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首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Effects of using two- versus three-dimensional computational modeling of fluidized beds Part I, hydrodynamics
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Effects of using two- versus three-dimensional computational modeling of fluidized beds Part I, hydrodynamics

机译:使用二维和三维流化床计算模型的影响第一部分,流体力学

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Simulations of fluidized beds are performed to study and determine the effect on the use of coordinate systems and geometrical configurations to model fluidized bed reactors. Computational fluid dynamics is employed for an Eulerian-Eulerian model, which represents each phase as an interspersed continuum. The transport equation for granular temperature is solved and a hyperbolic tangent function is used to provide a smooth transition between the plastic and viscous regimes for the solid phase. The aim of the present work is to show the range of validity for employing simulations based on a 2D Cartesian coordinate system to approximate both cylindrical and rectangular fluidized beds. Three different fiuidization regimes, bubbling, slugging and turbulent regimes, are investigated and the results of 2D and 3D simulations are presented for both cylindrical and rectangular domains. The results demonstrate that a 2D Cartesian system can be used to successfully simulate and predict a bubbling regime. However, caution must be exercised when using 2D Cartesian coordinates for other fluidized regimes. A budget analysis that explains all the differences in detail is presented in Part II [N. Xie, F. Battaglia, S. Pannala, Effects of Using Two-Versus Three-Dimensional Computational Modeling of Fluidized Beds: Part II, budget analysis, 182 (1) (2007) 14] to complement the hydrodynamic theory of this paper.
机译:进行流化床模拟以研究和确定使用坐标系和几何构型对流化床反应器建模的影响。欧拉-欧拉模型采用计算流体动力学,该模型将每个阶段表示为散布的连续体。求解了颗粒温度的输运方程,并使用了双曲正切函数为固相提供了塑性和粘性状态之间的平滑过渡。本工作的目的是显示采用基于2D直角坐标系的模拟来近似圆柱和矩形流化床的有效性范围。研究了三种不同的流体化状态,起泡,击打和湍流状态,并给出了圆柱和矩形域的2D和3D模拟结果。结果表明,二维笛卡尔系统可用于成功模拟和预测冒泡状态。但是,将二维笛卡尔坐标用于其他流态时必须谨慎。第二部分介绍了详细解释所有差异的预算分析。 Xie,F. Battaglia,S. Pannala,使用二维流化床的三维计算模型的影响:第二部分,预算分析,182(1)(2007)14],以补充本文的水动力理论。

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