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Dimensions of CH4-Jet Flame in Hot O2/CO2 Coflow

机译:热O2 / CO2 COFLOW中CH4喷射火焰的尺寸

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The present study has numerically simulated the oxy-fuel combustion of a methane (CH4) jet in hot coflow (JHC). The main objective is to investigate the influences of the oxygen (O2) molar fraction (X_(CO2)*), temperature (T_(cof)*) and velocity (v_(cof)*) of the O2/CO2 coflow on dimensions of the JHC reaction zone or flame. The simulations use the model of eddy dissipation concept (EDC) with the detailed chemical mechanism described by GRI-Mech 3.0. To validate the modeling, several air-fuel JHC flames are predicted under the same conditions of the work of Dally et al. [Proc. Combust Inst. 2002, 29, 1147— 1154]; the predictions match well with the measurements. Results suggest that, as either X_(CO2)* or v_(cof)* decrease or T_(cof)* increases, the volume of the JHC reaction zone increases and hence the overall oxidation rate of CH4 decreases. In particular, raising the coflow speed v_(cof)* causes the flame to be significantly thinner but only slightly longer. It is also demonstrated that the oxy-fuel reaction zone is larger, and so, the temperature is lower than the air-fuel counterpart. Besides, under identical conditions, the oxy-fuel combustion produces more carbon monoxide than does the air-fuel combustion.
机译:目前的研究在热COFLOW(JHC)中的甲烷(CH4)射流的数值模拟了氧气 - 燃料燃烧。主要目的是研究氧(O2)摩尔分数(X_(CO2)*),温度(T_(COF)*)和速度(v_(cof)*)的影响,O2 / CO2 COFLOW的尺寸JHC反应区或火焰。模拟使用涡流耗散概念(EDC)模型,并通过GRI-MECH 3.0描述的详细化学机制。为了验证建模,在Dally等人的工作的相同条件下预测了几种空气燃料JHC火焰。 [proc。燃烧Inst。 2002,29,1147-1154];预测与测量相匹配。结果表明,作为X_(CO2)*或V_(COF)*降低或T_(COF)*增加,JHC反应区的体积增加,因此CH4的总氧化速率降低。特别是,提高CoFlow速度V_(COF)*使火焰显着更薄,但只有稍长。还证明氧 - 燃料反应区较大,因此,温度低于空燃比。此外,在相同的条件下,氧气燃料燃烧产生更多的一氧化碳,而不是空气燃料燃烧。

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