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Simulation of gas-solid flow characteristics in three-dimensional rotational spouted-fluidized bed

机译:三维旋转喷出流化床中气固流动特性的仿真

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In order to study the gas-solid flow characteristics in a rotational spouted-fluidized bed dryer, the eulerian multi-phase model was applied in three-dimensional numerical simulation of a rotational spouted-fluidized bed to analyze the effect of different velocity ratios between bottom and tangential wind on gas and particle velocity distribution characteristics, and the change rule of gas-solid flow state with the time at the velocity ratio of 30 m·s~(-1)/30 m·s~(-1) was derived. The results show that the increase of tangential wind velocity is propitious to enhance the gas flow rate in the region near the wall and make the gas-solid phase mix sufficiently as well as augment of the contact area of gas and particle phase, and decrease of the gas flow dead zones and the adhesion of viscous materials to cylinder wall. However, the negative pressure formed by the entrainment effect of tangential wind goes against the development of gas flow along the axial direction reducing the penetration effect of axial wind to the granular layer.
机译:为了研究在旋转喷动流化床干燥机中的气体 - 固体流动特性,欧拉多相模型中的旋转喷动流化床的三维数值模拟施加到分析底之间的不同速度比的作用和对气体和微粒速度分布特性切向风,并与时间以30m的速度比的气体 - 固体流动状态的变化规律·S〜(-1)/ 30·M·S〜(-1)衍生。结果表明,切向风速的增加有利于增强在壁附近的区域中的气体流速,使气体 - 固体相混合充分以及气体和颗粒相的接触面积的扩充,以及降低气体流动死区和粘性材料,以筒壁的粘附性。然而,通过切向风的挟带效应形成的负压违背沿轴向方向减小的轴向风的至颗粒层的渗透作用气体流的发展。

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