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首页> 外文期刊>International journal of computational fluid dynamics >Numerical predictions of short-pulsed laser transport in absorbing and scattering media. I-A time-based approach with flux limiters
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Numerical predictions of short-pulsed laser transport in absorbing and scattering media. I-A time-based approach with flux limiters

机译:吸收和散射介质中短脉冲激光传输的数值预测。基于I-A的时间限制方法

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摘要

A one-dimensional transient radiative transfer problem in the Cartesian coordinate system involving an absorbing and scattering medium illuminated by a short laser pulse has computationally been solved by use of a finite volume method (FVM). Previous works have shown that first order spatial interpolation schemes cannot represent the physics of the problem adequately as transmitted fluxes emerge before the minimal physical time required to leave the medium. In this paper, the Van Leer and Superbee flux limiters, combined with the second order Lax-Wendroff scheme, are used in an attempt to prevent this. Results presented in this work show that, despite significant improvement, flux limiters fail to completely eliminate the physically unrealistic behaviour. Therefore, a numerical approach into which temporal variables are transformed into frequency-dependent variables is presented in the companion paper to this work.
机译:笛卡尔坐标系中的一维瞬态辐射转移问题,涉及到由短激光脉冲照射的吸收和散射介质,已通过使用有限体积方法(FVM)进行了计算解决。先前的研究表明,一阶空间插值方案无法充分代表问题的物理性质,因为在离开介质所需的最短物理时间之前,已出现了传输通量。在本文中,Van Leer和Superbee通量限制器与二阶Lax-Wendroff方案结合使用,试图防止这种情况的发生。这项工作提出的结果表明,尽管有了重大改进,但通量限制器仍无法完全消除物理上不切实际的行为。因此,在这项工作的配套文件中提出了一种将时间变量转换为频率相关变量的数值方法。

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