首页> 外文期刊>Modern Physics Letters, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Effect of vortex breakdown on mass transfer in a cell culture bioreactor
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Effect of vortex breakdown on mass transfer in a cell culture bioreactor

机译:涡旋分解对细胞培养生物反应器传质的影响

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The present work shows that vortex breakdown may also occur in a bioreactor for animal cell or tissue culture. The aim is to study the effect of vortex breakdown on the fluid environment for cell growth. particularly hydrodynamic stress and mass transfer. A numerical simulation of the fluid flow and oxygen transfer in a cylindrical bioreactor is presented, in which a rotating base wall is used to generate the medium flow and mixing. The steady and laminar, axisymmetric Navier-Stokes and species equations are solved by the numerical model based on finite volume method. The hydrodynamic stress and oxygen transfer conditions are systematically Studied by varying the two key parameters which determine the flow behavior: bioreactor aspect ratio HIR and a rotation Reynolds number Re= ohm R-2/v, It is found that the oxygen concentration at the attached breakdown vortex center is significantly higher than that at the main recirculation center but the hydrodynamic stress level is almost similar in the two regions. The results would provide guidance on choosing the proper operating parameters for cell or tissue culture.
机译:目前的工作表明,在动物细胞或组织培养的生物反应器中也可能发生涡旋破坏。目的是研究涡流分解对细胞生长的流体环境的影响。特别是流体动力应力和传质。提出了在圆柱形生物反应器中的流体流动和氧气转移的数值模拟,其中使用旋转的底壁来产生介质流动和混合。通过基于有限体积法的数值模型,求解了稳态层流轴对称的Navier-Stokes和物种方程。通过改变决定流动特性的两个关键参数,系统地研究了水动力应力和氧气的转移条件:生物反应器长宽比HIR和旋转雷诺数Re = ohm R-2 / v,发现附着的氧气浓度分解涡旋中心明显高于主循环中心,但在这两个区域的流体动力应力水平几乎相似。结果将为选择合适的细胞或组织培养操作参数提供指导。

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