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Estimation of Interfacial Heat Transfer Coefficient for Horizontal Directional Solidification of Sn-5 wtPb Alloy Using Genetic Algorithm as Inverse Method

机译:遗传算法用遗传算法估算Sn-5wt%Pb合金水平定向凝固界面传热系数的思想传热系数

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In the present work, a one-dimensional transient solidification heat transfer problem is solved to determine the unknown interfacial heat transfer coefficient (IHTC) at the mold-metal interface using genetic algorithm (GA), an evolutionary and widely known algorithm, as an inverse method. The forward model is numerically solved to obtain the exact temperatures by incorporating the appropriate correlation for the IHTC that varies with time. In order to mimic experiments, the exact temperatures are then perturbed with the standard deviations of 0.01, 0.02, and 0.03. In the inverse estimation, genetic algorithm is used to minimize the objective function, thereby reducing the error between the measured and the simulated temperatures. The study on the performance parameters of the algorithm is also discussed in detail.
机译:在本工作中,解决了一维瞬态凝固传热问题以使用遗传算法(GA),进化和广泛的已知算法确定模具 - 金属界面处的未知界面传热系数(IHTC),作为逆方法。向前模型通过掺入随时间变化而变化的IHTC的适当相关性来获得精确的温度。为了模仿实验,然后在0.01,0.02和0.03的标准偏差中扰动确切的温度​​。在逆估计中,遗传算法用于最小化目标函数,从而降低测量和模拟温度之间的误差。还详细讨论了对算法的性能参数的研究。

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