Modeling a Thermochemical Reactor of a Solar Refrigerator by BaCl2-NH3 Sorption Using Artificial Neural Networks and Mathematical Symmetry Groups

Author:

Meza-Cruz Onesimo12,Pilatowsky Isaac2,Pérez-Ramírez Agustín1ORCID,Rivera-Blanco Carlos2,El Hamzaoui Youness1,Perez-Ramirez Miguel3,Sanchez Mauricio A.4

Affiliation:

1. Universidad Autónoma Del Carmen, 24039 Cd Del Carmen Campeche, Mexico

2. Instituto de Energías Renovables, Universidad Nacional Autónoma de México, 62580 Temixco, Morelos, Mexico

3. Instituto Nacional de Electricidad y Energías Limpias, Reforma 113, Col. Palmira, C. P. 62490 Cuernavaca, Morelos, Mexico

4. Facultad de Ciencias Químicas e Ingeniería, Universidad Autónoma de Baja California, Tijuana, Mexico

Abstract

The aim of this work is to present a model for heat transfer, desorbed refrigerant, and pressure of an intermittent solar cooling system’s thermochemical reactor based on backpropagation neural networks and mathematical symmetry groups. In order to achieve this, a reactor was designed and built based on the reaction of BaCl2-NH3. Experimental data from this reactor were collected, where barium chloride was used as a solid absorbent and ammonia as a refrigerant. The neural network was trained using the Levenberg–Marquardt algorithm. The correlation coefficient between experimental data and data simulated by the neural network was r = 0.9957. In the neural network’s sensitivity analysis, it was found that the inputs, reactor’s heating temperature and sorption time, influence neural network’s learning by 35% and 20%, respectively. It was also found that, by applying permutations to experimental data and using multibase mathematical symmetry groups, the neural network training algorithm converges faster.

Publisher

Hindawi Limited

Subject

General Engineering,General Mathematics

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