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首页> 外文期刊>Chemical engineering journal >Bubble formation at a central orifice in a gas-solid fluidized bed predicted by three-dimensional two-fluid model simulations
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Bubble formation at a central orifice in a gas-solid fluidized bed predicted by three-dimensional two-fluid model simulations

机译:三维二流体模型模拟预测的气固流化床中心孔口气泡形成

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摘要

We apply a recently developed two-fluid continuum model (TFM) based on kinetic theory of granular flow (KTGF) in three dimensional cylindrical coordinates, to investigate bubble formation through a single central orifice in a gas-solid fluidized bed. A comprehensive study for Geldart D type particles, revealing the influence of particle diameter, jet injection flow rate, and bed size on bubble characteristics have been investigated. At a given gas injection flow rate, the bubble diameter continuously increases while gas leakage from the bubble to the emulsion phase decreases with time. With increasing particle diameter, leakage fraction increases and hence a smaller bubble diameter is predicted. These results are consistent with DPM simulations, experimental results and approximate bubble formation models reported previously in the literature.
机译:我们基于三维圆柱坐标系中基于颗粒流动动力学理论(KTGF)的应用最近开发的两流体连续体模型(TFM),以研究通过气固流化床中单个中心孔的气泡形成。对Geldart D型颗粒进行了全面研究,揭示了粒径,射流流速和床尺寸对气泡特性的影响。在给定的气体注入流速下,气泡直径连续增加,而从气泡到乳化相的气体泄漏随时间减少。随着粒径的增加,泄漏分数增加,因此可以预测较小的气泡直径。这些结果与先前文献中报道的DPM模拟,实验结果和近似气泡形成模型一致。

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