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GAS PHASE HYDRODYNAMICS OF A GAS-SOLID TURBULENT FLUIDIZED BED REACTOR

机译:气固两相流化床反应器的气相加氢动力学

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Transient gas mixing tests in a gas-solid fluidized bed are analyzed with a dispersive plug flow model from the bubbling to the turbulent regime, and with the two-phase model of van Deemter. It is shown that dispersion fluctuations can also be used besides pressure fluctuations or capacitance probes to characterize the transition between the bubbling and the turbulent regime. Furthermore, the gas Peclet number in the turbulent regime is correlated ih terms of the operating parameters, the bed diameter and the particles and gas properties as: Pe = 7.10(-2)Ar(0.32)delta(-0.4). The cross-flow mass transfer coefficient alpha(12) of the two-phase model of van Deemter in the bubbling and the turbulent regimes is correlated in terms of the height of a transfer unit as: U/alpha(12) = 0.613Sc(-0.37) The parameters from both correlations are coupled with the kinetics of an industrial catalyst to model the performance of a catalytic combustor. [References: 37]
机译:利用从鼓泡状态到湍流状态的离散活塞流模型以及范德姆特的两相模型,对气固流化床中的瞬态气体混合测试进行了分析。结果表明,除了压力波动或电容探头以外,还可以使用色散波动来表征起泡和湍流状态之间的过渡。此外,湍流状态下的气体佩克雷特数与运行参数,床直径,颗粒和气体性质相关,如:Pe = 7.10(-2)Ar(0.32)delta(-0.4)。范·德姆特两相模型在冒泡和湍流状态下的横流传质系数α(12)与转移单元的高度相关:U /α(12)= 0.613Sc( -0.37)来自两个相关性的参数与工业催化剂的动力学耦合,以对催化燃烧器的性能进行建模。 [参考:37]

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