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Numerical simulation of flow behavior of top-gas jet in a gas-particles bubbling fluidized bed

机译:气体颗粒气泡流化床中顶气射流流动性能的数值模拟

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Flow behavior of top-gas jet and particles is simulated by means of gas-solids two-fluid model incorporating the kinetic theory of granular flow (ICTGF) in a top-gas jet bubbling fluidized bed. The RNG k-epsilon model is used to model gas turbulence of the top-gas jet. The effects of the top jet gas velocity and fluidizing gas velocity on distributions of volume fractions and velocities of gas and particles are evaluated, and the results are quantified in terms of top gas jet penetration length. Numerical simulations show that the fluidized gas-particle mixture along bed height is divided into three regions as (a) the top-gas jet region in the freeboard, (b) the concentrating region near the bed surface and (c) the diluting region near the bottom in terms of the axial distribution of solids volume fraction. By increasing the top jet gas velocity, particles circulate through the down-flow at the center from the concentrating region to the diluting region and the up-flow near the walls from bottom to bed surface along bed height The distributions of volume fraction and velocity of gas and particles considerably change with the variation of top-jet gas velocities. Moreover, the top-gas jet penetration length with the change of top jet gas velocity and fluidizing gas velocity is identified and discussed. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过将粒状流动(ICTGF)的动力学理论的气固双流体模型模拟了顶气射流和颗粒的流动性能。 RNG K-Epsilon模型用于模拟顶气射流的气体湍流。评价顶部射流气体速度和流化气体速度对体积分数和气体和颗粒速度分布的影响,并在顶部气体射流穿透长度方面量化结果。数值模拟表明,沿着床高度的流化气体颗粒混合物被分成三个区域,如(a)的热压板中的顶气射流区域,(b)床表面附近的浓缩区和(c)靠近稀释区域底部就固体体积分数的轴向分布而言。通过增加顶部射流气体速度,颗粒通过从浓缩区域到稀释区域的下流循环到稀释区域和沿底部到床表面附近的上流沿床高度的体积分数和速度的分布气体和颗粒随着顶部喷射气体速度的变化而显着改变。此外,鉴定并讨论了具有顶部射流气体速度和流化气体速度的变化的顶气喷射穿透长度。 (c)2018 Elsevier B.v.保留所有权利。

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