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Modeling of residence time distribution: Application to a three-phase inverse fluidized bed based on a Mellin transform

机译:停留时间分布的建模:在基于Mellin变换的三相逆流化床中的应用

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The study is focused on modeling of gas and liquid residence time distribution in an aerated liquid system of an inverse fluidized bed bioreactor. Two opposite strategies are currently available: the use of powerful complex computational fluid dynamics (CFD) simulation and the phenomenological semi-empirical models. In this work, a specific methodology is proposed, as follows: the reactor is modeled as a reactor network containing a combination of zones with basic ideal flow patterns such as perfect mixed flow (PMF) and plug flow (PF). The approach is based on a Mellin-modification of the Laplace transformation over the relevant equations. The method allows zero-time solutions for identification analysis. The study shows that the increase of the gas flowrate leads to higher mixing intensity of the gas phase. Decreasing the gas velocity, the inverse fluidized bed tends to perform as a plug flow reactor. The liquid phase performs closer to disperse plug flow.
机译:该研究的重点是在逆流化床生物反应器的充气液体系统中气体和液体停留时间分布的建模。当前有两种相反的策略:使用功能强大的复杂计算流体动力学(CFD)模拟和现象学半经验模型。在这项工作中,提出了一种特定的方法,如下所示:将反应堆建模为一个反应堆网络,其中包含具有基本理想流型(例如完美混合流(PMF)和活塞流(PF))的区域的组合。该方法基于对相关方程的Laplace变换的Mellin修改。该方法允许零时解进行识别分析。研究表明,气体流量的增加导致气相的混合强度更高。降低气体速度,逆流化床趋于充当活塞流反应器。液相更接近于分散活塞流。

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