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Numerical simulation on oxygen transfer in a porous scaffold for animal cell culture

机译:动物细胞培养多孔支架中氧转移的数值模拟

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Detailed numerical simulations are performed for oxygen transfer around and within a circular scaffold for animal cell culture. The oxygen concentration distribution, minimum oxygen concentration within the scaffold and its corresponding location, as well as the Sherwood number are presented at different Darcy numbers, Reynolds numbers and Damkohler numbers. It is found that if the Reynolds number is increased from 1 to 30, the Sherwood number increases 1 time for a Darcy number of 5 × 10~(-6) while 34 times for a Darcy number of 5 × 10~4. The location of the minimum oxygen concentration is close to the centre of the scaffold when the Darcy number is smaller than about 5 × 10~(-5) or the Reynolds number is smaller than about 1, especially for the Damkohler number larger than 0(10). The present study may provide useful guidance on design of the bioreactor with scaffold as well as choosing optimal operating parameters.
机译:对动物细胞培养的圆形支架周围和内部的氧气转移进行了详细的数值模拟。氧浓度分布,支架内的最小氧浓度及其对应位置以及舍伍德数以不同的达西数,雷诺数和达姆霍勒数表示。可以发现,如果雷诺数从1增加到30,则对于5×10〜(-6)的达西数,舍伍德数增加1倍,而对于5×10〜4的达西数,则增加34倍。当达西数小于约5×10〜(-5)或雷诺数小于约1时,最低氧浓度的位置靠近支架的中心,特别是对于达姆霍勒数大于0( 10)。本研究可为带支架生物反应器的设计以及选择最佳操作参数提供有用的指导。

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