References

  1. F. Hammami, S. Ben Mabrouk, A. Mami, Modelling and simulation of heat exchange and moisture content in a cereal storage silo, Math. Comp. Model. Dynam. Syst., 22(3) (2016) 207-220. https://doi.org/10.1080/13873954.2016.1157823

  2. V. Ziegler, R.T. Paraginski, C.D. Ferreira, Grain storage systems and effects of moisture, temperature and time on grain quality - A review, J. Stored Prod. Res., 91 (2021) 101770. https://doi.org/10.1016/j.jspr.2021.101770

  3. P.-P. Tian, Y.-Y. Lv, W.-J. Yuan, S.-B. Zhang, Y.-S. Hu, Effect of artificial aging on wheat quality deterioration during storage, J. Stored Prod. Res., 80 (2019) 50-56. https://doi.org/10.1016/j.jspr.2018.11.009

  4. L.I. Quemada-Villagómez, F.I. Molina-Herrera, M. Carrera-Rodríguez, M. Calderón-Ramírez, G.M. Martínez-González, J.L. Navarrete-Bolaños, H. Jiménez-Islas, Numerical study to predict temperature and moisture profiles in unventilated grain silos at prolonged time periods, Int. J. Thermophys., 41 (2020) 52. https://doi.org/10.1007/s10765-020-02636-5

  5. R.A. Ogle, S.E. Dillon, M. Fecke, Explosion from a smoldering silo fire, Process Saf. Prog., 33 (2014) 94-103. https://doi.org/10.1002/prs.11628

  6. U. Krause, Fires in Silos, Hazards, Prevention, and Firefighting, John Wiley & Sons, 2009.

  7. R. Eckhoff, Explosion Hazards in the Process Industries. 2nd ed., Elsevier. https://doi.org/10.1016/C2014-0-03887-7

  8. A. Clark, J. Kimball, H. Stambaugh, The Hazards Associated with Agricultural Silo Fires, Federal Emergency Management Agency, United States Fire Administration, 1998.

  9. R.K. Eckhoff, Dust Explosions in the Process Industries: Identification, Assessment and Control of Dust Hazards: Elsevier Science; 2003.

  10. F. Ferrero, C. Lohrer, B.M. Schmidt, M . Noll, M. Malow, A mathematical model to predict the heating-up of large-scale wood piles, J. Loss Prevent. Proc. Ind., 22(4) (2009) 439-448. https://doi.org/10.1016/j.jlp.2009.02.009

  11. B. Standard, Dust Explosion Venting Protective Systems, 2008.

  12. P. Russo, A. De Rosa, M. Mazzaro, Silo explosion from smoldering combustion: A case study, Canad. J. Chem. Eng., 95(9) (2017) 1721-1729. https://doi.org/10.1002/cjce.22815

  13. K. Allali, Y. Joundy, A. Taik, V. Volpert, Dynamics of convective thermal explosion in porous media, Int. J. Bifurc. Chaos, 30 (2020) 2050081. https://dx.doi.org/10.1142/S0218127420500819

  14. N.V. Bukrina, A.G. Knyazeva, The effect of the stages of chemical reactions on the composition of the products formed under a dynamic thermal explosion of the mixtures of aluminium and nickel powders, Int. Commun. Heat Mass Transfer, 127 (2021) 105489. https://doi.org/10.1016/j.icheatmasstransfer.2021.105489

  15. N. Himrane, D. Ameziani, M. El Ganaoui, H. Ragueb, Some insights on unsteady double diffusive natural convection of porous medium in vertical open-ended cylinder, Arab. J. Sci. Eng., 44 (2019) 1379-1392. https://doi.org/10.1007/s13369-018-3541-3

  16. Z. Wang, T. Wang, G. Xi, Z. Huang, Periodic unsteady natural convection in square enclosure induced by inner circular cylinder with different vertical locations, Int. Commun. Heat Mass Transfer, 124 (2021) 105250. https://doi.org/10.1016/j.icheatmasstransfer.2021.105250

  17. S. Patankar, Numerical Heat Transfer and Fluid Flow, CRC Press, 2018.

  18. D.E. Ameziani, K. Bouhadef, R. Bennacer, O. Rahli, Analysis of the chimney natural convection in a vertical porous cylinder. Num. Heat Transfer, Part A: Applications. 54(1) (2008) 47-66. https://doi.org/10.1080/10407780802025820