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Research Article

CFD investigation of the behavior of a solar dryer for the dehydration of olive pomace

ORCID Icon, ORCID Icon, ORCID Icon & ORCID Icon
Pages 902-917 | Received 25 Sep 2023, Accepted 27 Nov 2023, Published online: 13 Dec 2023

References

  • Aguado, R., D. Vera, F. Jurado, and G. Beltrán. 2022. An integrated gasification plant for electric power generation from wet biomass: Toward a sustainable production in the olive oil industry. Biomass Conversion and Biorefinery. doi:10.1007/s13399-021-02231-0.
  • Amouiri, R., and A. Belhamri. 2022. CFD investigations on the behavior of a solar dryer used for medicinal herbs dehydration under climatic conditions of constantine, Algeria. Materials Today: Proceedings 51:2123–30. doi:10.1016/j.matpr.2021.12.475.
  • ANSYS. 2023a. Ansys Fluent Theory Guide, 2023 R1. Canonsburg: ANSYS, Inc.
  • ANSYS. 2023b. Ansys Fluent Tutorial Guide, 2023 R1. Canonsburg.
  • Barghi Jahromi, M. S., V. Kalantar, H. Samimi Akhijahani, and H. Kargarsharifabad. 2022. Recent progress on solar cabinet dryers for agricultural products equipped with energy storage using phase change materials. Journal of Energy Storage 51:104434. doi:10.1016/j.est.2022.104434.
  • Baysan, U., M. Koç, A. Güngör, and F. Kaymak Ertekin. 2021. Predrying of 2-phase olive pomace by drum dryer to improve processability. Waste Biomass Valorization 12 (5):2495–506. doi:10.1007/s12649-020-01202-2.
  • Delisi, R., R. Ciriminna, S. Arvati, F. Meneguzzo, and M. Pagliaro. 2018. Olive biophenol integral extraction at a two-phase olive mill. Journal of Cleaner Production 174:1487–91. doi:10.1016/j.jclepro.2017.10.278.
  • EL-Mesery, H. S. 2022. Improving the thermal efficiency and energy consumption of convective dryer using various energy sources for tomato drying. Alexandria Engineering Journal 61 (12):10245–61. doi:10.1016/j.aej.2022.03.076.
  • Fernández-Lobato, L., R. Aguado, F. Jurado, and D. Vera. 2022. Biomass gasification as a key technology to reduce the environmental impact of virgin olive oil production: A life cycle assessment approach. Biomass and Bioenergy 165:106585. doi:10.1016/j.biombioe.2022.106585.
  • Hernández Espinoza, D. A., D. Gabriel Buguña, and B. I Ambiental. Universitat Autònoma de Barcelona. Departament d’Enginyeria Química. 2019 May. Estudio de los procesos de almacenaje, secado y peletización de desechos del procesado de la oliva para su reutilización como biocombustible de uso industrial y domiciliario. TDX (Tesis Doctorals en Xarxa), Accessed March 29, 2023. https://www.tdx.cat/handle/10803/667352
  • Hussain, F., M. Jaskulski, M. Piatkowski, and E. Tsotsas. 2022. CFD simulation of agglomeration and coalescence in spray dryer. Chemical Engineering Science 247:117064. doi:10.1016/j.ces.2021.117064.
  • Iranmanesh, M., H. Samimi Akhijahani, and M. S. Barghi Jahromi. 2020. CFD modelling and evaluation the performance of a solar cabinet dryer equipped with evacuated tube solar collector and thermal storage system. Renew Energy 145:1192–213. doi:10.1016/j.renene.2019.06.038.
  • Keshtkar, M., M. Eslami, and K. Jafarpur. 2020. Effect of design parameters on performance of passive basin solar stills considering instantaneous ambient conditions: A transient CFD modelling. Solar Energy 201:884–907. doi:10.1016/j.solener.2020.03.068.
