首页> 外文期刊>Journal of Non-Equilibrium Thermodynamics >Gas-Liquid Phase Recirculation in Bubble Column Reactors: Development of a Hybrid Model Based on Local CFD - Adaptive Neuro-Fuzzy Inference System (ANFIS)
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Gas-Liquid Phase Recirculation in Bubble Column Reactors: Development of a Hybrid Model Based on Local CFD - Adaptive Neuro-Fuzzy Inference System (ANFIS)

机译:气泡柱反应器中的气液相再循环:基于局部CFD - 自适应神经模糊推理系统(ANFIS)的混合模型的开发

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摘要

The Euler-Euler method and soft computing methods are recently utilized for the purpose of bubbly flow simulation and evolution of the dispersed and continuous phase in a two-phase reactor. Joining computational fluid dynamics (CFD) to the adaptive neuro-fuzzy inference system (ANFIS) method can enable the researchers to avoid several runs for heavy numerical methods (multidimensional Euler-Euler) to optimize fluid conditions. This overview can also help the researchers to carefully analyze fluid conditions and categorize their huge number of data in their artificial neural network nodes and avoid a complex non-structure CFD mesh. In addition, it can provide a neural geometry without limitation of an increasing mesh number in the fluid domain. In this study, gas and liquid circulation were considered as one of the main CFD factors in the scale-up of reactors used as an output parameter for prediction tool (ANFIS method) in different dimensions. This study shows that a combination of ANFIS and CFD methods provides the non-discrete domain in various dimensions and makes a smart tool to locally predict multiphase flow. The integration of numerical calculation and smart methods also shows that there is a great agreement between CFD results and ANFIS output depending on different dimensions.
机译:最近欧拉 - 欧拉方法和软计算方法用于两相反应器中的分散和连续相的泡沫模拟和演化的目的。将计算流体动力学(CFD)加入自适应神经模糊推理系统(ANFIS)方法可以使研究人员能够避免几次运行重型数值方法(多维欧拉欧拉)以优化流体条件。此概述还可以帮助研究人员仔细分析流体条件,并在其人工神经网络节点中对其大量数据进行分析,并避免复杂的非结构CFD网格。另外,它可以提供神经几何形状,而不限制流体域中的增加网格。在本研究中,气体和液体循环被认为是用作不同尺寸的预测工具(ANFIS方法)的输出参数的反应器中的主要CFD因子之一。本研究表明,ANFI和CFD方法的组合在各种尺寸中提供了非离散域,并使智能工具局部预测多相流。数值计算和智能方法的集成还表明,CFD结果与ANFIS输出之间存在很大一致,具体取决于不同的尺寸。

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