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Modeling laser-induced incandescence of soot: enthalpy changes during sublimation, conduction, and oxidation

机译:模拟激光诱导的烟灰白热:升华,传导和氧化过程中的焓变

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摘要

This paper presents an analysis of several equations used to model laser-induced incandescence (LII) of soot. The analysis focuses on sub-models of the change in particle enthalpy during sublimation, conduction, and oxidation. Assuming that pressure is constant, expressing the conductive cooling rate in terms of enthalpy instead of energy, thereby accounting for expansion work, increases the signal decay rate and has an effect comparable to increasing the thermal accommodation coefficient from 0.30 to 0.38. Accounting for oxidative heating decreases the signal decay rate and has an effect comparable to decreasing the accommodation coefficient from 0.30 to 0.25. As an estimate of magnitude of these effects, primary particle sizes inferred from signal decay rates measured at low fluences may be over-predicted by as much as 17% if oxidation is neglected in the model at O_2 partial pressures of ~0.2 bar, under-predicted by 24% if expansion work is neglected, and under-predicted by only 9% if both are neglected. This paper also provides updated parameterizations for average enthalpies of formation, molecular weights, and total pressures of sublimed carbon clusters for use in LII models.
机译:本文介绍了用于建模烟尘白炽灯(LII)的几个方程式的分析。分析着重于升华,传导和氧化过程中颗粒焓变的子模型。假设压力是恒定的,则用焓而不是能量来表示传导冷却速率,从而解决了膨胀功,增加了信号衰减率,并且具有与将热调节系数从0.30增加到0.38相当的效果。考虑到氧化加热降低了信号衰减率,并且具有可将调节系数从0.30降低到0.25的效果。作为对这些影响大小的估计,如果模型中在O_2分压为〜0.2 bar的情况下忽略了氧化,则在低通量下测得的信号衰减率推断出的初级粒径可能会被过度预测多达17%。如果忽略扩展工作,则预测为24%;如果忽略二者,则仅预测为9%。本文还为用于LII模型的升华碳簇的平均形成焓,分子量和总压力提供了更新的参数化。

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