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Numerical simulation of flow behavior of liquid and particles in liquid-solid risers with multi scale interfacial drag method

机译:多尺度界面阻力法数值模拟固液提升管中液体和颗粒的流动行为

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摘要

Formation of particle clusters in liquid-solid circulating fluidized beds significantly affects macroscopic hydrodynamic behavior of the system. A multi scale interfacial drag coefficient (MSD) is proposed to determine effects of particle clusters on the mesoscale structure, by taking momentum and energy balance of dense phase, dilute phase and interphase into account. Based on the transportation and suspension energy-minimization method, the multi scale interfacial drag coefficient model used in this work is combined with the Euler-Euler two fluid model to simulate the heterogeneous behaviors of liquid-solid circulating fluidized bed. It was found that the reduction in drag coefficient is at least an important factor for the simulation of clusters formation, and the core-annulus flow is observed in the riser. The liquid-solid flow regime was significantly affected by the down-flow of particles in the form of clusters near the walls of the riser. The calculated concentration of particles inside the riser compared reasonably well with the available experimental data obtained by Razzak et al.
机译:液-固循环流化床中颗粒团簇的形成显着影响系统的宏观水动力行为。提出了一种多尺度界面阻力系数(MSD),通过考虑致密相,稀相和界面相的动量和能量平衡来确定粒子团对中尺度结构的影响。基于运输和悬浮能量最小化方法,将本文中使用的多尺度界面阻力系数模型与Euler-Euler两种流体模型相结合,以模拟液固循环流化床的非均质行为。发现阻力系数的减小至少是模拟团簇形成的重要因素,并且在立管中观察到核心-环空流动。液固流态受立管壁附近的团簇形式的颗粒向下流动的影响很大。计算出的立管内颗粒浓度与Razzak等人获得的可用实验数据相当合理。

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