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MODELING OF THE REACTION-FRONT PROPAGATION DURING THE FIXED-BED COMBUSTION OF SOLID FUEL

机译:固体燃料固定床燃烧过程中反应前沿传播的模型

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摘要

A one-dimensional, steady-state mathematical model of solid-fuel combustion in a fixed bed is presented. The model equations and boundary conditions as well as the solution method are presented. Calculation results are shown to agree very well with the experimental data. Calculations indicate that during fixed-bed cocurrent flow combustion a reaction front is formed that propagates in the direction opposite to air and fuel flow. In order to determine the main factors influencing the reaction-front propagation velocity a sensitivity analysis is applied. Sensitivity analysis results show that the reaction-front velocity is controlled by heat transfer in the solid phase. The obtained results prove that it is possible to extend the concept of the burning velocity from gaseous to solid fuels. Practical implications are mentioned.
机译:提出了固定床固体燃料燃烧的一维稳态数学模型。给出了模型方程和边界条件以及求解方法。计算结果显示与实验数据非常吻合。计算表明,在固定床并流燃烧过程中,形成了一个反应前沿,该前沿向与空气和燃料流相反的方向传播。为了确定影响反应前沿传播速度的主要因素,应用了敏感性分析。敏感性分析结果表明,反应前速度受固相传热控制。所获得的结果证明可以将燃烧速度的概念从气体燃料扩展到固体燃料。提到了实际意义。

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