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Research Article

A proposed correlation between dynamic and static plate load test moduli for gravelly soils

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Pages 139-151 | Received 18 Nov 2023, Accepted 09 Jan 2024, Published online: 27 Jan 2024

References

  • Meehan CL, Tehrani FS, Vahedifard F. A comparison of density-based and modulus-based in situ test measurements for compaction control. Geotech Test J. 2012;35(3):387–399. doi: 10.1520/GTJ103479
  • American Society for Testing and Materials (ASTM E2835). Standard test method for measuring deflections using a portable impulse plate load test device. In: Annual book of ASTM standards, ASTM E2835. West Conshohocken, PA: ASTM; 2011.
  • Mooney MA, Miller PK. Analysis of lightweight deflectometer test based on in situ stress and strain response. J Geotech Geoenviron Eng. 2009;135(2):199–208. doi: 10.1061/(ASCE)1090-0241(2009)135:2(199)
  • Wieder W, Shoop S, Barna L, et al. Comparison of soil strength measurements of agricultural soils in Nebraska. J Terramechanics. 2022;77:31–48.
  • Senseney CT, Grasmick J, Mooney MA. Sensitivity of lightweight deflectometer deflections to layer stiffness via finite element analysis. Can Geotech J. 2015;52(7):961–970. doi: 10.1139/cgj-2014-0040
  • TERRATEST 4000. Instruction manual for light weight deflectometer for dynamic plate load test. Oranienburg, Germany: TERRATEST GMBH; 2014.
  • Nazzal MD, Abu-Farsakh MY, Alshibli K, et al. Evaluating the light falling weight deflectometer device for in situ measurement of elastic modulus of pavement layers. Article Transport Res Rec. 2007;2016(1):13–22. doi: 10.3141/2016-02
  • Kim JR, Kang HB, Kim D, et al. Evaluation of in situ modulus of compacted subgrades using portable falling weight deflectometer and plate-bearing load test. J Mater Civ Eng. 2007;19(6):492–499. doi: 10.1061/(ASCE)0899-1561(2007)19:6(492)
  • Abdulkareem AH. Evaluating LFWD testing for characterizing subgrade layers using regression analysis and artificial neural network model. Iraqi J Civil Engg. 2017;11(1):21–31. doi: 10.37650/ijce.2017.133749
  • Pasetto M, Pasquini E, Giacomello G, et al. Proposal of correlation among. 2018. doi: 10.3390/ma11040515
  • Chen C, Zheng JL. Relationship between dynamic modulus and static detection index in red sandstone subgrade. Appl Mech Mater. 2013;353-356:1112–1115. https://www.scientific.net/AMM.353-356.1112
  • Adam C, Paulmichl I. Computational assessment of the dynamic load plate test with the light falling weight device. In Proceedings of ECCOMAS Thematic Conference on Computational Methods in Structural Dynamics and Earthquake Engineering; 2007 June 13–15; Greece. p. 12.
  • Adam C, Adam D, Kopf F, et al. Computation Validation Static dynamic plate load testing. Acta Geotechnical. 2009;4(1):35–55.
  • Austrian standard RVS 08.03.04. Compaction tests by means of the dynamic plate load test. Vienna: Austrian Research Association Road Rail Traffic (FSV); 2008.
  • ASTM D-2487. Standard practice for classification of soils for engineering purposes (Unified Soil Classification System). United States: ASTM International; 2000.
  • Abdel-Fattah T. Employment of reliability analysis to assess soil strength partial factors for slope stability problems. Proceedings of International Conference on Advances in Structural and Geotechnical Engineering; 2017.