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Development and comparison of the DTM, the DOM and the FVM formulations for the short-pulse laser transport through a participating medium

机译:DTM,DOM和FVM配方的开发和比较,用于通过参与介质的短脉冲激光传输

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摘要

The present article deals with the analysis of transient radiative transfer caused by a short-pulse laser irradiation on a participating medium. A general formulation of the governing transient radiative transfer equation applicable to a 3-D Cartesian enclosure has been presented. To solve the transient radiative transfer equation, formulations have been presented for the three commonly used methods in the study of radiative heat transfer, viz., the discrete transfer method, the discrete ordinate method and the finite volume method. To show the uniformity in the formulations in the three methods, the intensity directions and the angular quadrature schemes for computing the incident radiation and heat flux have been taken the same. To validate the formulations and to compare the performance of the three methods, effect of a square short-pulse laser having pulse-width of the order of a femtosecond on transmittance and reflectance signals in case of an absorbing and scattering planar layer has been studied. Effects of the medium properties such as the extinction coefficient, the scattering albedo and the anisotropy factor and the laser properties such as the pulse-width and the angle of incidence on the transmittance and the reflectance signals have been compared. In all the cases, results of the three methods were found to compare very well with each other. Computationally, the discrete ordinate method was found to be the most efficient.
机译:本文涉及由参与介质上的短脉冲激光辐照引起的瞬态辐射传递的分析。提出了适用于3D笛卡尔封闭体的控制瞬态辐射传递方程的一般公式。为了解决瞬态辐射传递方程,提出了三种用于辐射热传递研究的常用公式,即离散传递法,离散纵坐标法和有限体积法。为了显示三种方法中配方的均匀性,计算入射辐射和热通量的强度方向和角正交方案均采用相同的方法。为了验证配方并比较这三种方法的性能,研究了在吸收和散射平面层的情况下,具有飞秒级脉冲宽度的方形短脉冲激光器对透射率和反射率信号的影响。比较了消光系数,散射反照率和各向异性因子等介质特性对脉冲宽度和入射角等激光特性对透射率和反射率信号的影响。在所有情况下,发现这三种方法的结果都可以很好地进行比较。在计算上,发现离散纵坐标法是最有效的。

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