首页> 外文期刊>Journal of Non-Equilibrium Thermodynamics >Development of Hybrid ANFIS-CFD Model for Design and Optimization of Membrane Separation of Benzoic Acid
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Development of Hybrid ANFIS-CFD Model for Design and Optimization of Membrane Separation of Benzoic Acid

机译:苯甲酸膜分离设计与优化杂交ANFIS-CFD模型的开发

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In this work, a novel hybrid model was developed in order to study the membrane-based liquid separation process. The membrane system was a continuous hollow-fiber membrane module for contacting two aqueous and organic phases for reactive extraction of benzoic acid (BA) from aqueous solution. Two simulation approaches were utilized in order to build a robust hybrid model. The hybrid model is composed of computational fluid dynamics (CFD) and Adaptive Neuro-Fuzzy Inference System (ANFIS) elements. First, the CFD approach was used in order to capture the mass transfer of the system, whereas ANFIS was trained using the obtained CFD results. The hybrid model was used to predict the concentration distribution of solute in the membrane contactor. The combined simulation methodology can reduce the computational costs and time significantly, while it predicts the process with high accuracy. The ANFIS was trained based on the extracted data of concentration distribution from the CFD simulations, and the training and test analyses indicated great agreement. Different membership functions were evaluated, and it was revealed that using three functions, an R-2 of 0.996 was obtained. The simulation results reveal that the BA concentration was changed along the membrane length and diffusional mass transfer is more significant in order to improve the separation efficiency of BA using membrane contactors. The developed hybrid simulation methodology is capable of design and optimization of membrane-based separation at low computational expenses and provides a predictive tool for process intensification.
机译:在这项工作中,开发了一种新的混合模型,以研究基于膜的液体分离过程。膜系统是连续的中空纤维膜组件,用于接触两种水性和有机相,用于从水溶液中与苯甲酸(BA)反应提取。利用了两种模拟方法以构建稳健的混合模型。混合模型由计算流体动力学(CFD)和自适应神经模糊推理系统(ANFIS)元件组成。首先,使用CFD方法以捕获系统的传质,而使用获得的CFD结果训练了ANFIS。混合模型用于预测膜接触器中溶质的浓度分布。组合的仿真方法可以显着降低计算成本和时间,而预测高精度的过程。基于CFD模拟的浓度分布的提取数据培训了ANFI,培训和测试分析表明很大一致。评估了不同的员工功能,并揭示了使用三种功能,获得0.996的R-2。仿真结果表明,沿膜长度改变BA浓度,扩散质量转移更为显着,以提高使用膜接触器的BA的分离效率。开发的混合仿真方法能够在低计算费用下设计和优化基于膜的分离,并为过程强化提供预测工具。

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