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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 >Numerical simulation of the hydrodynamics of a liquid solid circulating fluidized bed
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Numerical simulation of the hydrodynamics of a liquid solid circulating fluidized bed

机译:液固循环流化床水动力学的数值模拟

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摘要

We present a modeling framework for the simulation of the hydrodynamic features of a liquid solid circulating fluidized bed (LSCFB) using computational fluid dynamics (CFD). Using an Eulerian-Eulerian approach to deal with the two-phase flow aspects and the kinetic theory of granular flow (KTGF) approach to deal with the solid-fluid interaction, we simulate the complete flow loop of an LSCFB using three-dimensional, time-dependent CFD calculations. We show that the essential features of the two-phase flow in the riser, the downcomer, the liquid-solid separator at the top and in the solids return feed pipe at the bottom are captured well in these simulations. The role of the flow distributors in establishing circulation is critically analyzed with the aid of post-processing tools. Comparison with literature data shows qualitative agreement with known trends of important hydrodynamic parameters and highlights the need for calibration of the constitutive equations for LSCFB applications.
机译:我们提供了一个建模框架,用于使用计算流体力学(CFD)来模拟液固循环流化床(LSCFB)的流体力学特征。使用欧拉-欧拉方法处理两相流方面的问题,并使用颗粒流动力学理论(KTGF)处理固体-流体相互作用,我们使用三维时间模拟了LSCFB的完整流循环依赖的CFD计算。我们显示,在这些模拟中很好地捕获了上升管,下降管,顶部的液固分离器和底部的固体回流管中的两相流的基本特征。借助后处理工具对流量分配器在建立循环中的作用进行了严格分析。与文献数据的比较表明,与重要流体动力学参数的已知趋势在质量上吻合,并强调了对LSCFB应用的本构方程进行校准的必要性。

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