Estimation of tensile strains at the bottom of asphalt concrete layers under wheel loading using deflection basins from falling weight deflectometer tests

Author:

Bilodeau Jean-Pascal1,Doré Guy1

Affiliation:

1. Civil Engineering Department, Université Laval, Quebec, QC G1V 0A6, Canada.

Abstract

The falling weight deflectometer is a pavement analysis tool that is now widely used in the pavement engineering field. Using the backcalculation process and the measured deflection basin, the layers moduli can be determined and a mechanistic analysis of the pavement can be made. A new approach is proposed to bypass the necessity of the backcalculation by allowing a direct estimation of the tensile strain at the bottom of asphalt concrete using the deflection basin. A model based on a finite element theoretical pavement analysis is proposed for this purpose. Complementary models have been developed to use the proposed models without having to determine the layers moduli. The proposed model to estimate the tensile strain at the bottom of the asphalt concrete layers is validated and calibrated using data obtained on an instrumented experimental site.

Publisher

Canadian Science Publishing

Subject

General Environmental Science,Civil and Structural Engineering

Reference20 articles.

1. Asphalt Institute. 1991. Thickness design-asphalt pavements for highways and streets. Ninth edition, Asphalt Institute, Manual Series No. 1 (M.S.1).

2. The General Theory of Stresses and Displacements in Layered Systems. I

3. Use of falling weight deflectometer time history data for the analysis of seasonal variation in pavement response

4. Doré, G., and Zubeck, H. 2009. Cold regions pavement engineering. McGraw-Hill, N.Y.

5. Doré, G., Fachon, J., and Grellet, D. 2009. Étude de l’incidence des systèmes de contrôle de gonflement des pneus (SCGP) sur l’interaction véhicule-route. Research report for the Transportation Association of Canada (TP 14950F), Laval University, Civil Engineering Department, Québec, 76 p.

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