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Numerical simulation of hydrocyclones for cell separation

机译:水力旋流器分离细胞的数值模拟

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Numerical simulation of hydrocyclones aiming at investigating the separation of microorganisms and mammalian cells was performed using Computational Fluid Dynamics(CFD).The turbulence model used in the 2d-axisymmetric calculations was the Reynolds Stress Model(RSM),in order to take into account the high swirl effects that occur in this type of equipment,which induce anisotropic turbulence.The Volume of Fluid Model(VOF)was used to account for the gas/liquid interface.In all calculations,a cylindrical air core,running the whole length of the cyclone,appeared naturally as a consequence of a low pressure region that developed along the central axis.The separation of Escherichia coli,Saccharomyces cerevisiae and mammalian cells(BHK-21)using Bradley hydrocyctones was studied.According to the present work,Bradley hydrocyclones with diameters down to 10 mm cannot efficiently separate microorganisms,but the separation of mammalian cells with predicted efficiencies as high as 90% can be achieved.
机译:为了研究微生物和哺乳动物细胞的分离,使用计算流体动力学(CFD)进行了水力旋流器的数值模拟。二维轴对称计算中使用的湍流模型是雷诺应力模型(RSM),以考虑到这种类型的设备会产生高涡旋效应,从而引起各向异性湍流。流体模型体积(VOF)用于说明气/液界面。在所有计算中,圆柱状空心均沿圆柱体的整个长度运行旋风分离器是沿中心轴形成的低压区域而自然出现的。研究了使用Bradley氢旋胞菌酮分离大肠杆菌,酿酒酵母和哺乳动物细胞(BHK-21)的情况。直径低至10 mm不能有效地分离微生物,但是可以实现预测效率高达90%的哺乳动物细胞分离。

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