Comparative analysis of CFD and ANFIS for predicting heat transfer enhancement in water-Fe2O3 nanofluids across various flow regions
Author:
Affiliation:
1. Facultad de Ciencias Pecuarias, Escuela Superior Politecnica de Chimborazo (ESPOCH), Riobamba, Ecuador
2. Facultad de Mecanica, Escuela Superior Politecnica de Chimborazo (ESPOCH), Riobamba, Ecuador
Abstract
Publisher
National Library of Serbia
Reference21 articles.
1. Sundar, L. S., et al., ANFIS Based Effectiveness and Number of Transfer Units Predictions of MWCNT/ Water Nanofluids Flow in A Double Pipe U-Bend Heat Exchanger, Case Studies in Thermal Engineering, 43 (2023), 102645
2. Selimefendigil, F., H. F. Oztop, Magnetic Field Effects on The Forced Convection of CuO-Water Nanofluid-Flow in a Channel with Circular Cylinders and Thermal Predictions Using ANFIS, Int. J. Mech. Sci., 146-147 (2018), Oct., pp. 9-24
3. Altarazi, F., et al., Analysis and Implementation of Thermal Heat Exchanger Tube Performance with Helically Pierced Twisted Tape Inserts Using ANFIS Model, Math. Probl. Eng., 2021 (2021), ID1734909
4. Wen, T., et al., Experimental Study on the Thermal and Flow Characteristics of ZnO/Water Nanofluid in Mini-Channels Integrated with GA-Optimized ANN Prediction and CFD Simulation, Int. J. Heat Mass Transf., 178 (2021), 121617
5. Bahnemiri, H, A., et al., Numerical investigation and Artificial Brain Structure-Based Modelling to Predict the Heat Transfer of Hybrid Ag/Au Nanofluid in a Helical Tube Heat Exchanger, Advances in Mechanical Engineering, 15 (2023), 9
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