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CFD simulation of multiphase (liquid-solid-gas) flow in an airlift column photobioreactor

机译:空运柱光生物反应器中多相(液 - 固液)流动的CFD仿真

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摘要

A 2D computational fluid dynamics simulation was carried out using a multiphase flow model with an Eulerian-Eulerian approach for a microalgae culture in an airlift column photobioreactor. Simulation was performed for a 0.0625l/l(culture) . min inlet airflow. Air, water and microalgae velocity contours showed less gas phase present in the downcomer than in the riser, suggesting the necessity of vigorous mixing in the ascendant portion if homogeneous water and solid flow is to be achieved. Air velocity is smaller in the downcomer (shorter velocity vectors) than in the riser. Water velocity vectors point always in the expected direction, down in the downcomer and up in the riser. Microalgae paths, perhaps due to the small size of the microorganisms, follow the water velocity vectors. As there are fewer hydraulic restrictions to the liquid phase in the riser, a large amount of energy is dissipated by gas-liquid interactions. In the downcomer region, the gas phase is almost nonexistent, and bubble collisions are almost nonexistent as well. A quasi-stagnation zone was found at the lower section of the downcomer, showing that the design requires improvement. Finally, the turbulent kinetic energy is larger at the top and middle region of the riser; meanwhile, it is lower at the downcomer. Similar results were observed for the energy dissipation rate.
机译:使用多相流动模型进行2D计算流体动力学模拟,其具有欧拉葡萄球菌方法在空运柱光生物反应器中的微藻培养方法进行。对0.0625L / L(培养)进行模拟。 Min Inlet气流。空气,水和微藻速度轮廓显示在脱模者中存在的气相较小,而是在提升机中的必要性,如果要实现均匀的水和固体流动,则在上升部分中的剧烈混合的必要性。降液管(速度向量)的空气速度比提升机更小。水速度矢量始终在预期的方向上,下降在降液者和提升机中。微藻路径,也许是由于微生物的尺寸小,遵循水速度向量。由于对提升管中的液相液相较少的液压限制,因此通过气液相互作用耗散大量能量。在降液管区域中,气相几乎不存在,并且泡沫碰撞几乎不存在。在降液管的下部发现了准停滞区域,表明设计需要改进。最后,湍流动能在提升管的顶部和中部区域较大;同时,降低人员在较低的情况下较低。为能量耗散率观察到类似的结果。

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  • 来源
    《Acta Mechanica》 |2017年第7期|共15页
  • 作者单位

    Univ Pontificia Bolivariana Dept Mech Engn Cra 6 97 A-99 Monteria Colombia;

    Univ Norte Dept Mech Engn Km 5 Antigua Via Puerto Colombia Barranquilla Colombia;

    Univ Norte Dept Mech Engn Km 5 Antigua Via Puerto Colombia Barranquilla Colombia;

    Univ Norte Dept Mech Engn Km 5 Antigua Via Puerto Colombia Barranquilla Colombia;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 力学;
  • 关键词

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