Full-scale experiments on wheat flow in steel silo composed of corrugated walls and columns - Publication - Bridge of Knowledge

Search

Full-scale experiments on wheat flow in steel silo composed of corrugated walls and columns

Abstract

Artykuł omawia wyniki doświadczalne w dużej skali odnośnie przepływu pszenicy w stalowym silosie wykonanym z blachy falistej i słupów. Pomierzono napory poziome i pionowe na ścianie oraz siły pionowe w słupach. Zbadano rodzaj przepływu w zależności od położenia wylotu. Wyniki naporów porównano z Eurokodem.

Citations

  • 2 4

    CrossRef

  • 0

    Web of Science

  • 2 7

    Scopus

Cite as

Full text

download paper
downloaded 204 times
Publication version
Accepted or Published Version
License
Creative Commons: CC-BY-NC-ND open in new tab

Keywords

Details

Category:
Articles
Type:
artykuł w czasopiśmie wyróżnionym w JCR
Published in:
POWDER TECHNOLOGY pages 537 - 555,
ISSN: 0032-5910
Language:
English
Publication year:
2017
Bibliographic description:
Wójcik M., Sondej M., Rejowski K., Tejchman-Konarzewski A.: Full-scale experiments on wheat flow in steel silo composed of corrugated walls and columns// POWDER TECHNOLOGY. -, nr. 311 (2017), s.537-555
DOI:
Digital Object Identifier (open in new tab) 10.1016/j.powtec.2017.01.066
Bibliography: test
  1. A.W. Jenike, Storage and flow bulk of solids, Eng. Exp. Station Bull. No 123, Univer- sity Utah, 1964. open in new tab
  2. J. Schwedes, Fließverhalten von Schüttgütern in Bunkern, Verlag Chemie, Wein- heim/Bergstraße, 1970. open in new tab
  3. N. Fayed, L. Otten, Handbook of Powder Science and Technology, Chapmann and Hall, 1984. open in new tab
  4. S.S. Safarian, E.C. Harris, Design and Construction of Silos and Bunkers, Van Nostrand Reinhold Company, 1985. open in new tab
  5. E. Hampe, Silos, VEB Verlag für Bauwerke, Berlin, 1987.
  6. C.J. Brown, J. Nielsen, Silos -Fundamentals of Theory, Behaviour and Design, E and FN Spon, 1998. open in new tab
  7. M. Rotter, Guide for the Economic Design of Circular Metal Silos, Spon Press, 2001. open in new tab
  8. J. Ravenet, Silo problems, Bulk Solids Handl. 1 (4) (1981) 667-679. open in new tab
  9. J.W. Carson, Silo failures: case histories and lessons learned, Proc. 3rd Israeli Conf. for Conveying and Handling of Particulate Solids, Dead Sea, Israel, 1, 2000, pp. 1-4. open in new tab
  10. A. Dogangun, Z. Karaca, A. Durmus, M. Halil Sezen, Cause of damage and failures in silo structures, J. Perform. Constr. Facil. ASCE 23 (2) (2009) 65-71. open in new tab
  11. J. Tejchman, Confined Granular Flow in Silos -Experiments and Numerical Investi- gations, Springer, Berlin-Heidelberg, 2013. open in new tab
  12. J. Tejchman, FE modeling of shear localization in granular bodies with micro-polar hypoplasticity, Springer Series in Geomechanics and Geoengineering, Berlin- Heidelberg, 2008. open in new tab
  13. P. Iwicki, M. Wójcik, J. Tejchman, Failure of cylindrical steel silos composed of corru- gated sheets and columns and repair methods using a sensitivity analysis, Eng. Fail. Anal. 18 (2011) 2064-2083. open in new tab
  14. P. Iwicki, M. Sondej, J. Tejchman, Application of linear buckling sensitivity analysis to economic design of cylindrical steel silos composed of corrugated sheets and col- umns, Eng. Fail. Anal. 70 (2016) 105-121. open in new tab
  15. M. Wójcik, J. Tejchman, Simulation of buckling process of cylindrical metal silos with flat sheets containing bulk solids, Thin-Walled Struct. 93 (2015) 122-136. open in new tab
  16. N. Kuczyńska, M. Wójcik, J. Tejchman, Effect of bulk solid on strength of cylindrical corrugated silos during filling, J. Constr. Steel Res. 115 (2015) 1-17. open in new tab
