Articles producció científicaEnginyeria Mecànica

CO2/acetone mixture desorption process in a plate heat exchanger for compression/resorption heat pumps

  • Datos identificativos

    Identificador:  imarina:9366447
    Autores:  Dávila, P; Bourouis, M; Nicolalde, JF; Martínez-Gómez, J
    Resumen:
    Industrial processes represent one of the activities that consume the most energy, which is related to the use of fossil fuels and growing environmental problems. In this way, the recovery of residual heat energy has been presented as an efficient solution to take advantage of low -quality residual heat, where the compressorresorption heat pump technology has proven to reach high temperature levels with a considerable Coefficient of Performance. The importance of this work lies in the validation of the ecofriendly CO2/Acetone mixture as a useful working fluid for a compressor -resorption heat pump, initiating the experimental study in the desorption process as a novel application. Even more, the cycle of the bomb has been simulated on previous research regarding a literature comparative and the present work validates it by experimental means. The process of desorption of the CO2/acetone mixture was studied in a heat exchanger of plates with operating conditions for conducts formed by 4 plates/3 channels, for compression/resorption heat pumps. Result ranges have been obtained for solution heat transfer coefficient between 0.10 and 0.50 kW x m- 2 x K-1, average vapor flow rate between 0.02 and 0.16, heat flow rate between 1.50 and 5.20 kW x m- 2 x K-1 and desorption mass flow rate between 2 and 5 kg x m- 2 s- 1 x 10-3 in the central channel of the plate heat exchanger. Finally, an empirical correlation is proposed to extend the results of the heat transfer coefficient of the CO2/acetone solution in applications outside the experimentally determined range, from the comparison between experimental data and determined by correlation of enthalpy of the solution, an average minimum, mean and maximum deviation of 0.2, 13.5 and 22.3 %, respectively, was determined. In this way, the results shows that the most influential variables are the test pressure and heating water temperature at the inlet of the desorber, where, with a concentration of CO2 (XCO2) between 22 and 25 %, the heat transfer coefficients obtained have an order of 0.50 kW x m- 2 x K-1. On the other hand, viscosity favours heat transfer, thermal conductivity is a determining factor for the desorption process. This contributes to lower heat transfer coefficient and heat flow in the heat exchanger for the CO2/acetone mixture compared to the other mixtures.
  • Otros:

    Enlace a la fuente original: https://www.sciencedirect.com/science/article/abs/pii/S1359431124003727
    Referencia de l'ítem segons les normes APA: Dávila, P; Bourouis, M; Nicolalde, JF; Martínez-Gómez, J (2024). CO2/acetone mixture desorption process in a plate heat exchanger for compression/resorption heat pumps. Applied Thermal Engineering, 244(), 122704-. DOI: 10.1016/j.applthermaleng.2024.122704
    Referencia al articulo segun fuente origial: Applied Thermal Engineering. 244 122704-
    DOI del artículo: 10.1016/j.applthermaleng.2024.122704
    Año de publicación de la revista: 2024-05-01
    Entidad: Universitat Rovira i Virgili
    Versión del articulo depositado: info:eu-repo/semantics/acceptedVersion
    Fecha de alta del registro: 2026-05-09
    Autor/es de la URV: Bourouis Chebata, Mahmoud / DAVILA ALDAS, PAUL SEBASTIAN
    Departamento: Enginyeria Mecànica
    URL Documento de licencia: https://repositori.urv.cat/ca/proteccio-de-dades/
    Tipo de publicación: Journal Publications
    Autor según el artículo: Dávila, P; Bourouis, M; Nicolalde, JF; Martínez-Gómez, J
    Acceso a la licencia de uso: https://creativecommons.org/licenses/by/3.0/es/
    Áreas temáticas: Thermodynamics, Mechanics, Mechanical engineering, Industrial and manufacturing engineering, Fluid flow and transfer processes, Engineering, mechanical, Engenharias i, Energy engineering and power technology, Energy & fuels, Ciências ambientais, Biodiversidade
    Direcció de correo del autor: mahmoud.bourouis@urv.cat
  • Palabras clave:

    Zeotropic mixture
    Water solutions
    Resorption
    Pressure-drop
    Plus lithium-nitrate
    Performance
    Optimization
    Mass-transfer
    Heat transfer
    Heat pump
    Evaporation
    Desorption process
    Cycle
    Condensation
    Compression
    Ammonia/water
    Energy & Fuels
    Energy Engineering and Power Technology
    Engineering
    Mechanical
    Fluid Flow and Transfer Processes
    Industrial and Manufacturing Engineering
    Mechanical Engineering
    Mechanics
    Thermodynamics
    Engenharias i
    Ciências ambientais
    Biodiversidade
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