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Optical sizing of aggregated combustion particles: computational development of a two-angle laser scattering technique

机译:聚集燃烧粒子的光学尺寸:双角度激光散射技术的计算开发

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摘要

To simplify the experimental efforts involved in the nonintrusive optical characterization of typical combustion-generated particulates, an inverse analysis of scattering measurements at only two angles is developed and evaluated based on the exact scattering computations on simulated fractallike aggregates. Two optimum angles are suggested by combination of theoretical (sensitivity analysis) and practical (spatial resolution) considerations that have led to the interpretation of spherule diameter from the ratio of large-angle scattering and absorption coefficients and the aggregate gyration radius from the ratio of scattering dissymmetry. The inferred spherule and aggregate sizes are found to be generally in good agreement with the initially prescribed values for the range of physical and optical particulate properties considered here. These computational results under precise simulation conditions demonstrate the accuracy of the proposed particulate-sizing technique by avoiding the common experimental uncertainties that prevent a definitive performance assessment of any experimental method.
机译:为了简化典型燃烧产生的颗粒的非侵入式光学表征所涉及的实验工作,仅基于模拟分形聚集体的精确散射计算,开发并评估了仅在两个角度的散射测量值的反分析。通过理论(灵敏度分析)和实用(空间分辨率)考虑因素的组合,提出了两个最佳角度,这些角度导致根据大角度散射系数和吸收系数的比值解释球体直径,以及根据散射比例的总回转半径进行解释。不对称。对于这里考虑的物理和光学颗粒性质的范围,发现推断的小球和聚集体的尺寸通常与最初规定的值很好地吻合。在精确的模拟条件下,这些计算结果通过避免常见的实验不确定性(这些不确定性妨碍了任何实验方法的最终性能评估),证明了所提出的颗粒尺寸测定技术的准确性。

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