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Heat removal analysis on steel billets and slabs produced by continuous casting using numerical simulation

机译:用数值模拟连续铸造生产的钢坯和板坯的散热分析

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摘要

Simulation of a continuous casting process (CCP) is very important for improving industrial practices, reducing working times, and assuring safety operating conditions. The present work is focused on the development of a computational simulator to calculate and analyze heat removal during continuous casting of steel; routines for reading the geometrical configuration and operating conditions were developed for an easy management. Here, a finite difference method is used to solve the steel thermal behavior using a 2D computational array. Conduction, radiation, and forced convection equations are solved to simulate heat removal according to a steel position along the continuous casting machine. A graphical user interface (GUI) was also developed to display virtual sketches of the casting machines; moreover, computational facilities were programmed to show results such as temperature and solidification profiles. The results are analyzed and validated by comparison with industrial trials; finally, the influence of some industrial parameters such as casting speed and quenching conditions is analyzed to provide some recommendations in order to warrant safety operating conditions.
机译:连续铸造过程(CCP)的仿真对于改善工业实践,减少工作时间并确保安全操作条件非常重要。本工作专注于开发计算模拟器,以计算和分析钢的连续铸造期间的热除去;读取几何配置和操作条件的例程是为了轻松管理。这里,使用有限差分方法来解决使用2D计算阵列来解决钢热行为。解决了传导,辐射和强制对流方程以模拟沿着连续铸造机的钢位置的热量移除。还开发了一种图形用户界面(GUI)来显示铸造机的虚拟草图;此外,编程计算设施以显示温度和凝固型材的结果。通过与工业试验比较分析和验证结果;最后,分析了一些工业参数如铸造速度和淬火条件的影响,以提供一些建议,以便保证安全运行条件。

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