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首页> 外文期刊>Comptes rendus. Mecanique >Soot and radiation modeling in laminar ethylene flames with tabulated detailed chemistry
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Soot and radiation modeling in laminar ethylene flames with tabulated detailed chemistry

机译:层状乙烯火焰中烟灰和辐射的建模以及详细的化学表格

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摘要

A strategy has been developed in order to compute unsteady convective and radiative heat transfers in an industrial combustion device. This strategy involves a tabulation method to describe gas-phase chemistry, coupled with a semi-empirical soot model. A Monte Carlo method is used to evaluate gas and soot radiative transfer. This paper presents the first validation step of this strategy, in which four laminar premixed ethylene flames have been simulated. The tabulation method well predicts gas-phase species concentrations, including acetylene, considered as the main soot precursor. The soot model gives results in the experimental uncertainty range of measurements, whereas radiative powers highlight the dominating role of soot particles.
机译:为了计算工业燃烧装置中的不稳定对流和辐射热传递,已经开发了一种策略。该策略涉及一种描述气相化学的列表方法,以及一个半经验烟尘模型。蒙特卡罗方法用于评估气体和烟尘的辐射传递。本文介绍了该策略的第一个验证步骤,其中模拟了四个层状预混乙烯火焰。列表法很好地预测了气相物质的浓度,包括被认为是主要烟灰前体的乙炔。烟尘模型在实验不确定性的测量范围内给出结果,而辐射功率突出了烟尘颗粒的主导作用。

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