Ramirez L E S, Lim E A, Coimbra C F M, Kobayashi M H
Department of Mechanical Engineering, University of Hawaii-Manoa, 2540 Dole Street, Honolulu, HI 96822, USA.
Biotechnol Bioeng. 2003 Nov 5;84(3):382-9. doi: 10.1002/bit.10778.
We analyze the dynamics of a spherical scaffold in rotating bioreactors (or clinostats). The idealized clinostat environment consists of a purely rotational flow that is perpendicular to a gravitational field. We confirm through a detailed analytical study that lift effects considerably alter the position of the equilibrium point reached by the scaffolds in the (vertical) direction collinear to the gravitational field. This result holds for small particle and shear Reynolds numbers. Our analysis shows that the inertial lift effect is negligible in the horizontal direction. We show that for all rotations of practical interest, and for the range of particle Reynolds number smaller than unity, the vertical coordinate of the equilibrium point is strongly affected by consideration of lift effects. For light (heavy) particles, inclusion of lift in the formation forces the equilibrium position to be below (above) the horizontal plane that contains the axis of rotation. The equilibrium point for light particles is stable and therefore is observable experimentally. The equilibrium point for heavy particles is unstable. We also estimate the stress level applied to the scaffold and derive an algebraic expression that indicates that the stress level acting on the scaffold decreases with increasing shear Reynolds number.
我们分析了旋转生物反应器(或回转器)中球形支架的动力学。理想化的回转器环境由垂直于重力场的纯旋转流组成。通过详细的分析研究,我们证实升力效应会显著改变支架在与重力场共线的(垂直)方向上达到的平衡点位置。该结果适用于小颗粒和剪切雷诺数情况。我们的分析表明,在水平方向上惯性升力效应可忽略不计。我们表明,对于所有实际感兴趣的旋转情况,以及颗粒雷诺数小于1的范围,考虑升力效应会强烈影响平衡点的垂直坐标。对于轻(重)颗粒,在形成力中考虑升力会使平衡点位于包含旋转轴的水平面下方(上方)。轻颗粒的平衡点是稳定的,因此可以通过实验观察到。重颗粒的平衡点是不稳定的。我们还估计了施加在支架上的应力水平,并推导了一个代数表达式,该表达式表明作用在支架上的应力水平随着剪切雷诺数的增加而降低。