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首页> 外文期刊>Chemical Engineering Science >Euler-Lagrange approach to model heterogeneities in stirred tank bioreactors - Comparison to experimental flow characterization and particle tracking
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Euler-Lagrange approach to model heterogeneities in stirred tank bioreactors - Comparison to experimental flow characterization and particle tracking

机译:欧拉-拉格朗日方法来模拟搅拌釜生物反应器中的异质性-与实验流量表征和颗粒追踪的比较

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摘要

The aim of this work is the validation of an Euler-Lagrange modeling approach coupling a CFD-based compartment model (Eulerian approach) and a stochastic model based on a Continuous-Time Markov Chain (Lagrangian approach). The turbulent flow structure and the mixing process in a bioreactor stirred by an axial Mixel TT impeller is characterized by Ply and tracer experiments. Comparison between experimental and numerical data shows that the CFD-based compartment model is able to reproduce accurately the spatial heterogeneities inside the bioreactor. The trajectory of a small tracer particle which perfectly follows the fluid flow is measured by optical trajectography. It is then simulated by a stochastic model which is either based on an homogeneous or on an inhomogeneous Continuous Time Markov Chain (CTMC). Comparison of residence and circulation time distributions in three zones defined inside the bioreactor shows that the inhomogeneous CTMC model predicts with an excellent accuracy the particle trajectories inside the bioreactor. The modeling approach proposed here could be an useful tool to design scale-down bioreactors in order to reproduce at lab-scale the stress levels encountered in large-scale production bioreactors and to characterize and compare different bioreactor configurations. (C) 2015 Elsevier Ltd. All rights reserved.
机译:这项工作的目的是验证结合基于CFD的隔室模型(欧拉方法)和基于连续时间马尔可夫链的随机模型(拉格朗日方法)的Euler-Lagrange建模方法。通过Ply和示踪实验表征了生物反应器中由轴向Mixel TT叶轮搅拌的湍流结构和混合过程。实验数据和数值数据之间的比较表明,基于CFD的隔室模型能够准确再现生物反应器内部的空间异质性。通过光学轨迹测量法可以精确地跟踪跟随流体流动的小示踪剂粒子的轨迹。然后,通过基于均质或非均质连续时间马尔可夫链(CTMC)的随机模型进行仿真。比较在生物反应器内部定义的三个区域中的停留时间和循环时间分布,结果表明,不均匀的CTMC模型可以非常准确地预测生物反应器内部的颗粒轨迹。这里提出的建模方法可能是设计按比例缩小生物反应器的有用工具,以便在实验室规模上再现大规模生产生物反应器中遇到的应力水平,并表征和比较不同的生物反应器配置。 (C)2015 Elsevier Ltd.保留所有权利。

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