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Effects of Condensate Layers on the Light Scattering of Soot Combustion Aerosols

机译:冷凝水层对烟气燃烧气溶胶光散射的影响

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Soot particles are composed of nanometer carbonaceous particles that are aggregated together into micrometer fractal aggregates. These particles produced during combustion can have adsorbed layers of poly aromatic hydrocarbons (PAH’s) or in our atmosphere can have adsorbed layers of water and hydrocarbons. The present state of the art of light scattering provides for the multiple scattering of small particles typically below the Rayleigh limit (size less than the wavelength of light) in multiple scattering fractal aggregates. This work extends the multiple scattering theory to larger primary particles using the Rayleigh-Gans-Debye (or Mie) theory and adds the scattering from layers of varying thickness adsorbed on the primary particles to more realistically predict the effects of condensed PAH’s in combustion diagnostics and the effect of condensed water and condensed hydrocarbons in atmospheric obscuration calculations.
机译:烟灰颗粒由纳米碳质颗粒组成,纳米碳质颗粒聚集成微米分形聚集体。在燃烧期间产生的这些颗粒可以具有富含聚芳族烃(PAH)的吸附层或在我们的气氛中可以具有吸附的水和烃的吸附层。光散射领域的本领域提供了在多个散射分形聚集体中的瑞利极限(尺寸小于光的光长的尺寸小的小颗粒的多个散射。该工作将多个散射理论延伸到较大的主要颗粒,使用瑞利 - GANS-deye(或MIE)理论将散射从初级颗粒上吸附的不同厚度的层增加,以更新地预测浓缩的PAH在燃烧诊断中的影响冷凝水和稠烃在大气遮蔽计算中的影响。

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