221
Views
2
CrossRef citations to date
0
Altmetric
Research Article

Experimental study on shear strength parameters of municipal solid waste employing a large direct shear apparatus

, &
Pages 1184-1199 | Received 01 Aug 2020, Accepted 07 May 2021, Published online: 27 May 2021

References

  • Abreu, A.E.S. and Vilar, O.M., 2017. Influence of composition and degradation on the shear strength of municipal solid waste. Waste Management, 68 (10), 263–274. doi:10.1016/j.wasman.2017.05.038
  • Anagnostopoulos, C.A., Tzetzis, D., and Berketis, K., 2013. Shear strength behaviour of polypropylene fibre reinforced cohesive soils. Geomechanics and Geoengineering: An International Journal. doi:10.1080/17486025.2013.804213
  • ASTM, 2004. Standard test method for direct shear test of soils under consolidated-drained conditions. D3080-03. West Conshohoken, PA: ASTM, 19428–2959.
  • Bardet, J.P., 1997. Experimental soil mechanics. Lebanon, IN: Prentice Hall. ISBN: 0133749355.
  • Bareither, C.A., et al., 2020. Hydraulic and mechanical behavior of municipal solid waste and high-moisture waste mixtures. Waste Management, 105, 540–549. doi:10.1016/j.wasman.2020.02.030
  • Bareither, C.A., Benson, C.H., and Edil, T.B., 2012. Effects of waste composition and decomposition on the shear strength of municipal solid waste. Journal of Geotechnical and Geoenvironmental Engineering, 138 (10), 1161–1174. doi:10.1061/(ASCE)GT.1943-5606.0000702
  • Bray, J.D., et al., 2009. Shear strength of municipal solid waste. Journal of Geotechnical and Geoenvironmental Engineering, 135 (6), 709–722. doi:10.1061/(ASCE)GT.1943-5606.0000063
  • Caicedo, B., et al., 2002b. Geomechanical properties of municipal solid waste in Doña Juana sanitary landfill. In: Proceedings of the 4th International Congress on Environmental Geotechnics (4th ICEG), Rio de Janeiro, 1, 177–182.
  • Cornforth, D.H., 2005. Landslides in practice: investigation, analysis, and remedial/preventive options in soils. Hoboken, NJ: Wiley and sons. ISBN: 978-0-471-67816-8.
  • Dixon, N. and Langer, U., 2006. Development of a MSW classification system for the evaluation of mechanical properties. Waste Management, 26 (3), 220–232. doi:10.1016/j.wasman.2005.02.018
  • Dołżyk-Szypcio, K., 2019. Direct shear test for coarse granular soil. International Journal of Civil Engineering, 17, 1871–1878. doi:10.1007/s40999-019-00417-2
  • Edincliler, A., Benson, C.H., and Edil, T.B., 1996. Shear strength of municipal solid waste. Interim Report – Year 1. Department of Civil and Environmental Engineering, University of Wisconsin, Madison, Wisc. Environmental Geotechnics Report 96-2.
  • Eid, H.T., et al., 2000. MSW slope failure; I: waste and foundation properties. Journal of Geotechnical and Geoenvironmental Engineering, 126 (5), 397–407. doi:10.1061/(ASCE)1090-0241(2000)126:5(397)
  • Gabr, M.A. and Valero, S.N., 1995. Geotechnical properties of municipal solid waste. ASTM Geotechnical Testing Journal (GTJODJ), 18 (2), 241–251. doi:10.1520/GTJ10324J
  • Gotteland, P., et al., 2000. On site determination of geomechanical characteristics of waste. In: International Conference on Geotechnical and Geological Engineering, Melbourne, Australia, ICMS, (CD).
  • Gotteland, P., Lemarechal, D., and Richard, P., 1995. Analysis and monitoring of the stability of a domestic waste landfill. In: 5th International Landfill Symposium, S. Margherita di Pula, Cagliari, Italy, 777–787.
  • Houston, W.N., et al., 1995. In situ testing methods for dynamic properties of MSW landfills. Geotechnical Special Publication, ASCE, 54, 73–82.
  • Jones, R., Taylor, D., and Dixon, N., 1997. Shear strength of waste and its use in landfill stability analysis. In: Proceedings of the Conference on Geo-environmental Engineering, University of Wales, Cardiff, 343–350.
  • Kavazanjian, E., et al., 1995. Evaluation of MSW properties for seismic analysis. Geotechnical Special Publication, ASCE, 46, 1126–1141.
  • Kavazanjian, E., 2001. Mechanical properties of MSW. In: 8th International Waste Management and Landfill Symposium, S. Margherita di Pula, Cagliari, Italy, 415–424.
  • Kavazanjian, E.J., Matasovic, N., and Bachus, R.C., 1999. Large-diameter static and cyclic aboratory testing of municipal solid waste. In: 7th International Landfill Symposium, S. Margherita di Pula, Cagliari, Italy, 437–444.
  • Kölsch, F., 1996. Der Einfluss der faserbestandteile auf die scherfestigkeit von siedlungsabfall (The influence of fibrous constituents on shear strength of municipal solid waste). Ph.D. Thesis, Technische Universität Braunschweig, Brauschweig, Germany (in German).
