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Numerical Simulation of a Flameless Combustion Furnace with Mixtures of Methane and a Sub-Bituminous Pulverized Coal

机译:甲烷与次烟煤粉混合气无焰燃烧炉的数值模拟

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A numerical study of flameless combustion with mixtures of methane and a sub-bituminous pulverized coal was carried out. The analyzed mixtures were 0%, 25%, 50%, 75%, and 100% pulverized coal (energy based). The numerical study was performed using the geometry of a laboratory-scale furnace, which was originally designed to obtain the flameless combustion regime burning natural gas. The turbulence was modeled by means of the standard k-epsilon model; the interaction between combustion and turbulence was modeled with the eddy dissipation model using a global reaction mechanism for methane. Also, the pulverized coal was modeled as a discrete phase using the Lagrangian approach, where oxidation and gasification reactions were taken into account to model coal consumption. Additionally, all simulations were done keeping the thermal power constant at 28 kWth and the excess air coefficient was fixed at 1.2. It was found that there are no significant changes in the temperature field uniformity when methane is replaced by pulverized coal, and the size of the reaction zone stays quite similar to the case of burning pure methane. Furthermore, for some cases an improvement of the recirculation factor was obtained. Based on the numerical results, it was concluded that it would be possible to obtain a stable flameless combustion regime for the analyzed methane/pulverized coal mixtures.
机译:进行了甲烷与亚烟煤粉混合物无焰燃烧的数值研究。分析的混合物为0%,25%,50%,75%和100%的粉煤(基于能量)。数值研究是使用实验室规模的熔炉的几何形状进行的,该熔炉的最初设计旨在获得燃烧天然气的无焰燃烧状态。湍流是通过标准的k-ε模型建模的。燃烧和湍流之间的相互作用是采用涡流耗散模型和甲烷的整体反应机理进行建模的。另外,使用拉格朗日方法将粉煤建模为离散相,其中考虑了氧化和气化反应以模拟煤炭消耗。此外,在进行所有模拟时,都将热功率保持在28 kWth,并将多余空气系数固定为1.2。已经发现,当用煤粉代替甲烷时,温度场的均匀性没有显着变化,并且反应区的大小与燃烧纯甲烷的情况非常相似。此外,在某些情况下,再循环因子得到了改善。根据数值结果,可以得出结论,对于所分析的甲烷/煤粉混合物,可以获得稳定的无焰燃烧状态。

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