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Numerical investigation of processes in the lignite-fired furnace when simple gray gas and weighted sum of gray gases models are used

机译:使用简单灰气和灰气加权总和模型的褐煤燃烧炉过程的数值研究

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Comparison of the numerical investigation results was carried out when the simple gray gas (SGG) and weighted sum of gray gases (WSGG) models are used to model the radiative properties of the gas phase inside the lignite fired furnaces. Comprehensive mathematical model of the tangentially fired furnace by pulverized lignite was made. Gas radiative properties were modeled by the SGG and WSGG models. Radiative heat transfer was modeled by the zonal model. Gas-phase variables and absorbed wall fluxes were compared on the basis of the relative differences that were determined for all control volumes and surface zones. Average relative differences of the gas-phase temperatures were about 1.0%. Average relative differences of the absorbed wall fluxes were from 2.0% to 5.0%. Absorbed wall fluxes determined by the SGG model were bigger than those determined by the WSGG model. Differences of the heat transfer rates of the absorbed radiation through the furnace walls were expressed in percents of heat transfer rates determined by the SGG model and were similar to the average relative differences of absorbed wall fluxes. Results justify application of the SGG model in comprehensive mathematical models of lignite-fired furnaces.
机译:当使用简单灰气体(SGG)模型和灰气体加权总和(WSGG)模型对褐煤燃烧炉内部气相的辐射特性进行建模时,进行了数值研究结果的比较。建立了粉煤褐煤切向燃烧炉的综合数学模型。气体辐射特性通过SGG和WSGG模型进行建模。辐射传热通过区域模型建模。气相变量和吸收的壁通量是根据所有控制体积和表面区域确定的相对差异进行比较的。气相温度的平均相对差为约1.0%。吸收的壁通量的平均相对差为2.0%至5.0%。由SGG模型确定的吸收壁通量大于由WSGG模型确定的吸收壁通量。通过炉壁吸收的辐射的传热速率的差异以SGG模型确定的传热速率的百分比表示,与吸收的壁通量的平均相对差异相似。结果证明了SGG模型在褐煤燃烧炉综合数学模型中的应用。

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