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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. II - A frequency-based approach
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Numerical predictions of short-pulsed laser transport in absorbing and scattering media. II - A frequency-based approach

机译:吸收和散射介质中短脉冲激光传输的数值预测。 II-基于频率的方法

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摘要

The one-dimensional transient radiative transfer problem considered in the companion paper (Rousse 2007) is computationally solved here by the use of a finite volume method formulated in the space-frequency domain instead of the space-time domain. It has been shown in Rousse (2007) that numerical approaches based in the space-time domain induce transmitted flux emerging earlier than the minimal time required by the radiation to leave the medium. Therefore, to eliminate the time dependence, a frequency-based numerical method is formulated, implemented and validated in this paper. Results for transmittances are accurate and realistic, that is showing no physically unrealistic behaviours at early time periods. However, the frequency-dependent approach is computationally relatively expensive: it requires approximately five times more computational time than its temporal counterpart.
机译:通过使用在时空域而不是时空域中公式化的有限体积方法,可以在计算上解决伴随论文(Rousse 2007)中考虑的一维瞬态辐射传递问题。 Rousse(2007)中已经表明,基于时空域的数值方法所产生的传输通量要早于辐射离开介质所需的最短时间。因此,为消除时间依赖性,本文提出了一种基于频率的数值方法,并对其进行了验证。透射率的结果是准确而真实的,这表明在早期没有物理上不现实的行为。但是,频率相关的方法在计算上相对昂贵:其所需的计算时间是其时间对应方法的大约五倍。

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