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Hydrodynamics of airlift reactor with internal circulation loop: Experiment vs. CFD simulation

机译:内循环回路空运反应器的流体动力学:实验与CFD仿真

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Effect of geometrical parameters on two phase hydrodynamics of airlift reactor is the main topic of present paper. Laboratory scale apparatus with internal circulation loop consists of concentric draft tube, in which a gas bubbles rising. Setup of draft tube inside of reactor is important geometry parameter and has big influence on two phase hydrodynamics. In experiment was studied influence of changes diameter of draft tube to hydrodynamics in airlift reactor. Results of experiments (liquid velocity and gas hold-up) were compared with the simple CFD simulations performed in COMSOL Multiphysics 3.5a. For each point of gas volumetric flow in simulation, were determined conditions of bubble diameter and bubble drag coefficient. Although bubble break-up and coalescence were neglected, the results of numerical simulation are in pretty good agreement with experimental data.
机译:几何参数对空运反应堆两相流体动力学的影响是本纸的主要题目。具有内循环回路的实验室刻度装置由同心的牵伸管组成,其中气泡上升。反应器内部的制定管的设置是重要的几何参数,对两个相流体动力学产生了很大影响。研究了在空运反应器中对流体动力学的变化直径的影响。将实验结果(液体速度和气体挤出)与在COMSOL Multiphysics 3.5a中进行的简单CFD模拟进行了比较。对于模拟中的每种气体体积流量,是确定气泡直径和气泡拖曳系数的条件。虽然漏洞分解和聚结被忽略了,但数值模拟结果与实验数据相当愉快。

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