首页> 外文期刊>Chemical Engineering Research & Design: Transactions of the Institution of Chemical Engineers >Effect of operating parameters inside circulating fluidized bed reactor riser with ring baffles using CFD simulation and experimental design analysis
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Effect of operating parameters inside circulating fluidized bed reactor riser with ring baffles using CFD simulation and experimental design analysis

机译:CFD模拟和实验设计分析对环形折流板流化床反应器内部运行参数的影响。

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The effect of the operating parameters on the system hydrodynamics and mixing inside two circulating fluidized bed reactor (CFBR) risers with different ring baffle configurations were investigated using computational fluid dynamics simulations and a 2(4) factorial experimental design analysis. The operating parameters varied were the gas inlet velocity, and the mass flux, diameter and density of the solid particles, while the response variables were the standard deviation of the solid volume fraction (SVF) in the radial direction (SDSVF-RD) and the average SVF (ASVF). The results from the two CFBR risers with different ring baffle configurations showed a similar trend. The operating parameters that significantly affected the ASVF in both modified CFBR risers were the inlet gas velocity and solid particle mass flux, while those that significantly affected the SDSVF-RD were the inlet gas velocity and the inlet gas velocity-solid particle diameter-solid particle density interaction. For these systems, the lowest and highest ASVF was approximately 0.07 and 0.20, respectively, while the lowest and highest SDSVF-RD was 0.01 and 0.04, respectively. The low variability of the solid particle distribution and the high solid particle concentration will be suitable for chemical reactions. All the obtained results could be explained in terms of the system hydrodynamics. Finally, regression models to predict the mean solid particle concentration and variability of solid particle distribution in the system were obtained. (C) 2014 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:使用计算流体动力学模拟和2(4)阶乘实验设计分析,研究了运行参数对系统流体力学和两个不同环挡板配置的两个循环流化床反应器(CFBR)立管内部混合的影响。操作参数的变化是进气速度,固体颗粒的质量通量,直径和密度,而响应变量是固体体积分数(SVF)沿径向(SDSVF-RD)的标准偏差和平均SVF(ASVF)。来自具有不同环形挡板配置的两个CFBR立管的结果显示了相似的趋势。在两个改进的CFBR立管中,对ASVF产生重大影响的运行参数为进气速度和固体颗粒质量通量,而对SDSVF-RD产生显着影响的运行参数为进气速度和进气速度-固体颗粒直径-固体颗粒密度相互作用。对于这些系统,最低和最高ASVF分别约为0.07和0.20,而最低和最高SDSVF-RD分别为0.01和0.04。固体颗粒分布的低变异性和高固体颗粒浓度将适用于化学反应。所有获得的结果都可以用系统流体动力学来解释。最后,获得了用于预测系统中平均固体颗粒浓度和固体颗粒分布变异性的回归模型。 (C)2014化学工程师学会。由Elsevier B.V.发布。保留所有权利。

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