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Mathematical modeling and experimental validation of ash deposition in a pulverized-coal boiler

机译:煤粉锅炉中灰分沉积的数学建模与实验验证

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A dynamic mathematical model of the fly ash transport and sticking in a pulverized-coal boiler was developed by a direct simulation Monte Carlo (DSMC) method. In this paper, the critical velocity model was used to calculate ash sticking rate during the initial deposition stage and the viscosity model was used to describe the outer layer deposition. The dynamic process of ash deposition was simulated and the distributions of adhesion particle size were obtained. The simulation results show that the ash deposit thickness increases by 47.52% with the load increases by 20% and the Alkaline Earth Metal (AAEM)-rich enhanced deposits of bulk ash particles are apparently stickier than the other ash particles. The experiments were carried out at two different loads and the morphology of ash deposit samples was analyzed by SEM/EDS. The propotion of particle size in 2 mu m were most in the deposition inner layer. The mean deposit thickness calculated by the DSMC method agreed with the measured value and the maximum relative error was 5.23%. A parametric study quantified the influence of changed operational conditions and ash material properties on the deposit formation process. (C) 2016 Elsevier Ltd. All rights reserved.
机译:通过直接仿真蒙特卡罗(DSMC)方法开发了粉煤灰输送和粘附在粉煤机中的动态数学模型。本文使用临界速度模型来计算初始沉积阶段期间的灰分粘连率,并且使用粘度模型来描述外层沉积。模拟灰分沉积的动态过程,得到粘合粒径的分布。仿真结果表明,灰沉积物厚度增加47.52%,负荷增加20%,碱土金属(AAEM) - 散氨酸颗粒的增强沉积物显然比其他灰分颗粒更凝聚。实验在两种不同的载荷下进行,通过SEM / EDS分析灰沉积物样品的形态。在2μm中的粒度的推题最多在沉积内层中。通过DSMC方法计算的平均沉积厚度与测量值同意,最大相对误差为5.23%。参数研究量化了改变的操作条件和灰分材料性能对沉积物形成过程的影响。 (c)2016 Elsevier Ltd.保留所有权利。

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