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IMPROVED TREATMENT OF ANISOTROPIC SCATTERING FOR ULTRAFAST RADIATIVE TRANSFER ANALYSIS

机译:改善超快辐射转移分析各向异性散射的处理

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The necessity of conserving both scattered energy and asymmetry factor for ballistic incidence after either FVM or DOM discretization is convincingly shown by analyzing ultrafast laser radiative transfer in a cubic enclosure housing a participating medium. A phase-function normalization technique introduced previously by the present authors to correct for non-conservation of energy and asymmetry factor in diffuse radiant energy scattering is applied to scattering of ballistic incidence for the first time in 3-D FVM/DOM in order to improve treatment of anisotropic scattering through reduction of angular false scattering errors. Treatment of only the diffuse radiation will not conserve ballistic properties if the direction of ballistic incidence differs from a predetermined discrete direction. Our ultrafast radiative transfer predictions generated using the FVM and DOM are compared to benchmark Monte Carlo predictions in the literature to gauge accuracy and to illustrate the necessity of ballistic phase-function normalization. Additionally, numerical predictions of energy deposition in a tissue-phantom medium are analyzed to further clarify the importance of accurate numerical predictions. It is shown that the addition of proper ballistic phase-function treatment greatly improves predicted heat fluxes and energy deposition for anisotropic scattering and for situations where accurate numerical modeling is crucial.
机译:通过分析容纳参与介质的立方外壳中的超快激光辐射转移,令人信服地示出了在FVM或DOM离散化之后施加散射能量和散射能量和不对称因子的必要性。先前通过本作者介绍的相位函数归一化技术来校正漫射辐射能量散射中的不守恒,以便在3-D FVM / DOM中的第一次散射弹道发射散射,以便改善通过减少角度假散射误差治疗各向异性散射。如果弹道发射方向与预定的离散方向不同,则只有漫射辐射的处理将不存在弹道性质。我们使用FVM和DOM产生的超快辐射传递预测与文献中的基准蒙特卡罗预测进行了比较,以便测量精度,并说明弹道相位函数标准化的必要性。另外,分析了组织 - 幻像培养基中能量沉积的数值预测,以进一步阐明准确的数值预测的重要性。结果表明,添加适当的弹道相位函数处理极大地改善了预测的热通量和能量沉积,用于各向异性散射和准确数值模拟至关重要的情况。

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