首页> 外文期刊>Powder Technology: An International Journal on the Science and Technology of Wet and Dry Particulate Systems >Three-dimensional CFD simulation of the system inlet and outlet boundary condition effects inside a high solid particle flux circulating fluidized bed riser
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Three-dimensional CFD simulation of the system inlet and outlet boundary condition effects inside a high solid particle flux circulating fluidized bed riser

机译:固体高通量循环流化床立管内部系统入口和出口边界条件影响的三维CFD模拟

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摘要

In this study, the effects of varying the system inlet and outlet boundary conditions were investigated based on three-dimensional computational fluid dynamics (CFD) simulation inside a high solid particle flux circulating fluidized bed riser. Four possible system inlet boundary conditions were considered with varying the gas inlet channel size at 25% (case 1), 50% (case 2), 75% (case 3) and 100% (case 4) of the maximal diameter compared to the system channel (0.050,0.100,0.150 and 0.200 m, respectively). The solid volume fraction inside the system decreased as the gas inlet channel size increased. Varying the system outlet boundary conditions by changing the outlet radius from 0.025 m to 0.050,0.075 or 0.100 m revealed that the solid volume fraction inside the system increased with decreasing outlet radii. These results compare well to those experimental and two-dimensional CFD simulations. In addition, the effects of mesh sizes or computational cells, time-averaged ranges and computational fluid dynamics simulation dimensions were discussed.
机译:在这项研究中,基于三维固体流体通量循环流化床立管内部的三维计算流体动力学(CFD)模拟,研究了改变系统入口和出口边界条件的影响。考虑了四种可能的系统进气边界条件,与最大进气口直径相比,进气通道尺寸的变化分别为最大直径的25%(情况1),50%(情况2),75%(情况3)和100%(情况4)。系统通道(分别为0.050、0.100、0.150和0.200 m)。随着进气通道尺寸的增加,系统内部的固体体积分数降低。通过将出口半径从0.025 m更改为0.050、0.075或0.100 m来改变系统出口边界条件,表明系统内部的固体体积分数随出口半径的减小而增加。这些结果与实验和二维CFD模拟结果相比较。此外,还讨论了网格大小或计算单元,时间平均范围和计算流体动力学模拟尺寸的影响。

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