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vol.13 número2Revisión de la literatura sobre logística inversa, sus aplicaciones y tendencias futurasCaracterización de agentes de consumo energético en el sector residencial del Ecuador basada en una encuesta nacional y en los sistemas de información geográfica para modelamiento de sistemas energéticos índice de autoresíndice de materiabúsqueda de artículos
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Enfoque UTE

versión On-line ISSN 1390-6542versión impresa ISSN 1390-9363

Resumen

GONZALEZ, Juan Elías et al. Modeling and computational simulation of Piptocoma discolor (Pigüe) fluid for combustión optimization in Ecuador. Enfoque UTE [online]. 2022, vol.13, n.2, pp.48-67. ISSN 1390-6542.  https://doi.org/10.29019/enfoqueute.795.

Computational modeling and simulation represents a competitive and functional tool that effectively supports the study of thermochemical behavior in combustion optimization, guaranteeing reliable results through modeling, design and allowed the validation of excess thermodynamic properties applied for combustion. of the biomass of Piptocoma discolor (pigüe) from the Amazonian region of Ecuador and Latin America. The model parameters were physical, chemical and thermal through computational fluid dynamics in combustion optimization. And the mathematical model of combustion was obtained under the transport method of the species. In the simulation, the variables of primary air flow and moisture content were observed. The variable of the combustion parameters were N2, O2, CO, H, pressure, temperature, humidity, total energy and burning time of the biomass particles. The geometric configuration was developed according to the fundamental principles of CFD within Ansys Fluent to obtain the behavior of speed, turbulence, pressure, etc. of the composition of the optimal fuel 91.75% of a complete combustion and compared to other species that show 86% of the reactions of the combustion of the species.

Palabras clave : Piptocoma discolor; modeling; simulation; optimization; combustion.

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