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Simulation Studies of Gas-Solid in the Riser of a Circulating Fluidized Bed

机译:循环流化床提升管中气固的模拟研究

摘要

A numerical parametric study was performed on the influence of various riser exit geometries on the hydrodynamics of gas-solid two-phase flow in the riser of a Circulating Fluidized Bed (CFB). A Eulerian continuum formulation was applied to both phases. A two fluid framework has been used to simulate fully developed gas-solid flows in vertical riser. A two dimensional Computational Fluid Dynamics (CFD) model of gas-particle flow in the CFB has been investigated using the code FLUENT. The turbulence was modeled by a k-e turbulence model in the gas phase. The simulations were done using the geometrical configuration of a CFB test rig at the Universiti Teknologi Malaysia (UTM). The CFB riser column has 265 mm (width), 72 mm (depth) and 2.7 m height. The riser is made up of interchangeable Plexiglas columns. The computational model was used to simulate the riser over a wide range of operating and design parameters. In addition, several numerical experiments were carried out to understand the influence of riser end effects, particle size, gas solid velocity and solid volume fraction on the simulated flow characteristics. The CFD model with a k-e turbulence model for the gas phase and a fixed particle viscosity in the solids phase showed good mixing behaviour. These results were found to be useful in further development of modeling of gas solid flow in the riser.
机译:进行了数值参数研究,研究了各种立管出口几何形状对循环流化床(CFB)立管中气固两相流的流体动力学的影响。将欧拉连续谱公式应用于两个阶段。已经使用两个流体框架来模拟垂直立管中充分展开的气固流动。已经使用代码FLUENT研究了CFB中气体颗粒流动的二维计算流体动力学(CFD)模型。湍流是通过气相的k-e湍流模型建模的。使用马来西亚Teknologi大学(UTM)的CFB测试台的几何结构进行了仿真。 CFB立管柱长265毫米(宽),深72毫米(高),高2.7 m。提升管由可互换的有机玻璃柱组成。该计算模型被用来模拟各种操作和设计参数下的立管。此外,还进行了一些数值实验,以了解立管端部效应,粒径,气固速度和固相体积分数对模拟流动特性的影响。具有气相的k-e湍流模型和固相中固定的颗粒粘度的CFD模型显示出良好的混合性能。发现这些结果对于进一步改进立管中的气体固体流的模型是有用的。

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