Ground-penetrating radar calibration at the Virginia Smart Road and signal analysis to improve prediction of flexible pavement layer thicknesses

Ground-penetrating radar calibration at the V ...
Imad L. Al-Qadi, Imad L. Al-Qa ...
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Last edited by MARC Bot
December 12, 2020 | History

Ground-penetrating radar calibration at the Virginia Smart Road and signal analysis to improve prediction of flexible pavement layer thicknesses

A ground-penetrating radar (GPR) system was used to collect data over the different pavement sections of the Virginia Smart Road from June 1999 until December 2002. Three antennae at different frequencies were used for this research. The collected data were successfully used to evaluate the physical GPR detection limitations, to evaluate the GPR accuracy for pavement layer thickness determination, to control the installation of three different types of reinforcing meshes installed within the pavement, and to estimate the in-situ complex dielectric constant of several types of hot-mix asphalt (HMA). The data analysis results were verified by the well-documented structure and composition of each section of the road, in addition to the embedment of 35 copper plates (perfect electromagnetic reflectors) at the different layer interfaces during construction of the pavement. It was found that GPR is a feasible nondestructive tool to estimate the layer thicknesses of bound and unbound aggregate layers, HMA layers, and concrete slabs. However, interface detection can be altered if the layers have comparable dielectric constants. A technique was developed to estimate the frequency-dependent in-situ complex dielectric constant of HMA materials. Results have shown that the effect of the variations of the dielectric properties within the GPR bandwidth is insignificant vis-à-vis the accuracy of thickness estimation. The use of GPR as a quality control tool to verify the success of steel reinforcing mesh installation was also found to be feasible. Given the success of using GPR for the aforementioned applications in the Virginia Smart Road, it is recommended that the Virginia Department of Transportation use GPR more frequently as a quality control tool during new pavement construction projects and as an assessment tool prior to project rehabilitation and as part of Virginia's pavement management system.

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Book Details


Edition Notes

Includes bibliographical references.
Project managers: Thomas E. Freeman, Kevin K. McGhee.
"January 2005."
Performed by Virginia Tech Transportation Institute for Virginia Department of Transportation and U.S. Federal Highway Administration under contract no. 53879
Also available online (Adobe Acrobat Reader required) via the Virginia Transportation Research Council website http://www.virginiadot.org/vtrc/main/index%5Fmain.htm.
Final contract report; June 1999-June 2004.

Published in
Charlottesville, Va, [Springfield, Va
Series
VTRC ;, 05-CR7, VTRC (Series) ;, 05-CR7.

Classifications

Dewey Decimal Class
625.8028/7
Library of Congress
TE250 .A45 2005

The Physical Object

Pagination
iii, 62 p. :
Number of pages
62

ID Numbers

Open Library
OL3459894M
LCCN
2005410207
OCLC/WorldCat
57488351

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History

Download catalog record: RDF / JSON
December 12, 2020 Edited by MARC Bot import existing book
December 5, 2010 Edited by Open Library Bot Added subjects from MARC records.
December 10, 2009 Created by WorkBot add works page