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An Effective Inverse Heat Transfer Procedure Based on Evolutionary Algorithms to Determine Cooling Conditions of a Steel Continuous Casting Machine

机译:基于进化算法的有效逆热传递过程确定钢连铸机的冷却条件

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摘要

The inverse modeling of heat transfer is a useful tool in analyzing contact heat transfer at the ingot surfaces during the continuous casting process. The determination of the boundary conditions involves an experimental work consisting in the evaluation of the thermal history, generally at the casting surface, experimentally provided by infrared pyrometers. Additionally, numerical simulations, based on the solution of the 2D transient heat conduction equation, are performed in order to be inversely solved in response to the measured thermal data furnished by the sensor. Due to computational time consumption during simulations in searching cooling conditions, this work proposes an interaction between natural inspired algorithms, called evolutionary algorithms, and the numerical model in order to speed up the searching process. The present work aims to compare three algorithms, namely genetic algorithm, improved stochastic ranking evolutionary strategy, and evolutionary strategy with Cauchy distribution. The latter develops a metaheuristic version of an evolutionary strategy workflow, using a Cauchy random number function to generate each individual, instead of the usual uniform distribution function available in almost all programming languages. The surface temperature, solid shell, and molten pool profiles from the determined cooling conditions are analyzed in terms of casting quality.
机译:传热的逆模型是分析连续铸造过程中铸锭表面接触传热的有用工具。边界条件的确定涉及一项实验工作,该工作包括通过红外高温计实验提供的通常在铸件表面的热历史评估。另外,基于二维瞬态热传导方程的解,进行了数值模拟,以便响应于传感器提供的测得的热数据进行逆求解。由于在搜索冷却条件时模拟过程中的计算时间消耗,这项工作提出了一种自然进化算法(称为进化算法)与数值模型之间的相互作用,以加快搜索过程。本工作旨在比较三种算法,即遗传算法,改进的随机排序进化策略和具有柯西分布的进化策略。后者开发了进化策略工作流程的元启发式版本,使用柯西随机数函数生成每个人,而不是几乎所有编程语言中都可以使用的通常的统一分布函数。根据铸件质量分析确定的冷却条件下的表面温度,固体壳和熔池轮廓。

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