References
- Ganji, V., Gucunski, N. and Nazarian, S. (1998), "An automated inversion procedure for spectral analysis of surface waves", J.Geotech. Geoenviron., 124(8), 757-780. https://doi.org/10.1061/(ASCE)1090-0241(1998)124:8(757)
- Gucunski, N., Maher, A., Ghasemi, H. and F. Ibrahim (2012), "Segmentation and condition rating of concrete bridge decks using NDE for more objective inspection and rehabilitation planning", Proceedings of the 6th Intl. Conference on Bridge Maintenance, Safety and Management-IABMAS 2012, Stresa, Lake Maggiore, Italy, July 8-12, on CD.
- Nazarian, S., Stokoe, K.H., II and Hudson, W.R. (1983), Use of spectral analysis of surface waves method for determination of moduli and thicknesses of pavement systems, Transportation Research Record, No. 930, National Research Council, Washington, D.C.
- Nazarian, S., Baker, M.R. and K. Crain (1993), Development and Testing of a Seismic Pavement Analyzer. Report SHRP-H-375, Strategic Highway Research Program, NRC, Washington, D.C.
- Papadakis, V.G. (2013), "Service life prediction of a reinforced concrete bridge exposed to chloride induced deterioration", Adv. Concr. Constr., 1(3), 201-213. https://doi.org/10.12989/acc2013.1.3.201
- Sansalone, M.J. (1993), "Detecting delaminations in concrete bridge decks with and without asphalt overlays using an automated impact-echo field system", NDT in Civil Engineering, Proceedings of the Intl. Conference of British Institute of Non-Destructive Testing, Liverpool, U.K., April 14-16.
- White, J., Hurlebaus, S., Shokouhi, P., Wittwer, A. and A. Wimsatt (2014), "Noncontact techniques for monitoring of tunnel linings", Struct. Monit. Maint., 1(2), 197-211. https://doi.org/10.12989/SMM.2014.1.2.197
- Whiting, D.A. and Nagi, M.A. (Eds.) (2003), Electrical Resistivity of Concrete - A Literature Review, PCA R&D Serial No. 2457, PCA, Skokie, Illinois, USA.
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