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The influence of thermophysical properties of steels on the numerical simulation of a a concasting process

机译:钢热物理特性对兼延兼论兼论的数值模拟的影响

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The thermophysical properties of steels have significant influence on the actual concasting process, and on the accuracy of its numerical simulation and optimization. The determination of these properties (heat conductivity, specific heat capacity and density in the solid and liquid states) often requires more time than the actual numerical calculation of the temperature fields of a continuously cast steel billet, cylinder or slab (generally a concasting). The influence of individual properties should be neither under- nor over-estimated. Therefore, an analysis/parametric study of these thermophysical properties was conducted. The order of importance within the actual process and the accuracy of simulation and optimization were also determined. Individual properties, which, in some cases, were obtained from tables, and in others experimentally, were substituted by an approximation using orthogonal polynomials. The accuracy of each polynomial is dependent on the precision of individual values. The order of significance of individual thermophysical properties was determined with respect to the metallurgical length. The analysis was performed by means of a so-called calculation experiment, i.e. by means of the original and Universal numerical concasting model developed by the authors of this paper. It is convenient to conduct such an analysis in order to facilitate the simulation of each individual case of concasting, thus enhancing the process of optimization.
机译:钢的热物理性质对实际延读过程具有显着影响,以及对其数值模拟和优化的准确性。这些性质的测定(在固体和液态中的导热性,比热容和密度)通常需要比连续铸钢坯料,圆柱或板坯的温度场的实际数值计算更多的时间(通常是延伸)。个体性质的影响既不会均未过度估计。因此,进行了对这些热物理性质的分析/参数研究。还确定了实际过程中重要性的重要性和模拟和优化的准确性。在某些情况下,在某些情况下,在实验中获得的个性性质被使用正交多项式取代的近似。每个多项式的准确性取决于单个值的精度。相对于冶金长度测定单个热物理性质的重要性顺序。通过所谓的计算实验,即通过本文作者开发的原始和通用数值兼容模型进行分析。进行这样的分析方便,以便于模拟每个延长的案例,从而提高优化过程。

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