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Simulation of turbulent combustion and NO formation in a swirl combustor

机译:旋流燃烧室湍流燃烧和NO形成的模拟

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摘要

A presumed probability density function (PDF) model for temperature fluctuation is proposed and formulated in this paper. It incorporates a two-step reaction mechanism for propane combustion and the thermal and prompt NO formation mechanisms. The present model, together with a new algebraic Reynolds stress model (ASM), is employed to simulate the turbulent combustion and NO formation in a swirl combustor. The calculated propane, carbon monoxide, and carbon dioxide concentrations agree with the measurement. The calculated gas temperature and oxygen and No concentrations are in general agreement with the measured data. The simulated results show that NO forms mainly in the upstream region of the combustor. The flue gas recirculation effectively abates the nitrogen oxides (NOx) emission in the combustor.
机译:提出并建立了温度波动的概率密度函数(PDF)模型。它结合了丙烷燃烧的两步反应机理以及热和迅速生成NO的机理。本模型与新的代数雷诺应力模型(ASM)一起用于模拟涡流燃烧室中的湍流燃烧和NO形成。计算出的丙烷,一氧化碳和二氧化碳浓度与测量值一致。计算出的气体温度和氧气以及无浓度与测量数据基本一致。模拟结果表明,NO主要在燃烧器的上游区域形成。烟气再循环可有效减少燃烧器中的氮氧化物(NOx)排放。

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