首页> 外文会议>Industry Applications Society Annual Meeting, 1991., Conference Record of the 1991 IEEE >A numerical approach to the computation of light propagation through turbid media: Application to the evaluation of lighted exit signs
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A numerical approach to the computation of light propagation through turbid media: Application to the evaluation of lighted exit signs

机译:一种计算通过混浊介质传播的光的数值方法:在照明出口信号评估中的应用

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A general event-based Monte Carlo approach is presented for computationally performing quantitative and qualitative analyses relevant to the propagation of light through turbid media such as smoke mixtures and fog. The application of interest is the visualization of lighted safety-related signs through fire-caused smoke. The proposed approach is totally numerical in character. The scattering profiles for individual particles are obtained using a laser-based instrument. These are used to numerically model realistic complex, inhomogeneous, and time-varying media for which analytic methods are unavailable and/or intractable. The present approach results in high-quality visualizations, instead of the usual set of extinction coefficients. The computations are parallelizable on a massive scale, and are performed rapidly using a Connection Machine with 32768 processing elements. Experimental results are presented to demonstrate the effectiveness and usefulness of the overall approach.
机译:提出了一种基于事件的通用蒙特卡洛方法,该方法可用于计算执行与光通过混浊介质(如烟混合物和雾)的传播有关的定量和定性分析。感兴趣的应用是通过火灾引起的烟雾可视化照明安全相关标志。所提出的方法是完全数字化的。使用基于激光的仪器获得单个颗粒的散射曲线。这些用于对无法使用和/或难以使用分析方法的现实复杂,不均匀且随时间变化的介质进行数值建模。本方法可产生高质量的可视化效果,而不是通常的消光系数集。这些计算可以大规模并行化,并且可以使用具有32768个处理元素的Connection Machine快速执行。实验结果表明了整体方法的有效性和实用性。

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