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A coupled numerical study of slab temperature and gas temperature in the walking-beam-type slab reheating furnace

机译:步进梁式板坯加热炉板坯温度与气体温度的耦合数值研究

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摘要

In the present study, a three-dimensional simulation is performed for the turbulent reactive flow and radiactive heat transfer in the walking-beam-type slab reheating furnace using STAR-CD software. The geometric model takes care of all components of the furnace. To obtain a steady solution, the walking beams are assumed fixed in the furnace and the slab is modeled as a laminar flow having a very high viscosity and thus moving at a nearly constant speed. The temperature distributions of the slab and the gas mixture are obtained through a coupled calculation. The simulation results successfully predict the temperature distribution inside the slab and the heat flux on the slab surfaces, providing an opportunity for a full exploration of the influence of the walking beam system on the skid marks. The simulation results show that the radiative shielding by the static beams is the main cause of the skid marks. The heat loss through the skid button to the cooling system worsens the skid marks.
机译:在本研究中,使用STAR-CD软件对步进梁式板坯加热炉中的湍流反应流和辐射传热进行了三维模拟。几何模型负责处理炉子的所​​有组件。为了获得稳定的解决方案,假定将步进梁固定在炉中,并将板坯建模为层流,该层流的粘度很高,因此以几乎恒定的速度运动。板坯和气体混合物的温度分布通过耦合计算获得。仿真结果成功地预测了板坯内部的温度分布以及板坯表面上的热通量,为充分探究步进梁系统对防滑痕迹的影响提供了机会。仿真结果表明,静电束的辐射屏蔽是打滑痕迹的主要原因。通过滑行按钮到冷却系统的热量损失会加剧滑行痕迹。

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