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Numerical Simulation of the Distribution of In Situ Cigarette Combustion-Generated Particulate Matter

机译:原位烟燃烧颗粒物质分布的数值模拟

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摘要

This paper has established a two-dimensional (2D) mathematical model for the generation, growth, and deposition of cigarette total particulate matter (TPM) in the smoldering state. The model has covered the chemical reactions and mass transfer as well as the mechanism of generation, flow, and condensation of particulate matter inside a burning cigarette. Cigarette smoke was generated by puffing under a constant pressure, and the pressure of the filter outlet was −274 Pa. The peak of the concentration of particulate matter was spatially overlapped with the peaks of pyrolysis and oxidation. Pertaining to the cross section of the cigarette at the same axial position, the peak of the diameter of particulate matter along the radial distribution first appeared in the zone near the edge of the cigarette cross section, and then gradually moved to the center of the cigarette with the cigarette smoke moving away from the combustion cone. The maximum number density of particulate matter calculated by the 2D mathematical model at the same axial position of the cigarette and the corresponding particle diameter, as well as the filtration efficiency of the filter rod, are in good accordance with the experimental data reported in previous studies.
机译:本文建立了一种二维(2D)数学模型,用于在闷烧状态下产生,生长和卷烟总颗粒物质(TPM)的产生,生长和沉积。该模型覆盖了燃烧香烟内颗粒物质的生成,流动和冷凝机制的化学反应和质量转移。通过在恒定压力下膨化产生香烟烟雾,滤光出口的压力且减去; 274 pa。颗粒物质浓度的峰值以热解和氧化的峰重叠。与香烟的横截面相同的轴向位置,沿径向分布的颗粒物质直径的峰值首先出现在香烟横截面边缘附近的区域中,然后逐渐移动到香烟的中心香烟烟雾远离燃烧锥。由2D数学模型在香烟和相应粒径的相同轴向位置处计算的颗粒物质的最大数量密度以及过滤杆的过滤效率,与先前研究中报告的实验数据有关。

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