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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Coupled CFD simulation for the cooling process of steel tubes in a rake type cooling bed
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Coupled CFD simulation for the cooling process of steel tubes in a rake type cooling bed

机译:钢管冷却过程耦合CFD仿真在耙式冷却床中的钢管

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摘要

In the past, cooling beds in hot tube rolling mills were constructed with mixed convection zones at the inlet of the bed. This caused high thermal strains, which resulted in deformed tube geometries. To find the optimal position for a mixed convection zone, the present work introduces the first full-scale CFD simulation of the transient cooling process of tubes in a rake type cooling bed. The model represents a novelty in this process, with one significant improvement to current state-of-the-art approaches: Translatory and rotatory movement of the tubes was simulated with an iterative steady-state/transient coupled method with high accuracy and minor computational cost. Simulations were carried in 2D and 3D and a comprehensive comparison regarding the precision of the method was presented. Among the evaluated quantities were the cooling rates, radial and axial tube temperature distributions as well as heat transfer rates and Rayleigh numbers. For the investigated ensemble of tube geometries, tube temperatures were predicted within 9.23% of the experimental data in the 2D model and 5.42% in the 3D model.
机译:在过去,在床的入口处构建了热管轧机中的冷却床。这导致了高热量应变,导致管几何形状变形。为了找到混合对流区的最佳位置,本作本作品介绍了耙式冷却床中管瞬态冷却过程的第一全尺度CFD模拟。该模型表示该过程的新颖性,对当前最先进的方法进行了一个显着的改进:用具有高精度和轻微的计算成本的迭代稳态/瞬态耦合方法模拟管的平移和旋转运动。仿真在2D和3D中携带,并提出了关于该方法精度的全面比较。评估的数量是冷却速率,径向和轴向管温度分布以及传热速率和瑞利数。对于管几何形状的调查集合,在2D模型的实验数据的9.23%内预测管温度,3D模型中的5.42%。

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