AN ARTIFICIAL NEURAL NETWORK AND TAGUCHI INTEGRATED APPROACH TO INVESTIGATION OF HEAT TRANSFER AND PRESSURE DROP IN THE SOLAR AIR HEATER
Author:
Publisher
Begell House
Subject
Fluid Flow and Transfer Processes,Mechanical Engineering,Condensed Matter Physics
Link
https://www.dl.begellhouse.com/download/article/579b0a577d1e0917/HTR-44331.pdf
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3. Acir, A., Ata, 1., and Canli, M.E., Investigation of Effect of the Circular Ring Turbulators on Heat Transfer Augmentation and Fluid Flow Characteristic of Solar Air Heater, Exp. Therm. FluidSci., vol. 77, pp. 45-54, 2016.
4. Aghaie, A.Z., Rahimi, A.B., and Akbarzadeh, A., A General Optimized Geometry of Angled Ribs for Enhancing the Thermo-Hydraulic Behavior of a Solar Air Heater Channel - A Taguchi Approach, Renew. Energy, vol. 83, pp. 47-54, 2015.
5. Battiti, R., First- and Second-Order Methods for Learning: Between Steepest Descent and Newton's Method, Neural Comput., vol. 4, no. 2, pp. 141-166, 1992.
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