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An innovative lattice Boltzmann model for simulating Michaelis-Menten-based diffusion-advection kinetics and its application within a cartilage cell bioreactor

机译:创新的格子玻尔兹曼模型,用于模拟基于Michaelis-Menten的扩散-对流动力学及其在软骨细胞生物反应器中的应用

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Lattice Boltzmann models (LBM) are rapidly showing their ability to simulate a lot of fluid dynamics problems that previously required very complex approaches. This study presents a LBM for simulating diffusion-advection transport of substrate in a 2-D laminar flow. The model considers the substrate influx into a set of active cells placed inside the flow field. A new innovative method was used to simulate the cells activity using the LBM by means of Michaelis-Menten kinetics. The model is validated with some numerical benchmark problems and proved highly accurate results. After validation the model was used to simulate the transport of oxygen substrates that diffuse in water to feed a set of active cartilage cells inside a new designed bioreactor.
机译:莱迪思·玻尔兹曼模型(LBM)迅速显示了它们模拟许多以前需要非常复杂方法的流体动力学问题的能力。这项研究提出了一种LBM,用于模拟二维层流中基质的扩散对流传输。该模型考虑了底物流入设置在流场内部的一组活动单元的可能性。一种新的创新方法被用来通过Michaelis-Menten动力学使用LBM模拟细胞活性。该模型通过一些数值基准问题进行了验证,并证明了结果的准确性。验证后,该模型用于模拟在水中扩散的氧气底物的运输,以喂养新设计的生物反应器内部的一组活性软骨细胞。

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