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CFD SIMULATION OF MULTIPHASE FLOW IN AN AIRLIFT COLUMN PHOTOBIOREACTOR FOR THE CULTIVATION OF MICROALGAE

机译:用于栽培微藻的空运柱光生物反应器中多相流的CFD仿真

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Due to their better operational advantages, such as good scalability, operational flexibility, high mass and heat transfer characteristics, homogenous shear stress, good mixing and better control over fluid circulation, airlift column photobioreactors (PBR) have become a promising design alternative for microalgae culture, among bubble column and other types of photobioreactors. The good hydrodynamic environment for fragile microorganisms in airlift columns have led to numerous investigations in order to understand the hydrodynamic phenomena of multiphase flow, particularly gas-liquid, inside this type of PBR.In the present paper, a CFD (Computer Fluid Dynamics) simulation in CFX, ANSYS Inc. 11.0, is developed following a multiphase flow model with an Eulerian-Eulerian approach. For evaluating turbulence, the modified k — e model is chosen. Gas holdup, gas superficial velocity and liquid velocity profiles for different heights column are obtained by varying air volumetric flow rates at 2, 5 and 8 L/min. Also gas holdup, gas superficial velocity and liquid velocity contours are obtained for a sequence of five step times. An experimental video validation to compare the multiphase flow behavior has been made with a high-resolution video camera. The experiments are carried out by using an airlift column photobioreactor with air supply by a porous sparger.The profiles of the hydrodynamic variables made for 5 different column heights show that the trends of gas holdup and gas superficial velocity are very similar and do not depend on the variation of inlet air flow. For the liquid velocity profiles, the trends don't show the same behavior, the profiles at lower heights are off-centered and less symmetric and the maximum velocities are reached at h=0.2 m.The time sequences with the variable contours are made to enhance the visualization and understanding of the hydrodynamic behavior, especially when air supply begins and the bubble plume starts to form.
机译:由于其更好的操作优势,如良好的可扩展性,操作灵活性,高质量和传热特性,均匀剪切应力,良好的混合和更好地控制流体循环,空运柱光生物反应器(PBR)已成为微藻培养的有希望的替代方案,在泡泡柱和其他类型的光生物反应器中。空运柱中脆弱的微生物的良好流体动力学环境导致了许多研究,以便了解多相流动的流体动力学现象,特别是气液,在这种类型的PBR内部。在本文中,CFD(计算机流体动力学)仿真在CFX,ANSYS Inc.11.0之后,在具有欧拉欧洲方法的多相流模型之后开发。为了评估湍流,选择了修改的k - e型号。通过在2,5和8L / min的空气体积流速改变空气体积流速获得的气体储存,气体表面速度和液体速度曲线。还可以获得气体储气,气体表面速度和液体速度等值,以获得五个步进时间的序列。使用高分辨率摄像机进行比较多相流动行为的实验视频验证。通过使用具有多孔喷射器的空气供应的空运柱光生物反应器进行实验。为5个不同的柱高度制成的流体动力变量的轮廓表明气体储存和气体浅刻速度的趋势非常相似,不依赖于入口空气流量的变化。对于液体速度简档,趋势不显示相同的行为,较低高度处的曲线是偏心的,并且在H = 0.2米处达到较少的对称性并且最大速度达到最大速度。与变量轮廓的时间序列提高对流体动力学行为的可视化和理解,特别是当空气供应开始并且泡沫羽流动开始形成时。

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