inclusion in Induction Crucible Furnace

机译:对诱导坩埚炉中非金属夹杂物运动的不同湍流模型的评估

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Turbulent fluid flow due to the electromagnetic forces in induction crucible furnace (ICF) is modeled using k-ε, k-ω SST and Large Eddy Simulation (LES) turbulence models. Fluid flow patterns calculated by different turbulence models and their effects on the motion of non-metallic inclusions (NMI) in the bulk melt have been investigated. Results show that the conventional k-ε model cannot solve the transient flow in ICF properly. With k-ω model transient flow and oscillation behavior of the flow pattern can be solved, and the motion of NMI can be tracked fairly well. LES model delivers the best modeling result on both details of the transient flow pattern and motion trajectories of NMI without the limitation of NMI size. The drawback of LES model is the long calculation time. Therefore, for general purpose to estimate the dynamic behavior of NMI in ICF both k-ω SST and LES are recommended. For the precise calculation of the motion of NMI smaller than 10 urn only LES model is appropriate.
机译:由于感应坩埚炉(ICF)中的电磁力而导致的湍流流体流动使用K-ε,k-ωsst和大涡模拟(LES)湍流模型进行建模。研究了通过不同的湍流模型计算的流体流动模式及其对本体熔体中的非金属夹杂物(NMI)的运动的影响。结果表明,传统的K-ε模型无法正确地解决ICF中的瞬态流量。具有K-ω模型的瞬态流量和流动模式的振荡行为可以解决,并且可以很好地跟踪NMI的运动。 LES模型在没有NMI尺寸的限制的情况下,提供最佳造型结果和NMI的运动轨迹的细节。 LES模型的缺点是长计算时间。因此,为了估计ICF中NMI的动态行为,建议使用K-ωSST和LES。对于小于10 URN的NMI运动的精确计算,仅LES模型是合适的。

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