首页> 外文会议>Sohn International Symposium on Advanced Processing of Metals and Materials vol.2; 20060827-31; San Diego,CA(US) >EVALUATION OF TURBULENCE MODELS IN THE NUMERICAL SIMULATIONS OF FLUID FLOW IN DIFFERENT CONFIGURATIONS OF TUNDISHES
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EVALUATION OF TURBULENCE MODELS IN THE NUMERICAL SIMULATIONS OF FLUID FLOW IN DIFFERENT CONFIGURATIONS OF TUNDISHES

机译:中间包不同结构中的流体流动数值模拟中的湍流模型评估

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Continuous casting is the most important process for solidification of steels. In this process, the fluid flow pattern in the tundish and in the mould have significant effect on the product quality.rnProblems associated to fluid flow in the tundish include surface turbulence, "short-circuits", formation of dead zones and vortexing. During grade changes, mixing in the tundish plays a significant role in determining the length of the intermixed slab. All these flow aspects can be studied by means of mathematical and physical models.rnIn the last years, numerical simulation of fluid flow has become a very popular tool in the analysis of the performance of continuous casting tundishes. In setting-up these numerical simulations, special care should be taken in choosing the appropriate mesh distribution, the interpolation scheme, the adequate location of the inlet boundary and the turbulence model.rnIn the present paper, turbulent fluid flow in different configurations of tundishes was simulated. Different turbulence models were used in the simulations. Residence time distribution (RTD) and mixing curves during grade changes were predicted and compared to results obtained in physical models. The performances of the different turbulence models were evaluated.rnFor the tundishes that have been studied, the performances of the different turbulence models tested in the present work were similar. There is no evidence that any of the models provided sustained improvement when compared to the well-established standard k-ε model. All turbulence models tested presented limitations in simulating flows under low turbulent Reynolds numbers.
机译:连续铸造是钢凝固的最重要过程。在此过程中,中间包和模具中的流体流动方式对产品质量有重大影响。与中间包中的流体流动相关的问题包括表面湍流,“短路”,死区形成和涡旋。在等级变化期间,中间包中的混合在确定混合板的长度方面起着重要作用。所有这些流动方面都可以通过数学和物理模型进行研究。近年来,流体流动的数值模拟已成为分析连续铸造通道性能的一种非常流行的工具。在设置这些数值模拟时,应格外小心选择合适的网格分布,插值方案,入口边界的适当位置和湍流模型。模拟。在仿真中使用了不同的湍流模型。预测了坡度变化期间的停留时间分布(RTD)和混合曲线,并将其与物理模型中获得的结果进行了比较。评估了不同湍流模型的性能。对于已研究的通道,在本工作中测试的不同湍流模型的性能相似。没有证据表明,与公认的标准k-ε模型相比,任何模型都能提供持续的改进。测试的所有湍流模型在低湍流雷诺数下模拟流动时都存在局限性。

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