158
Views
1
CrossRef citations to date
0
Altmetric
Articles

Numerical simulation of reinforcement in steel slender silos having concentric hopper with carbon fiber-reinforced polymer composites (study of the silos filling)

, &
Pages 809-830 | Received 05 May 2014, Accepted 14 Aug 2015, Published online: 18 Sep 2015

References

  • ABAQUS. (2010). ( Version 6.10). User’s manual. Hibbitt, Karlsson and Sorensen Inc., Pawtucket, Rhode Island, USA.
  • ACI 313-97 & ACI 313R-97. (1997). Standard practice for design and construction of concrete silos and stacking tubes for storing granular materials (ACI 313-97) and Commentary – ACI 313R-97. ACI International., Farmington Hills, USA.
  • AFNOR P-22 630. (1992). Construction métallique: Silos, BNCM-3., Saint Aubin, France.
  • Batikha, M., Chen, J. F., Rotter, J. M., & Teng, J. G. (2009). Strengthening metallic cylindrical shells against elephant’s foot buckling with FRP. Thin-Walled Structures, 47, 1078–1091.10.1016/j.tws.2008.10.012
  • Blight, G. (2006). Assessing loads on silos and other bulk storage structures. Research applied to practice. London: Taylor & Francis Group.
  • Böhrnsen, J. U., Antes, H., Ostendorf, M., & Schwedes, J. (2004). Silo discharge: Measurement and simulation of dynamic behavior in bulk solids. Chemical Engineering & Technology, 27, 71–76.
  • Colonnello, C., Reyes, L. I., Clément, E., & Gutiérrez, G. (2014). Behavior of grains in contact with the wall of a silo during the initial instants of a discharge-driven collapse. Physica A: Statistical Mechanics and its Applications, 398, 35–42.10.1016/j.physa.2013.12.010
  • Couto, A., Ruiz, A., Herráez, L., Moran, J., & Aguado, P. J. (2013). Measuring pressures in a slender cylindrical silo for storing maize. Filling, static state and discharge with different material flow rates and comparison with Eurocode 1 part 4. Computers and Electronics in Agriculture, 96, 40–56.10.1016/j.compag.2013.04.011
  • Desprez, C. (2010). Analyse et Réduction de la Vulnérabilité Sismique des Structures Existantes, Renforcement par Collage de Tissus de Fibres de Carbone (TFC) [Analysis and reduction of seismic vulnerability of existing structures: strengthened by bonding Carbon Fiber Reinforced Polymer (CFRP)] ( Thèse de doctorat). Institut Polytechnique de Grenoble, France.
  • Desprez, C., Mazars, J., Kotronis, P., Paultre, P., Roy, N., & Trudeau, M. B. (2009, August). Modèle cyclique de béton confiné par TFC pour poteaux circulaires en béton armé [Cyclical model for confined concrete by CFRP for circular reinforced concrete columns], presented at the meeting of  19éme Congrès Français de Mécanique (CFM'09), Marseille, France.
  • Draidi, Z. (2005). Renforcement et réparation des coques métalliques par matériaux composites (TFC) étude du comportement au flambage, approche expérimentale et numérique [Reinforcement and reparation of metal structures shells with composite material (CFRP): Study of the buckling behavior, Experimental and numerical analysis] ( Thèse de doctorat). INSA de Lyon, France.
  • Drucker, D. C., & Prager, W. (1952). Soil machanics and plastic analysis on limit design. Quarterly Applied Mathematics, 10, 157–165.
  • Eurocode 1, part 4. (2006). Basis of design and actions on structures. Part 4: Actions in silos and tanks. CEN., Brussels.
  • Gallego, E. (2006). Numerical simulation of loads exerted by stored materials in silos with non-elastic material ( PhD thesis). Technical University of Madrid.
  • Gallego, E., Rombach, G. A., Neumann, F., & Ayuga, F. (2010). Simulations of granular flow in silos with different finite element programs: ANSYS vs. SILO. Transactions of the ASABE, 53, 819–829.10.13031/2013.30065
  • Goodey, R. J., & Brown, C. J. (2004). The influence of the base boundary condition in modelling filling of a metal silo. Computers and Structures, 82, 567–579.10.1016/j.compstruc.2004.02.003
  • Goodey, R. J., Brown, C. J., & Rotter, J. M. (2005). Prediction patterns of filling pressures in thin-walled square silos. Engineering Structures, 28, 109–119.
  • Guaita, M., Couto, A., & Ayuga, F. (2003). Numerical simulation of wall pressure during discharge of granular material from cylindrical silos with eccentric hoppers. Biosystems Engineering, 85, 101–109.10.1016/S1537-5110(03)00037-0
  • Guines, D., Ragneau, E., & Kerour, B. (2001). 3D finite-element simulation of a square silo with flexible walls. Journal of Engineering Mechanics, 127, 1051–1057.10.1061/(ASCE)0733-9399(2001)127:10(1051)