  • Koukouch, A., A. Idlimam, M. Asbik, B. Sarh, B. Izrar, S. Bostyn, A. Bah, O. Ansari, O. Zegaoui, A. Amine, et al. 2017. Experimental determination of the effective moisture diffusivity and activation energy during convective solar drying of olive pomace waste. Renew Energy 101:565–74. doi:10.1016/j.renene.2016.09.006.
  • Lama-Muñoz, A., F. Rubio-Senent, A. Bermúdez-Oria, J. Fernández-Bolaños, Á. F. Prior, and G. Rodríguez-Gutiérrez. 2019. The use of industrial thermal techniques to improve the bioactive compounds extraction and the olive oil solid waste utilization. Innovative Food Science & Emerging Technologies 55:11–17. doi:10.1016/j.ifset.2019.05.009.
  • Mellalou, A., W. Riad, A. Bacaoui, and A. Outzourhit. 2023. Experimental investigations on drying kinetics and modelling of two-phase olive pomace dried in a hybrid solar greenhouse dryer. Journal of Thermal Analysis and Calorimetry 148 (12):5471–83. doi:10.1007/s10973-023-12063-x.
  • Mirzaee, P., P. Salami, H. Samimi Akhijahani, and S. Zareei. 2023. Life cycle assessment, energy and exergy analysis in an indirect cabinet solar dryer equipped with phase change materials. Journal of Energy Storage 61:106760. doi:10.1016/j.est.2023.106760.
  • Mondal, S., S. Dutta, P. Pande, and V. Naik-Nimbalkar. 2022. Intensify staple fibre drying by optimizing air distribution in multistage convective dryer using CFD. Chemical Engineering & Processing - Process Intensification 173:108807. doi:10.1016/j.cep.2022.108807.
  • Montero Puertas, I. 2005. Modelado y construcción de un secadero solar híbrido para residuos biomásicos. Accessed March 29, 2023. https://dialnet.unirioja.es/servlet/tesis?codigo=576&info=resumen&idioma=SPA
  • Patsios, S. I., K. N. Kontogiannopoulos, and G. F. Banias. 2021. Chapter 5 - environmental impact assessment in agri-production: A comparative study of olive oil production in two European countries. In Bio-economy and agri-production, ed. D. Bochtis, C. Achillas, G. Banias, and M. Lampridi, 83–116. Academic Press. doi:10.1016/B978-0-12-819774-5.00005-9.
  • Potter, M. C., D. C. Wiggert, and B. Ramadan. 2015. Mecánica de Fluidos. Cuarta ed. México, D.F.: CENGAGE Learning.
  • Ruiz-Méndez, M. V., C. Romero, E. Medina, A. García, A. de Castro, and M. Brenes. 2013. Acidification of alperujo paste prevents off-odors during their storage in Open air. Journal of the American Oil Chemists’ Society 90 (3):401–06. doi:10.1007/s11746-012-2172-1.
  • Sileshi, S. T., A. A. Hassen, and K. D. Adem. 2022. Simulation of mixed-mode solar dryer with vertical air distribution channel. Heliyon 8 (11):e11898. doi:10.1016/j.heliyon.2022.e11898.
  • Tegenaw, P. D., M. G. Gebrehiwot, and M. Vanierschot. 2019. On the comparison between computational fluid dynamics (CFD) and lumped capacitance modelling for the simulation of transient heat transfer in solar dryers. Solar Energy 184:417–25. doi:10.1016/j.solener.2019.04.024.
  • Tulus, V., D. Boer, L. Cabeza, L. Guillén-Gosálbez, and J. Gonzalo. 2015. Análisis termodinámico de proceso de secado de ‘alperujo’ y posibilidad de ignición en el interior del secadero. In IX Congreso Nacional de Ingeniería Termodinámica: Libro de Actas | IX Congreso Nacional Ingeniería Termodinámica | 3, 4 y 5 de junio de 2015 | Cartagena, España, 234–41. Accessed March 29, 2023. http://www.9cnit.es/

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