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Numerical simulation of orbitally shaken viscous fluids with free surface

机译:具有自由表面的轨道振动粘性流体的数值模拟

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摘要

Orbitally shaken bioreactors are an emerging alternative to stirred-tank bioreactors for large-scale mammalian cell culture, but their fluid dynamics is still not well defined. Among the theoretical and practical issues that remain to be resolved, the characterization of the liquid free surface during orbital shaking remains a major challenge because it is an essential aspect of gas transfer and mixing in these reactors. To simulate the fluid behavior and the free surface shape, we developed a numerical method based on the finite element framework. We found that the large density ratio between the liquid and the gas phases induced unphysical results for the free surface shape. We therefore devised a new pressure correction scheme to deal with large density ratios.\udThe simulations operated with this new scheme gave values of wave amplitude similar to the ones measured experimentally. These simulations were used to calculate the shear stress and to study the mixing principle in orbitally shaken bioreactors.
机译:轨道摇动生物反应器是用于大型哺乳动物细胞培养的搅拌罐式生物反应器的新兴替代品,但它们的流体动力学仍然没有很好的定义。在仍有待解决的理论和实践问题中,定轨振荡过程中无液表面的表征仍然是一个主要挑战,因为它是这些反应器中气体转移和混合的重要方面。为了模拟流体行为和自由表面形状,我们开发了一种基于有限元框架的数值方法。我们发现液相和气相之间的大密度比引起了自由表面形状的非物理结果。因此,我们设计了一种新的压力校正方案来处理较大的密度比。\ ud使用此新方案进行的模拟给出的波幅值类似于实验测得的值。这些模拟被用来计算剪切应力并研究在轨道振动的生物反应器中的混合原理。

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