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Optimization of a concasting technology via a dynamic solidification model of a slab caster

机译:通过板坯连铸机的动态凝固模型优化连铸技术

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Solidification and cooling of a continuously cast steel slab and the heating of the mould is a very complicated problem of transient heat and mass transfer. This original three-dimensional (3D) numerical model is capable of simulating the temperature field of a caster. The numerical computation has to take place simultaneously with the data acquisition-not only to confront it with the actual numerical model, but also to make it more accurate throughout the process. The utilization of the numerical model of solidification and cooling plays an indispensable role in practice.An important step in this analysis is to determine the necessary quantities in the course of concasting. The software enables data acquisition in real time, which is necessary for optimization. This is ensured by the correct process procedure: real process → input data → numerical analysis →optimization → correction of process. This procedure is necessary for optimization (i.e. maximization of the quality of the process)-especially when reacting to specific needs and conditions in the operation.
机译:连续铸造的钢坯的凝固和冷却以及模具的加热是瞬态传热和传质的非常复杂的问题。此原始的三维(3D)数值模型能够模拟脚轮的温度场。数值计算必须与数据采集同时进行-不仅要面对实际的数值模型,还要使它在整个过程中更加准确。在实践中利用凝固和冷却的数值模型起着不可或缺的作用。 此分析的重要步骤是确定连铸过程中的必要数量。该软件可实现实时数据采集,这对于优化是必不可少的。这可以通过正确的过程步骤来确保:真实过程→输入数据→数值分析→优化→过程校正。此过程对于优化(即过程质量的最大化)是必要的,尤其是在对操作中的特定需求和条件做出反应时。

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