首页> 外文期刊>Thermal science >INFLUENCE OF APPLICATION OF HOTTEL'S ZONAL MODEL AND SK-FLUX MODEL OF THERMAL RADIATION ON NUMERICAL SIMULATIONS RESULTS OF PULVERIZED COAL FIRED FURNACE
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INFLUENCE OF APPLICATION OF HOTTEL'S ZONAL MODEL AND SK-FLUX MODEL OF THERMAL RADIATION ON NUMERICAL SIMULATIONS RESULTS OF PULVERIZED COAL FIRED FURNACE

机译:热辐射的Hottel区域模型和SK-Flux模型的应用对煤粉炉数值模拟结果的影响

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摘要

Difference of results of numerical simulation of pulverized coal fired furnace when mathematical models contain various radiation models has been described in the paper. Two sets of numerical simulations of pulverized coal fired furnace of 210 MW_e power boiler have been performed. One numerical simulation has contained Hottel's zonal model, whereas the other numerical simulation has contained six-flux model. Other details of numerical simulations have been identical. The influence of radiation models has been examined through comparison of selected variables (gas-phase temperature, oxygen concentration, and absorbed radiative heat rate of surface zones of rear and right furnace walls), selected global parameters of furnace operation (total absorbed heat rate by all furnace walls and furnace exit gas-phase temperature). Computation time has been compared as well. Spatially distributed variables have been compared through maximal local differences and mean differences. Maximal local difference of gas-phase temperature has been 8.44%. Maximal local difference of absorbed radiative heat rate of the surface zones has been almost 80.0%. Difference of global parameters of furnace operation has been expressed in percents of value obtained by mathematical model containing Hottel 's zonal model and has not been bigger than 7.0%. Computation time for calculation of 1000 iterations has been approximately the same. Comparison with other radiation models is necessary for assessment of differences.
机译:本文描述了数学模型包含各种辐射模型时,粉煤燃烧炉数值模拟结果的差异。对210 MW_e电锅炉的粉煤燃烧炉进行了两组数值模拟。一个数值模拟包含Hottel的区域模型,而另一个数值模拟则包含六通量模型。数值模拟的其他细节相同。通过比较选定的变量(气相温度,氧气浓度和后炉壁和右炉壁表面区域的吸收辐射热率),选择的炉子运行总体参数(总吸收热率)来检查辐射模型的影响。所有炉壁和炉子出口气相温度)。计算时间也已进行比较。通过最大局部差异和均值差异对空间分布变量进行了比较。气相温度的最大局部差异为8.44%。表面区域吸收的辐射热率的最大局部差异几乎为80.0%。熔炉运行全局参数的差异以包含Hottel区域模型的数学模型获得的值的百分比表示,且不大于7.0%。计算1000次迭代的计算时间大致相同。与其他辐射模型进行比较对于评估差异是必要的。

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