Research Article

Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer

Volume: 9 Number: 6 November 30, 2023
  • Ahmed Alamı *
  • Lala Rajaoarısoa
  • Mohammed-hichem Benzaama
  • Abdeldjalil Benbakhtı
EN

Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer

Abstract

This work defined the development of a model for thin-film drying of tomatoes using an indi-rect solar dryer. Drying experiments were carried out and the drying model was approximated by a simplified model determined by the measurements collected during the experiments, in particular, the measurement of the relative humidity of the tomato during two days of drying coupled with the thermal behaviour of the drying device in free convection. The results show that with good measurements, it is possible to approximate the drying characteristic curve by a linear model with very high statistical performance indicators. The experiments also show that depending on the drying process adopted, the water behaviour of the tomato can change. In addition, the thin-film drying model adopted made it possible to assess the solar drying kinetics of the tomato variety studied. The results obtained finally show that the dryness of the tomato is reached after about 14 hours of drying. The drying temperature reaches an average of 80°C, and the final product water content after the optimal drying time is about 0.40 kg.water/kg.ms on a dry basis. At the end of this study, we concluded that the drying air temperature represents the most important parameter affecting the drying kinetics. The very good agreement between the experimental and numerical results obtained shows that the theoretical model and assumptions used are acceptable, and that our calculation model is reliable.

Keywords

References

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Details

Primary Language

English

Subjects

Thermodynamics and Statistical Physics

Journal Section

Research Article

Authors

Ahmed Alamı * This is me
0000-0001-7000-8292
Algeria

Lala Rajaoarısoa This is me
0000-0003-2563-1493
France

Mohammed-hichem Benzaama This is me
0000-0001-5103-4735
France

Abdeldjalil Benbakhtı This is me
0009-0005-9118-4072
Algeria

Publication Date

November 30, 2023

Submission Date

January 30, 2023

Acceptance Date

April 18, 2023

Published in Issue

Year 2023 Volume: 9 Number: 6

APA
Alamı, A., Rajaoarısoa, L., Benzaama, M.- hichem, & Benbakhtı, A. (2023). Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer. Journal of Thermal Engineering, 9(6), 1548-1558. https://doi.org/10.18186/thermal.1401040
AMA
1.Alamı A, Rajaoarısoa L, Benzaama M hichem, Benbakhtı A. Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer. Journal of Thermal Engineering. 2023;9(6):1548-1558. doi:10.18186/thermal.1401040
Chicago
Alamı, Ahmed, Lala Rajaoarısoa, Mohammed-hichem Benzaama, and Abdeldjalil Benbakhtı. 2023. “Drying Model Based on the Relative Humidity Profile of Thin-Layer Tomatoes in an Indirect Solar Dryer”. Journal of Thermal Engineering 9 (6): 1548-58. https://doi.org/10.18186/thermal.1401040.
EndNote
Alamı A, Rajaoarısoa L, Benzaama M- hichem, Benbakhtı A (November 1, 2023) Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer. Journal of Thermal Engineering 9 6 1548–1558.
IEEE
[1]A. Alamı, L. Rajaoarısoa, M.- hichem Benzaama, and A. Benbakhtı, “Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer”, Journal of Thermal Engineering, vol. 9, no. 6, pp. 1548–1558, Nov. 2023, doi: 10.18186/thermal.1401040.
ISNAD
Alamı, Ahmed - Rajaoarısoa, Lala - Benzaama, Mohammed-hichem - Benbakhtı, Abdeldjalil. “Drying Model Based on the Relative Humidity Profile of Thin-Layer Tomatoes in an Indirect Solar Dryer”. Journal of Thermal Engineering 9/6 (November 1, 2023): 1548-1558. https://doi.org/10.18186/thermal.1401040.
JAMA
1.Alamı A, Rajaoarısoa L, Benzaama M- hichem, Benbakhtı A. Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer. Journal of Thermal Engineering. 2023;9:1548–1558.
MLA
Alamı, Ahmed, et al. “Drying Model Based on the Relative Humidity Profile of Thin-Layer Tomatoes in an Indirect Solar Dryer”. Journal of Thermal Engineering, vol. 9, no. 6, Nov. 2023, pp. 1548-5, doi:10.18186/thermal.1401040.
Vancouver
1.Ahmed Alamı, Lala Rajaoarısoa, Mohammed-hichem Benzaama, Abdeldjalil Benbakhtı. Drying model based on the relative humidity profile of thin-layer tomatoes in an indirect solar dryer. Journal of Thermal Engineering. 2023 Nov. 1;9(6):1548-5. doi:10.18186/thermal.1401040

IMPORTANT NOTE: JOURNAL SUBMISSION LINK http://eds.yildiz.edu.tr/journal-of-thermal-engineering