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Control of phase boundary evolution in metal solidification for new thermodynamic parameters of the metal

机译:为金属的新热力学参数控制金属凝固中的相界演化

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摘要

The problem of controlling the phase boundary evolution in the course of solidification of metals with different thermodynamic properties is studied. The underlying mathematical model of the process is based on a three-dimensional nonstationary two-phase initial-boundary value problem of the Stefan type. The control functions are determined by optimal control problems, which are solved numerically with the help of gradient optimization methods. The gradient of the cost function is exactly computed by applying the fast automatic differentiation technique. The research results are described and analyzed. Some of them are illustrated.
机译:研究了具有不同热力学性质的金属在凝固过程中控制相界演化的问题。该过程的基础数学模型基于Stefan类型的三维非平稳两相初始边界值问题。控制功能由最佳控制问题确定,这些问题可以通过梯度优化方法进行数值求解。通过应用快速自动微分技术可以精确计算出成本函数的梯度。对研究结果进行描述和分析。其中一些被说明。

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