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Hydrodynamic study of three phase fluidized bed with moderately viscous solutions-CFD analysis

机译:中等粘度溶液在三相流化床中的流体动力学研究-CFD分析

摘要

Fluidization basically refers to the process of passing a fluid upwards through a packed bed of solid particles resulting in a pressure drop due to the drag force of fluid. If the fluid velocity is gradually increased then the pressure drop increases as well as the drag force on the particles and after some time the particles will no longer be in a state of rest but will start to move and willudremain suspended in the fluid. This condition represents fluidization. Three-phase fluidized beds or slurry bubble columns have gained considerable importance because of the good heat and mass transfer characteristics in their applications in physical, chemical, petrochemical, andudbiochemical processing. They are operated by a number of industries around the world for carrying out various reactions and for them to be successful their hydrodynamics (phase holdups, bed expansion, pressure drop etc) have to be studied.udTo understand better the bed complexities while designing and carrying out reactions CFD-ComputationaludFluid Dynamics is promoted as a useful tool. The potential of CFD for describing the hydrodynamics and heat and mass transfer of multiphase fluidized beds has been establishedudby several publications. CFD predicts the flow characteristics, bed hydrodynamics, phaseudholdups and heat and mass transfer happening inside the bed qualitatively.udIn the current work an attempt has been made to study the hydrodynamics of three phase fluidized bed with moderately viscous solutions. The simulation is done for a column of 1.88m height and 0.1m diameter filled with 4mm glass beads till a certain height. GAMBIT 2.2.30 is used to develop the computational grid of 0.01m and FLUENT 6.3.26 is used to carry out the simulation. It is observed that the bed expands considerably with increase in glycerol concentration for a constant inlet gas and liquid velocity. The gas holdups as well as liquid holdups are found to increase with glycerol concentrations for constant inlet velocities whereas solid holdup decreases.
机译:流化基本上是指使流体向上通过固体颗粒的填充床的过程,由于流体的拖曳力而导致压降。如果流体速度逐渐增加,则压降以及对颗粒的拉力会增加,并且在一段时间后,颗粒将不再处于静止状态,而是开始移动并不再悬浮在流体中。该条件表示流化。三相流化床或浆液鼓泡塔由于在物理,化学,石化和 udbiochemical处理中的应用具有良好的传热和传质特性,因此具有相当重要的意义。它们由世界各地的许多行业运营,以进行各种反应,并且要使它们成功,必须研究其流体动力学(相滞留率,床膨胀,压降等)。进行反应CFD-Computational udFluid Dynamics是一种有用的工具。几篇出版物已经确立了CFD用于描述多相流化床的流体动力学以及传热和传质的潜力。 CFD定性地预测了流化床内部的流动特性,床层流体动力学,相滞留和传热传质。 ud在当前工作中,人们试图研究具有中等粘度溶液的三相流化床的流体力学。对高度为1.88m且直径为0.1m的圆柱填充4mm玻璃珠直至达到一定高度进行了仿真。 GAMBIT 2.2.30用于开发0.01m的计算网格,FLUENT 6.3.26用于进行仿真。可以看出,对于恒定的入口气体和液体速度,床层随着甘油浓度的增加而显着膨胀。对于恒定的入口速度,发现气体滞留率和液体滞留率随甘油浓度的增加而增加,而固体滞留率则降低。

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    Nair Rahul;

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  • 年度 2011
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