Solution of heat transfer inverse problem in thin film irradiated by laser

A. Korczak, W. Mucha
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Abstract

The presented article deals with inverse problems in nanoscale heat transfer identification problems [1]. Heat flow in solids can be modelled using various models. When dealing with objects of small dimensions, of the order of nanometres, and with fast heating processes, comparable to relaxation times, then it is reasonable to use molecular dynamics or the Boltzmann transport equation (BTE) [2]. The presented coupled system of Boltzmann transport equations has the advantage over molecular dynamics that it has a less complicated mathematical apparatus and calculations proceed faster. A thin film irradiated by ultrashort laser pulse is modeled using BTE. Heat transfer parameters of the model are identified using evolutionary algorithm – an optimization algorithm inspired on biological evolution of species. Multicriterial identification is characterized as an optimization problem where the difference between obtained and expected results is minimized.
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激光辐照薄膜传热反问题的求解
本文讨论了纳米尺度传热识别问题中的逆问题[1]。固体中的热流可以用各种模型来模拟。当处理小尺寸物体时,纳米量级,加热过程快,与松弛时间相当,那么使用分子动力学或玻尔兹曼输运方程(BTE)是合理的[2]。本文提出的玻尔兹曼输运方程耦合系统与分子动力学相比,具有数学装置简单、计算速度快的优点。利用BTE对超短激光脉冲辐照后的薄膜进行了建模。采用进化算法对模型的传热参数进行了识别,这是一种受物种生物进化启发的优化算法。多准则识别的特点是一个优化问题,其中所得结果和预期结果之间的差异是最小的。
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