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首页> 外文期刊>International Journal of Multiphase Flow >Revised fluidization regime characterization in high solid particle concentration circulating fluidized bed reactor
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Revised fluidization regime characterization in high solid particle concentration circulating fluidized bed reactor

机译:高固体颗粒浓度循环流化床反应器中修正的流化状态表征

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The hydrodynamics inside high solid particle concentration circulating fluidized bed reactor (CFBR) was investigated using computational fluid dynamics simulation (CFDS) and experimental measurement. In order to verify the CFDS obtained results they were compared with the experimental ones by qualitative and quantitative assessments. The CFDS model, with the appropriate initial and boundary conditions, for simulating the high solid particle concentration CFBR were successfully developed, and the obtained results matched with the experimentally-derived ones. Further fluidization regime mapping was performed and the results were summarized based on the statistical parameters of the average solid volume fraction (ASVF) and the standard deviation (SD) of the horizontal and vertical SVFs. The ASVF had a maximum value in the circulating-turbulent fluidization regime, while the SD of the horizontal and vertical SVFs had minimum and maximum values in the bubbling fluidization regime, respectively. As the gas inlet velocity increased, the SD of the SVF tended to approach an invariable value. In addition, the relationships between these three statistical parameters and the positions of the unconventional fluidization regimes (using only primary gas injection) on the general simplified fluidization regime mapping were summarized.
机译:使用计算流体动力学模拟(CFDS)和实验测量研究了高固体颗粒浓度循环流化床反应器(CFBR)内的流体动力学。为了验证CFDS获得的结果,通过定性和定量评估将它们与实验结果进行了比较。成功开发了具有适当初始和边界条件的CFDS模型,用于模拟高固体颗粒浓度CFBR,所得结果与实验得出的结果相吻合。根据水平和垂直SVF的平均固体体积分数(ASVF)和标准偏差(SD)的统计参数,进行了进一步的流态化制图,并对结果进行了总结。在循环湍流流化状态下,ASVF具有最大值,而在鼓泡流化状态下,水平和垂直SVF的SD分别具有最小值和最大值。随着进气速度的增加,SVF的SD趋于接近恒定值。此外,总结了这三个统计参数与非常规流化方案(仅使用一次气体注入)在一般简化流化方案图上的位置之间的关系。

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