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NUMERICAL INVESTIGATION OF STEEL GRADE CHANGE USING ANSYS

机译:基于ANSYS的钢等级变化的数值研究。

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摘要

The tundish working as a buffer and distributor of liquid steel between the ladle and continuous casting (CC) moulds. It plays a vital role in the performance of CC machine, Solidification of liquid steel and quality of productivity. Therefore it is necessary to control the flow pattern, heat transfer and inclusion particle movement of molten steel in the tundish [1]. Hence this paper targets to study the performance of tundish by studying water volume fractions and validated against the Planar Laser Induced Fluorescence (PLIF) results obtained from available literature. The variation of time dependent concentration field is measured by PLIF. Due to special calibration procedure of the PLIF system the optical, geometrical and physical parameters do not have to be determined analytically, thus leading to reliable results. The experiments have shown that the mixing process correlates with the quasi steady state flow pattern. Such information is important in steel production because the number of mixed slabs produced during sequence casting with a grade change is closely related to the mixing of the tundish melt. Hence in this paper PLIF measurements are used to validate numerical solutions of the mixing processes in water models of metallurgical reactor [2].
机译:中间包在钢水包和连铸(CC)模具之间充当液态钢的缓冲剂和分配剂。它对CC机器的性能,钢水的凝固和生产率的质量起着至关重要的作用。因此,有必要控制中间包中钢水的流型,传热和夹杂物运动[1]。因此,本文旨在通过研究水体积分数来研究中间包的性能,并根据从现有文献中获得的平面激光诱导荧光(PLIF)结果进行了验证。时间依赖性浓度场的变化通过PLIF测量。由于PLIF系统采用特殊的校准程序,因此无需解析地确定光学,几何和物理参数,从而获得可靠的结果。实验表明,混合过程与准稳态流型有关。这些信息在钢铁生产中很重要,因为在顺序铸造过程中产生等级变化的混合板坯数量与中间包熔液的混合密切相关。因此,本文将PLIF测量用于验证冶金反应堆水模型中混合过程的数值解[2]。

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