  • Häußler, U., & Eibl, J. (1984). Numerical investigations on discharging silos. Journal of Engineering Mechanics, 110, 957–971.
  • Iwicki, P., Wójcik, M., & Tejchman, J. (2011). Failure of cylindrical steel silos composed of corrugated sheets and columns and repair methods using a sensitivity analysis. Engineering Failure Analysis, 18, 2064–2083.10.1016/j.engfailanal.2011.06.013
  • Jofriet, J. C., Lelievre, B., & Fwa, T. F. (1977). Friction model for finite element analyses of silos. Transactions of the ASAE, 20, 0735–0740.10.13031/2013.35638
  • Mahmoud, M. H. (1975). Silage–silo interaction using material characterization and finite element analysis ( PhD. thesis). Departement of civil engineering, Ohio State University, Columbus.
  • Martínez, M. A., Alfaro, I., & Doblaré, M. (2002). Simulation of axisymmetric discharging in metallic silos. Analysis of the induced pressure distribution and comparison with different standards. Engineering Structures, 24, 1561–1574.10.1016/S0141-0296(02)00100-1
  • Moya, M., Ayuga, F., Guaita, M., & Aguado, P. (2002). Mechanical properties of granular agricultural materials. Transactions of the ASAE, 45, 1569–1577.
  • Moya, M., Guaita, M., Aguado, P., & Ayuga, F. (2006). Mechanical properties of granular agricultural materials, part2. Transactions of the ASABE, 49, 479–489.10.13031/2013.20403
  • Nguyen, D. T., Limam, A., Georgin, J. F., Reynouard, J. M., & Dauffer, D. (2005). Characterisation and qualification of reinforcement by composite of the RC slabs (Vol. 1, pp. 211–218). Third International Conference on Composites in Construction, Lyon, France.
  • Piskoty, G., Michel, S. A., & Zgraggen, M. (2005). Bursting of a corn silo – An interdisciplinary failure analysis. Engineering Failure Analysis, 12, 915–929.10.1016/j.engfailanal.2005.02.002
  • Rombach, G., & Eibl, J. (1995). Granular flow of materials in silos. Numerical Results. Bulk Solids Handling, 15, 65–70.
  • Rotter, J. M., Brown, C. J., & Lahlouh, E. H. (2002). Patterns of wall pressure on filling a square planform steel silo. Engineering Structures, 24, 135–150.10.1016/S0141-0296(01)00109-2
  • Sadowski, A. J., & Michael Rotter, J. (2013). Exploration of novel geometric imperfection forms in buckling failures of thin-walled metal silos under eccentric discharge. International Journal of Solids and Structures, 50, 781–794.10.1016/j.ijsolstr.2012.11.017
  • Susila, E., & Hryciw, R. D. (2003). Large displacement FEM modelling of the cone penetration test (CPT) in normally consolidated sand. International Journal for Numerical and Analytical Methods in Geomechanics, 27, 585–602.10.1002/(ISSN)1096-9853
  • Teng, J. G., & Hu, Y. M. (2007). Behaviour of FRP-jacketed circular steel tubes and cylindrical shells under axial compression. Construction and Building Materials, 21, 827–838.10.1016/j.conbuildmat.2006.06.016
  • Teng, J. G., Yu, T., & Fernando, D. (2012). Strengthening of steel structures with fiber-reinforced polymer composites. Journal of Constructional Steel Research, 78, 131–143.10.1016/j.jcsr.2012.06.011
  • Vidal, P., Gallego, E., Guaita, M., & Ayuga, F. (2006). Simulation of the filling pressures of cylindrical steel silos with concentric and eccentric hoppers using 3-dimensional finite element models. Transactions of the ASABE, 49, 1881–1895.10.13031/2013.22290
  • Vidal, P., Gallego, E., Guaita, M., & Ayuga, F. (2008). Finite element analysis under different boundary conditions of the filling of cylindrical steel silos having an eccentric hopper. Journal of Constructional Steel Research, 64, 480–492.10.1016/j.jcsr.2007.08.005
  • Wensrich, C. (2002). Selected case studies on the silo quaking problem. Bulk Solids Handling, 22, 117–122.
  • Wilde, K., Tejchman, J., Rucka, M., & Niedostatkiewicz, M. (2010). Experimental and theoretical investigations of silo music. Powder Technology, 198, 38–48.10.1016/j.powtec.2009.10.012
  • Wójcik, M., Tejchman, J., & Enstad, G. G. (2012). Confined granular flow in silos with inserts – Full-scale experiments. Powder Technology, 222, 15–36.10.1016/j.powtec.2012.01.031
  • Zhelyazov, T. (2008). Renforcement des structures en béton armé par collage de matériaux composites, comportement mécanique des structures sollicitées à la flexion  [Strengthening of reinforced concrete structures by bonding of composite materials, mechanical behavior of structures subjected to bending] ( Thèse de doctorat). Université de Reims Champagne Ardenne, France.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.