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A ONE-DIMENSIONAL TRANSIENT SOLID FUEL CONVERSION MODEL FOR GRATE COMBUSTION OPTIMIZATION

机译:炉排燃烧优化的一维瞬态固体燃料转化模型

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摘要

A one-dimensional transient model for simulating the conversion of solid biomass fuels in grate boilers is presented. The model considers drying; pyrolysis; and char oxidation; gas flow through the pore space of the bed; conductive, convective, and radiative heat transfer; and shrinkage of the fuel bed. It allows to study the influence of fuel properties and operating parameters on the solid fuel conversion, the resulting grate coverage, and the gas profiles. Experimental results from a 1.2 MW grate boiler at optimum conditions are used to adjust the moving bed velocity in the model. Calculations with increased fuel humidity then result in a prolonged drying time and unburned carbon in the ash. Adopted model runs further reveal that ideal conditions can be recovered either by increasing the excess air, by air pre-heating, or by reducing the boiler capacity. Hence, the model is useful to predict the influence of parameters on the fuel conversion, to evaluate measures for combustion optimization, and to develop control strategies.
机译:提出了一种模拟炉排锅炉固体生物质燃料转化的一维瞬态模型。该模型考虑干燥;热解和炭氧化;气流通过床的孔隙空间;传导,对流和辐射换热;和燃料床的收缩。它可以研究燃料特性和操作参数对固体燃料转化率,最终炉排覆盖率和气体分布的影响。来自1.2 MW炉排锅炉在最佳条件下的实验结果用于调整模型中的移动床速度。然后,随着燃料湿度的增加而进行的计算将导致延长的干燥时间和灰烬中未燃烧的碳。采用的模型运行进一步表明,可以通过增加过量空气,通过空气预热或通过减少锅炉容量来恢复理想条件。因此,该模型对于预测参数对燃料转化的影响,评估燃烧优化措施以及制定控制策略很有用。

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