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Influence of Large-Scale Vortex Movement in Lower Recirculation Zone on Instable Flow Field in the Mold

机译:下回流区大涡旋运动对结晶器内不稳定流场的影响

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During continuous casting of slab, the flow field in the mold is unstable, which will lead to defects in final products. To investigate the instability of molten steel in the mold, an unsteady Reynolds-average (URAN) method is used to study the unstable flow of molten steel in the mold. The results show that the large-scale vortex movement in the lower recirculation zone is a major factor causing the instability of flow field. These vortexes change the outflow of molten steel in the lower recirculation zone. Molten steel discharging from one side of the nozzle outlet reaches a certain depth, it refluxes to the bottom of nozzle, while it discharging from the other outlet flows deep into the liquid pool. This will cause an asymmetric distribution of internal defects in the casting productions. These vortexes also affect the meniscus level fluctuations of molten steel. They change the reverse flow direction and pressure field in the lower recirculation zone, which affect the position and the angle of stream impinging on the narrow face. The paper could provide a basis for stabilizing the flow field in the mold.
机译:在板坯连续铸造过程中,结晶器中的流场不稳定,这将导致最终产品的缺陷。为了研究结晶器中钢水的不稳定性,使用非稳态雷诺平均(URAN)方法研究结晶器中钢水的不稳定流动。结果表明,涡旋运动在较低的回流区是造成流场不稳定的主要因素。这些漩涡改变了下部再循环区中钢水的流出。从喷嘴出口一侧排出的钢水到达一定深度,然后回流到喷嘴底部,而从另一出口排出的钢水则深深地流入到液池中。这将导致铸件内部缺陷的不对称分布。这些涡流也影响钢水的弯月面水平波动。它们改变了下部再循环区中的反向流动方向和压力场,从而影响了撞击在狭窄面上的水流的位置和角度。本文可以为稳定模具中的流场提供基础。

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