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Use of Numerical Simulations During Continuous Steel Casting

机译:数值模拟在连续铸钢中的应用

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This paper describes numerical modeling of round billets solidification process during continuous steel casting. Emphasis is placed not only on the mathematical nature of transmission events that affect the casting billet (heat conduction, convection and radiation), but also the methods of solving thermal problems (analytical, numerical). The numerical methods are discussed in detail the finite element method and the method of networks that form the core of the most common commercially used simulation software for modeling the temperature fields at various technological processes. In the research was compiled its own sophisticated software - Tefis - solving the problems of temperature fields by using of an explicit (numerical) method of networks. The actual solution is implemented using Fourier-Kirchhoff equation in differential form of enthalpy, which includes the velocity of solidified billet. By software Tefis are carried out a series of computer simulations and sensitivity analysis method to examine the effects of different levels of steel in a mould, different casting velocities, different temperatures above the liquidus temperature of steel and different intensity in the secondary cooling zone on the overall temperature field of continuously casted billets. Thus the calculated temperature fields, of declared steel marks, are subsequently confronted with the results of experimental measurements on real operating casting machine.
机译:本文描述了连铸过程中圆坯凝固过程的数值模型。重点不仅放在影响铸坯(热传导,对流和辐射)的传输事件的数学性质上,还在于解决热问题的方法(解析,数值)。数值方法详细讨论了有限元方法和网络方法,这些方法构成了最常用的商用仿真软件的核心,这些软件用于在各种工艺过程中对温度场进行建模。在研究中,编译了它自己的高级软件-Tefis-通过使用显式(数字)网络方法解决温度场问题。实际解决方案是使用傅立叶-基尔霍夫方程以焓的微分形式实现的,其中包括凝固坯料的速度。通过软件Tefis进行了一系列的计算机模拟和敏感性分析方法,以检验模具中不同水平的钢,不同的铸造速度,高于钢的液相线温度的不同温度以及二次冷却区中不同强度的影响。连铸坯的整体温度场。因此,计算得出的标明钢印的温度场随后将在实际运行的铸造机上面临实验测量的结果。

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