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The effect of the secondary air injection on the gas-solid flow characteristics in the circulating fluidized bed

机译:二次空气喷射对循环流化床中的气固流动特性的影响

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The design and operation of the secondary air (SA) have a great influence on the axial distribution of particles, the structure of the redox atmosphere, and the gas-solid mixture diffusion in the circulating fluidized bed (CFB) boiler. In this paper, the effects of the SA on the gas-solid flow in the CFB boiler, such as the axial particle distribution and the circulating rate were studied systematically through experimental analysis. All experiments were carried out under the ambient temperature and atmospheric pressure, and quartz sand was selected as the bed material in the 4.5 m high CFB test rig made of Plexiglas. The results showed that the SA whose capability to carry particle is affected by the particle concentration at the SA injection port, has a weaker effect on the entrainment of particles than the primary air (PA). The particle concentration in the dense phase zone mainly depends on the PA rate. The increasing of the secondary air ratio (SAR) may lead to the accumulation of particles in the dense phase zone. In addition, one transitional state was found in the transition zone. The variation of particle concentration in the transition zone with the increasing of the SAR is determined by the magnitude of the particle concentration at the SA injection port. The circulating rate decreased with the increasing of SAR or the SA injection height. The effect of the SA injection on the circulating rate in a circulating fluidized bed can be predicted by a modified model with the dimensionless parameters. (C) 2018 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:二次空气(SA)的设计和操作对颗粒的轴向分布,氧化还原气氛的结构以及在循环流化床(CFB)锅炉中的气固混合物扩散的影响具有很大的影响。本文通过实验分析系统地研究了SA对CFB锅炉中的气体固体流动的影响,例如轴向粒子分布和循环速率。所有实验均在环境温度和大气压下进行,并选择石英砂作为Plexiglas制成的4.5米高CFB试验台中的床材料。结果表明,携带颗粒的能力的能力受到SA注射口处的颗粒浓度的影响,对颗粒夹带的效果较弱而不是主要空气(PA)。致密相区域中的颗粒浓度主要取决于PA速率。二次空气比(SAR)的增加可能导致致密相区中的颗粒的积累。此外,在过渡区中发现了一种过渡状态。随着SAR的增加,过渡区中颗粒浓度的变化由SA注射口处的颗粒浓度的大小确定。随着SAR或SA注射高度的增加,循环速率降低。通过具有无量纲参数的修改模型可以预测SA注射对循环流化床中循环速率的影响。 (c)2018化学工程师机构。 elsevier b.v出版。保留所有权利。

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