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Modeling of trickle-bed reactors with exothermic reactions using cell network approach

机译:利用细胞网络方法对具有放热反应的滴流床反应器进行建模

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One-dimensional (1D) and two-dimensional (2D) cell network models were developed to simulate the steady-state behavior of trickle-bed reactors employed for the highly exothermic hydrotreating of benzene. The multiphase mass transfer-reaction model and novel solution method are discussed in this report. The 1D model was shown to satisfactorily simulate the axial temperature field observed experimentally for multiphase flow with exothermic reactions. The 2D reactor modeling provided valuable information about local hot spot behavior within the multiphase reactor, identifying situations in which hot spots may form. The model took into consideration the heterogeneous nature of liquid distribution, including radial liquid maldistribution and partial external wetting. This approach was proven to be stable and efficient in dealing with the complex interaction of phase vaporization and temperature rise. Through analysis and discussion, this report established the cell network model as a valid representation of the flow environment produced in a trickle bed with exothermic reactions. (C) 2007 Elsevier Ltd. All rights reserved.
机译:开发了一维(1D)和二维(2D)单元网络模型来模拟用于苯的高放热加氢处理的滴流床反应器的稳态行为。本报告讨论了多相传质反应模型和新颖的求解方法。一维模型显示令人满意地模拟了实验观察到的具有放热反应的多相流的轴向温度场。 2D反应器建模提供了有关多相反应器内局部热点行为的有价值的信息,从而确定了可能形成热点的情况。该模型考虑了液体分布的非均质性,包括径向液体分布不均和部分外部润湿。实践证明,这种方法在处理相汽化和温度升高之间的复杂相互作用时是稳定有效的。通过分析和讨论,本报告建立了细胞网络模型,作为在滴流床中产生放热反应的流动环境的有效表示。 (C)2007 Elsevier Ltd.保留所有权利。

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