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首页> 外文期刊>Journal of Quantitative Spectroscopy & Radiative Transfer >Calculations of thermal radiation transfer of C2H2 and C2H4 together with H2O, CO2, and CO in a one-dimensional enclosure using LBL and SNB models
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Calculations of thermal radiation transfer of C2H2 and C2H4 together with H2O, CO2, and CO in a one-dimensional enclosure using LBL and SNB models

机译:使用LBL和SNB模型将C2H2和C2H4的热辐射转移与H2O,CO2和CO一起计算的计算

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摘要

Generally, the involvement of hydrocarbons such as C2H4 and its derivative C2H2 in thermal radiation has not been accounted in the numerical simulation of their flames, which may cause serious error for estimation of temperature in the early stage of combustion. At the first, the Statistical Narrow-Band (SNB) model parameters for C2H2 and C2H4 are generated from line by line (LBL) calculations. The distributions of the concentrations of radiating gases such as H2O, CO2, CO, C2H2 and C2H4, and the temperature along the centerline of a laminar ethylene/air diffusion flame were chosen to form a one-dimensional, planar enclosure to be tested in this study. Thermal radiation transfer in such an enclosure was calculated using the LBL approach and the SNB model, most of the relative errors are less than 8% and the results of these two models shows an excellent agreement. Below the height of 20 mm, which is the early stage of the flame, the average fraction contributed by C2H2 and C2H4 in the radiative heat source is 33.8%, while that by CO is only 5.8%. This result indicates that the involvement of C2H2 and C2H4 in radiation heat transfer needs to be taken into account in the numerical modeling of the ethylene/air diffusion flame, especially in the early stage of combustion. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通常,在其火焰的数值模拟中,烃如C2H4及其衍生物C2H2在热辐射中的参与情况下,这可能导致燃烧早期阶段的温度估计严重误差。首先,C2H2和C2H4的统计窄带(SNB)模型参数由线路(LBL)计算产生。选择辐射气体的浓度,例如H 2 O,CO 2,CO,C 2 H 2和C2H4,以及沿着层状乙烯/空气扩散火焰的中心线的温度选择,形成一维的平面外壳,以便在其中测试学习。使用LBL方法和SNB模型计算这种外壳中的热辐射传输,大多数相对误差小于8%,这两种型号的结果显示了很好的一致性。低于20毫米的高度,即火焰的早期阶段,辐射热源中C2H2和C2H4的平均分数为33.8%,而CO仅为5.8%。该结果表明,在乙烯/空气扩散火焰的数值模型中,特别是在燃烧的早期阶段的数值模型中需要考虑C2H2和C2H4在辐射热传递中的累积。 (c)2016 Elsevier Ltd.保留所有权利。

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