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首页> 外文期刊>Journal of the Brazilian Society of Mechanical Sciences and Engineering >A comparative study of the application of differential evolution and simulated annealing in radiative transfer problems
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A comparative study of the application of differential evolution and simulated annealing in radiative transfer problems

机译:差异演化和模拟退火在辐射传递问题中的应用比较研究

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The radiative transfer phenomenon is modeled by an integro-differential equation known as Boltzmann equation. This equation describes mathematically the interaction of the radiation with the participating medium, i.e., a medium that may absorb, scatter and emit radiation. In this sense, this work presents a study regarding the estimation of radiative properties in a one-dimensional participating medium by using two optimization heuristic methods, namely Simulated Annealing and Differential Evolution. First, a review of these two optimization techniques is presented. The direct radiative transfer problem solution, which is required for both optimization techniques, is obtained by using the Collocation Method. Finally, case-studies are presented aiming at illustrating the efficiency of these methodologies in the treatment of inverse radiative transfer problems.
机译:辐射传递现象通过称为Boltzmann方程的积分微分方程建模。该方程式在数学上描述了辐射与参与介质,即可以吸收,散射和发射辐射的介质的相互作用。从这个意义上讲,这项工作提出了关于使用两种优化启发式方法(即模拟退火和差分演化)估算一维参与介质中的辐射特性的研究。首先,介绍了这两种优化技术。这两种优化技术都需要使用直接辐射传递问题解决方案,方法是使用并置方法。最后,提出了案例研究,旨在说明这些方法在辐射逆传递问题中的有效性。

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