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A numerical analysis of effects of vortex breakdown on oxygen transport in a micro-bioreactor

机译:涡旋分解对微生物反应器中氧气传输影响的数值分析

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Vortex breakdown effects on oxygen concentration distributions in a micro-bioreactor were investigated by a finite volume model. The bioreactor consists of a cylindrical chamber with a rotating bottom wall. The minimum oxygen concentration and volumetric oxygen transfer coefficient were summarized at different Reynolds numbers, Damkohler numbers as well as bioreactor aspect ratios. It was found that vortex breakdown extends the axis region where oxygen concentration is higher. Also vortex breakdown tends to induce a uniform oxygen concentration distribution in the bioreactor. Thus, the occurrence of vortex breakdown is of benefit to animal cell culture. Compared with that in the bioreactor with a rigid lid, vortex breakdown in the bioreactor with free surface may be better for animal cell culture as the bubble has larger size and may occur apart from the axis.
机译:通过有限体积模型研究了涡旋分解对微生物反应器中氧浓度分布的影响。该生物反应器由具有旋转底壁的圆柱形腔室组成。在不同的雷诺数,Damkohler数以及生物反应器的长宽比下,总结了最小氧气浓度和氧气体积转移系数。已经发现,涡旋破坏扩展了氧浓度较高的轴区域。涡旋分解也倾向于在生物反应器中引起均匀的氧浓度分布。因此,涡旋破坏的发生对动物细胞培养是有益的。与具有刚性盖的生物反应器相比,具有自由表面的生物反应器中的涡旋破裂对于动物细胞培养可能更好,因为气泡的尺寸更大并且可能发生在轴外。

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