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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Lattice Boltzmann method for short-pulsed laser transport in a multi-layered medium
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Lattice Boltzmann method for short-pulsed laser transport in a multi-layered medium

机译:格子Boltzmann方法在多层介质中短脉冲激光传输

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摘要

We construct a lattice Boltzmann method (LBM) for transient radiative transfer in one-dimensional multi-layered medium with distinct refractive index in each layer. The left boundary is irradiated normally by a short-pulsed laser. The Fresnel interfaces conditions, which incorporate reflection and refraction, are used at the boundaries and the interfaces. Based on the Fresnel's law and Snell's law, the interfacial intensity formulas are introduced. The collimated and diffuse intensities are treated individually. At a transient time step, the collimated component is first solved by LBM and then embedded into the transient radiative transfer equation as a source term. To keep the consistency of the directions in all the layers, angular interpolation of the intensities at the interfaces is adopted. The transient radiative transfer in a two-layer medium is first investigated, and the time-resolved results are validated by comparing with those by the Monte Carlo method (MCM). Of particular interest, the angular intensities along the slab at different times are presented to illustrate a variety of interesting phenomena, and the discontinuous nature of the intensity at the interfaces is discussed. The effects of various parameters on the time-resolved signals are examined. (C) 2015 Elsevier Ltd. All rights reserved.
机译:我们构造一维Boltzmann方法(LBM),用于在一维多层介质中的瞬态辐射传递,每一层中的折射率均不同。左边界通常由短脉冲激光照射。在边界和界面处使用了包含反射和折射的菲涅尔界面条件。根据菲涅耳定律和斯涅尔定律,引入了界面强度公式。准直和漫射强度分别进行处理。在瞬态时间步长处,准直分量首先通过LBM求解,然后作为源项嵌入到瞬态辐射传递方程中。为了保持所有层方向的一致性,在界面处采用强度的角度插值。首先研究了两层介质中的瞬态辐射传递,并通过与蒙特卡罗方法(MCM)进行了比较,验证了时间分辨结果。特别令人感兴趣的是,提出了沿平板在不同时间的角强度以说明各种有趣的现象,并讨论了界面处强度的不连续性。检查了各种参数对时间分辨信号的影响。 (C)2015 Elsevier Ltd.保留所有权利。

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