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Calculation of Phase-Change Boundary Position in Continuous Casting

机译:连铸中相变边界位置的计算

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The problem of determination of the phase-change boundary position at the mathematical modeling of continuous ingot temperature field is considered. The description of the heat transfer process takes into account the dependence of the thermal physical characteristics on the temperature, so that the mathematical model is based on the nonlinear partial differential equations. The boundary position between liquid and solid phase is given by the temperatures equality condition and the Stefan condition for the two-dimensional case. The new method of calculation of the phase-change boundary position is proposed. This method based on the finite-differences with using explicit schemes and on the iteration method of solving of non-linear system equations. The proposed method of calculation is many times faster than the real time. So that it amenable to be used for model predictive control of continuous semifinished product solidification.
机译:考虑了在连续铸锭温度场的数学建模中确定相变边界位置的问题。传热过程的描述考虑了热物理特性对温度的依赖性,因此数学模型基于非线性偏微分方程。在二维情况下,液相和固相之间的边界位置由温度相等条件和Stefan条件给出。提出了计算相变边界位置的新方法。该方法基于具有显式格式的有限差分法和求解非线性系统方程的迭代方法。所提出的计算方法比实时速度快许多倍。因此它可用于连续半成品凝固的模型预测控制。

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