  • Landva, A.O. and Clark, J.I., 1990. Geotechnics of waste fills. Geotechnics of Waste Fills–Theory and Practice, 1070, 86–106. ASTM STP.
  • Landva, A.O., Weisner, W.R., and Burwash, W.J., 1984. Geotechnical engineering and refuse landfills. In: Proceedings of the 6th National Conference on Waste management in Canada, Vancouver.
  • Lavigne, F., et al., 2014. The 21 February 2005, catastrophic waste avalanche at Leuwigajah dumpsite, Bandung, Indonesia. Geoenvironmental Disasters, 2014, 1–10. doi:10.1186/s40677-014-0010-5
  • Liaqat, A., Sarfraz, A., and Ammar, M., 2009. Large direct shear test apparatus for In situ testing of municipal solid waste landfill sites. In: GeoHunan International Conference, geotechnical special publication, Hunan, China, 189, 86–91.
  • Machado, S.L., et al., 2010. Evaluation of the geotechnical properties of MSW in two Brazilian landfills. Waste Management, 30 (12), 2579–2591. doi:10.1016/j.wasman.2010.07.019
  • Manassero, M., Van Impe, W.F., and Bouazza, A., 1997. Waste disposal and containment. In: Proceedings of the 2nd International Congress on Environmental Geotechnics, Osaka, 3, 1425–1474.
  • Mirzababaei, M., et al., 2017. Shear strength of a fibre-reinforced clay at large shear displacement when subjected to different stress histories. Waste Management, 45, 422–429.
  • Pulat, H.F. and Yukselen-Aksoy, Y., 2019. Compressibility and shear strength behavior of fresh and aged municipal solid wastes. Environmental Geotechnics, 1–9. doi:10.1680/jenge.18.00019
  • Reddy, K., et al., 2008. Geotechnical properties of fresh municipal solid waste at Orchard Hills landfill, USA. Waste Management, 29 (2), 952–959. doi:10.1016/j.wasman.2008.05.011
  • Shariatmadari, N., Sadeghpour, H., and Razaghian, F., 2014. Effects of aging on shear strength behavior of municipal solid waste. International Journal of Civil Engineering, 12 (3), 292–303.
  • Siegel, R.A., Robertson, R.J., and Anderson, D.G., 1990. Slope stability investigations at a landfill in Southern California. In: Proceedings of the Symposium on Geotechnics of Waste Fills – Theory and Practice, Pittsburg, 10-13 September 1989. Publ. Philadelphia: ASTM, (ASTM STP 1070), 259–284.
  • Singh, M.K., 2008. Characterization of stress-deformation behaviour of municipal solid waste. PhD thesis, University of Saskatchewan, Canada.
  • Stark, T.D., Huvaj-Sarihan, N., and Li, G., 2009. Shear strength of municipal solid waste for stability analyses. Environmental Geology, 57(8), 1911–1923.
  • Thomas, S., et al., 1999. An in situ waste mechanical experimentation on a French landfill. In: 7th International Landfill Symposium, CISA, S. Margherita di Pula, Cagliari, Italy, 445–452.
  • Van Impe, W.F. and Bouazza, A., 1998. Large shear test on compacted bales of municipal solid wastes. Journal of Soils and Foundations, 38, 199–200. doi:10.3208/sandf.38.3_199
  • Vilar, O.M. and Carvalho, M.F., 2004. Mechanical properties of municipal solid waste. Journal of Testing and Evaluation. ASTM, 32 (6), 1–12.
  • Wong, W.W.Y., 2009. Investigation of the geotechnical properties of municipal solid waste as a function of placement conditions. PhD Thesis. California Technology State University, USA.
  • Xu, W., Xu, Q., and Rui-Lin, H., 2011. Study on the shear strength of soil–rock mixture by large scale direct shear test. International Journal of Rock Mechanics and Mining Sciences, 48 (8), 1235–1247. doi:10.1016/j.ijrmms.2011.09.018
  • Yesiller, N., et al., 2014. Determination of specific gravity of municipal solid waste. Waste Management, 34 (5), 848–858. doi:10.1016/j.wasman.2014.02.002
  • Zekkos (Zeccos), D.P., 2005. Evaluation of static and dynamic properties of municipal solid waste. Dissertation submitted in partial fulfillment of the requirements for the degree of Doctor of Philosophy. Department of Civil and Environmental Engineering, University of California, Berkeley.
  • Zekkos, D., et al., 2006. Unit weight of municipal solid waste. Journal of Geotechnical and Geoenvironmental Engineering, 132 (10), 1250–1261. doi:10.1061/(ASCE)1090-0241(2006)132:10(1250)
  • Zekkos, D., et al., 2010. Large-scale direct shear testing of municipal solid waste. Waste Management, 30, 1544–1555. doi:10.1016/j.wasman.2010.01.024
  • Zekkos, D., Grizi, A., and Athanasopoulos, G., 2013. Experimental investigation of the effect of fibrous reinforcement on shear resistance of soil-waste mixtures. Geotechnical Testing Journal (GTJOAD), 36 (6), 867–881.

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.