  17. V. Askegaard, J. Munch-Andersen, Results from tests with normal and shear stress cells in a medium-scale model silo, Powder Technol. 44 (1985) 151-157. open in new tab
  18. J.Y. Ooi, L. Pham, J.M. Rotter, Systematic and random features of measured pressures on full-scale silo walls, Eng. Struct. 12 (1990) 74-87. open in new tab
  19. C.J. Brown, E.H. Lahlouh, J.M. Rotter, Experiments on a square platform steel silo, Chem. Eng. Sci. 55 (2000) 4399-4413. open in new tab
  20. Z. Zhong, J.Y. Ooi, J.M. Rotter, The sensitivity of silo flow and wall stresses to filling method, Eng. Struct. 23 (2001) 756-767. open in new tab
  21. F. Ayuga, M. Guaita, P. Aguado, Static and dynamic silo loads using finite element models, J. Agric. Eng. Res. 78 (3) (2001) 299-308. open in new tab
  22. J.M. Rotter, C.J. Brown, E.H. Lahlouh, Patterns of wall pressure on filling a square planform steel silo, Eng. Struct. 24 (2002) 135-150. open in new tab
  23. M. Molenda, M.D. Montross, J. Horabik, Non-axial stress state in a model silo generated by eccentric filling and internal inserts, Part. Part. Syst. Charact. 24 (2007) 291-295. open in new tab
  24. J.F. Chen, J.M. Rotter, J.Y. Ooi, Z. Zhong, Correlation between the flow pattern and wall pressures in a full scale experimental silo, Eng. Struct. 29 (2007) 2308-2320. open in new tab
  25. J. Härtl, J.Y. Ooi, J.M. Rotter, M. Wójcik, S. Ding, G.G. Enstad, The influence of a cone- in-cone insert on flow pattern and wall pressure in a full-scale silo, Chem. Eng. Res. Des. 86 (2008) 370-378. open in new tab
  26. A. Ramirez, J. Nielsen, F. Ayuga, Pressure measurements in steel silos with eccentric hoppers, Powder Technol. 201 (2010) 7-20. open in new tab
  27. S. Ding, J.M. Rotter, J.Y. Ooi, G. Enstad, Development of normal pressure and friction- al traction along the walls of a steep conical hopper during filling, Thin-Walled Struct. 49 (2011) 1246-1250. open in new tab
  28. M. Wójcik, J. Tejchman, G.G. Enstad, Confined granular flow in silos with inserts - full-scale experiments, Powder Technol. 222 (2012) 15-36. open in new tab
  29. A. Couto, A. Ruiz, L. Herráez, J. Moran, P.J. Aguado, 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, Comput. Electron. Agric. 96 (2013) 40-56. open in new tab
  30. P. Iwicki, K. Rejowski, J. Tejchman, Stability of cylindrical steel silos composed of cor- rugated sheets and columns based on FE analyses versus Eurocode 3 approach, Eng. Fail. Anal. 57 (2015) 444-469. open in new tab
  31. M. Sondej, P. Iwicki, J. Tejchman, M. Wójcik, Critical assessment of Eurocode ap- proach to stability of metal cylindrical silos with corrugated walls and vertical stiff- eners, Thin-Walled Struct. 95 (2015) 335-346. open in new tab
  32. M. Sondej, P. Iwicki, M. Wójcik, J. Tejchman, Stability analyses of a cylindrical steel silo with corrugated sheets and columns, Steel Compos. Struct. 20 (1) (2016) 147-166. open in new tab
  33. EN 1991-4, Eurocode 1: actions on structures. Part 4: silos and tanks, General Prin- ciples and Actions for the Structural Design of Tanks and Silos, 2006. open in new tab
  34. M. Wójcik, J. Tejchman, Modeling of shear localization during confined granular flow in silos within non-local hypoplasticity, Powder Technol. 192 (2009) 298-310. open in new tab
  35. A. Ramírez, J. Nielsen, F. Ayuga, On the use of plate-type normal pressure cells in silos: part 1: calibration and evaluation, Comput. Electron. Agric. 71 (1) (2010) 71-76. open in new tab
  36. A. Ramírez, J. Nielsen, F. Ayuga, On the use of plate-type normal pressure cells in silos: part 2: validation for pressure measurements, Comput. Electron. Agric. 71 (1) (2010) 64-70. open in new tab
Verified by:
Gdańsk University of Technology

seen 177 times

Recommended for you

Meta Tags