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Determination of the Effect of Sidewall Friction in Reinforced Soil Retaining Wall Experiments


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Bransby P. L., Smith I. (1975) Side Friction in Model Retaining-Wall Experiments, Journal of Geotechnical and Geoenvironmental Engineering, ASCE, 101, GT7, 1975, 615–632, DOI:10.1016/0148-9062(75)90327-7.10.1016/0148-9062(75)90327-7 Search in Google Scholar

Bathurst R. J., Benjamin D. J. (1987) Preliminary Assessment of Sidewall Friction on Large-Scale Wall Models in the RMC Test Facility, The Application of Polymeric Reinforcement in Soil Retaining Structures, NATO Advanced Study Institutes Series, Kluwer Academic Publishers, 1987, 181–192.10.1007/978-94-009-1405-6_6 Search in Google Scholar

Bathurst R. J., Jarrett P. M. (1986) Class A Prediction Exercise for Reinforced Earth Walls, Bulletin No. 1 for NATO Advanced Research Workshop, Application of Polymeric Reinforcementn Soil Retaining Structures, Departments of Civil Engineering, RMC and the University of Strathclyde. Search in Google Scholar

Fang Y., Chen T., Holtz R. D., Lee W. F. (2004) Reduction of boundary friction in model tests, ASTM Geotechnical Testing Journal, 27 (1), 3–13. DOI: 10.1520/GTJ10812.10.1520/GTJ10812 Search in Google Scholar

Jayasree P. K., Rajagopal K., Gnanendran C. T. (2012) Influence of sidewall friction on the results of small-scale laboratory model tests: Numerical Assessment, International Journal of Geomechanics, 12, 119–126. DOI: 10.1061/(ASCE)GM.1943-5622.0000120.10.1061/(ASCE)GM.1943-5622.0000120 Search in Google Scholar

Jewell R. A. (1988) Analysis and Predicted Behaviour for the Royal Military College Trial Wall, [In:] Jarrett P. M., McGown A. (eds.) The Application of Polymeric Reinforcement in Soil Retaining Structures, NATO ASI Series (Series E: Applied Sciences), vol. 147, Springer, Dordrecht. DOI: 10.1007/978-94-009-1405-6−7.10.1007/978-94-009-1405-6 Search in Google Scholar

Lambe T. W., Whitman R. V. (1979) Soil Mechanics, SI version, John Wiley and Sons, Inc. Search in Google Scholar

Lesniewska D., Wood D. M. (2009) Observations of stresses and strains in a granular material, Journal of Engineering Mechanics, 135 (9), 1038–1054.10.1061/(ASCE)EM.1943-7889.0000015 Search in Google Scholar

Niedostatkiewicz M., Lesniewska D., Tejchman J. (2011) Experimental analysis of shear zone patterns in cohesionless for earth pressure problems using particle image velocimetry, Strain, 47 (12), 218–231.10.1111/j.1475-1305.2010.00761.x Search in Google Scholar

Sawicki A. (2000) Mechanics of Reinforced Soil, A.A. Balkema, Rotterdam/Brookfield, DOI: 10.1201/9781003211303.10.1201/9781003211303 Search in Google Scholar

Stanier S. A., Blaber J., Take W. A., White D. J. (2016) Improved image-based deformation measurement for geotechnical applications, Can. Geotech. J., 53, 727–739, DOI: 10.1139/cgj-2015-0253.10.1139/cgj-2015-0253 Search in Google Scholar

Tatsuoka F., Haibara O. (1985) Shear Resistance Between Sand and Smooth or Lubricated Surfaces, Soils and Foundations, 25 (1), 89–98, DOI: 10.3208/sandf1972.25.89.10.3208/sandf1972.25.89 Search in Google Scholar

Tatsuoka F. Molenkamp F., Torii T., Hino T. (1984) Behavior of lubrication layers of platens in element tests, Soils and Foundations, 24 (1), 113–128.10.3208/sandf1972.24.113 Search in Google Scholar

Tsubakihara Y., Kishida H., Nishiyama T. (1993) Friction between Cohesive Soils and Steel, Soils and Foundations, 33 (2), 145–156, DOI: 10.3208/sandf1972.33.2−145. Search in Google Scholar

Tsubakihara Y., Kishida H. (1993) Frictional behaviour between normally consolidated clay and steel by two direct shear type apparatuses, Soils and Foundations, 33 (2), 1–13. DOI: 10.3208/sandf1972.33.2−1. Search in Google Scholar

Vieira C. S., Lopes M. L., Caldeira L. M. (2013) Sand-geotextile interface characterization through monotonic and cyclic direct shear tests, Geosynthetics International, 20 (1), 26–38, DOI: 10.1680/gein.12.00037.10.1680/gein.12.00037 Search in Google Scholar

White D. J., Take W. A., Bolton M. D. (2003) Soil deformation measurement using particle image velocimetry (PIV) and photogrammetry, Geotechnique, 53 (7), 619–631, DOI: 10.1680/geot.2003.53.7.619.10.1680/geot.2003.53.7.619 Search in Google Scholar

Yoshimi Y., Kishida, T. (1981) A Ring Torsion Apparatus for Evaluating Friction Between Soil and Metal Surfaces, Geotechnical Testing Journal, GTJ10783J, 4 (4), 145–152, DOI: 10.1520/GTJ10783J.10.1520/GTJ10783J Search in Google Scholar

Zheng J., Li L., Daviault M. (2021) Experimental Study on the Effectiveness of Lubricants in Reducing Sidewall Friction, International Journal of Geomechanics, 21 (5), 10 pp., DOI: 10.1061/(ASCE)GM.1943-5622.0002003.10.1061/(ASCE)GM.1943-5622.0002003 Search in Google Scholar

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