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Elastic light scattering measurements on non-uniform particle flow fields: theoretical considerations

机译:非均匀粒子流场上的弹性光散射测量:理论考虑

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Flow field non- uniformity effects on the sizing results from inversion of multi- angle elastic light scattering signals were investigated and found to be significant for measurement systems where the scale of the flow field variation and the scattering probe volume were similar. Particulate flow fields, such as those produced by multi- element diffusion burners used in flame synthesis processes, generally form two- dimensional patterns perpendicular to the axis of the carrier flow. Expansion of the spatial particle number density field in terms of the double Fourier series is used to derive relationships that quantitatively estimate the accuracy of measurement results. In this paper, we present the Fourier analysis used to quantify effects of probe volume size and alignment. Special attention is given to measurements of low spatial resolution, i. e. measurements that provide information on the global ( cross- sectional) average particle size distribution. After brief discussions on the general requirements for the diagnostics layout ( probe volume size) and incorporation of the systematic errors in signal inversion for global average measurements, the analysis for a typical flow field produced by a Hencken burner is presented. The results of this analysis indicate that the dimensions of the probe volume have to be about three times larger than the characteristic length of the particle field in order to avoid excessively large uncertainties in measurement results.
机译:研究了多角度弹性光散射信号的反演对流场大小不均匀性的影响,对流场变化量和散射探头体积相似的测量系统具有重要意义。颗粒流场,例如由火焰合成过程中使用的多元素扩散燃烧器产生的流场,通常形成垂直于载流轴的二维图案。利用双重傅里叶级数来扩展空间粒子数密度场,以得出定量估计测量结果准确性的关系。在本文中,我们介绍了傅立叶分析,用于量化探针体积大小和对齐方式的影响。特别注意低空间分辨率的测量,即。 e。提供有关整体(横截面)平均粒度分布信息的测量值。在简要讨论了诊断布局的一般要求(探头体积大小)以及将信号反转中的系统误差纳入全局平均测量值之后,对Hencken燃烧器产生的典型流场进行了分析。分析的结果表明,探头体积的尺寸必须比粒子场的特征长度大三倍左右,以避免测量结果中的不确定性过大。

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