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2016 | OriginalPaper | Buchkapitel

Use of Ground Penetrating Radar at the FAA’s National Airport Pavement Test Facility (NAPTF)

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Abstract

The Federal Aviation Administration (FAA) in the United States has used a ground-coupled Ground Penetrating Radar (GPR) at the National Airport Pavement Test Facility (NAPTF) since 2005. One of the primary objectives of the Accelerated Pavement Testing (APT) at the facility is to provide full-scale pavement response and failure information for use in airplane landing gear design and configuration studies. During the traffic testing at the facility, a GSSI GPR system was used to develop new procedures for monitoring Hot Mix Asphalt (HMA) pavement density changes that is directly related to pavement failure. A new methodology showing HMA density changes in terms of dielectric constant variations, called dielectric sweep test, was developed and applied in full-scale pavement test. The dielectric constant changes were successfully monitored with increasing airplane traffic numbers. The changes were compared to pavement performance data (permanent deformation). The measured dielectric constants based on the known HMA thicknesses were compared with computed dielectric constants using an equation from ASTM D4748-98 Standard Test Method for Determining the Thickness of Bound Pavement Layers Using Short-Pulse Radar. Six inches diameter cylindrical cores were taken after construction and traffic testing for the HMA layer bulk specific gravity. The measured bulk specific gravity was also compared to monitor HMA density changes caused by aircraft traffic conditions.

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Literatur
Zurück zum Zitat ASTM. (1998). D4748-98, Standard Test Method for Determining the Thickness of Bound Pavement Layers Using Short-Pulse Radar, West Conshohocken, Pennsylvania. ASTM. (1998). D4748-98, Standard Test Method for Determining the Thickness of Bound Pavement Layers Using Short-Pulse Radar, West Conshohocken, Pennsylvania.
Zurück zum Zitat Federal Aviation Administration. (2011). Advisory Circular 150/5370–10E, Standards for Construction of Airports, Washington, DC (pp. 195–208, 230–232). Federal Aviation Administration. (2011). Advisory Circular 150/5370–10E, Standards for Construction of Airports, Washington, DC (pp. 195–208, 230–232).
Zurück zum Zitat Geophysical Survey Systems, Inc. TerraSIRch SIR System-3000 User’s Manual, MN72–433 Rev D, North Salem, NH (p. 71). Geophysical Survey Systems, Inc. TerraSIRch SIR System-3000 User’s Manual, MN72–433 Rev D, North Salem, NH (p. 71).
Zurück zum Zitat Hironaka, M. C., Hitchcock, R. D., & Forrest, J. B. (1976). Detection of voids underground and under pavements. Hueneme: Naval Civil Engineering Laboratory. (Report No. CEL-TN-1449) Hironaka, M. C., Hitchcock, R. D., & Forrest, J. B. (1976). Detection of voids underground and under pavements. Hueneme: Naval Civil Engineering Laboratory. (Report No. CEL-TN-1449)
Zurück zum Zitat Reppert, P. M., Morgan, F. D., & Tosoz, M. N. (2000). Dielectric constant determination using ground-penetrating radar reflection coefficient. Journal of Applied Geophysics, 43, 189–197.CrossRef Reppert, P. M., Morgan, F. D., & Tosoz, M. N. (2000). Dielectric constant determination using ground-penetrating radar reflection coefficient. Journal of Applied Geophysics, 43, 189–197.CrossRef
Zurück zum Zitat Saarenketo, T. (1997). Using ground-penetrating radar and dielectric probe measurements in pavement density quality control. In Transportation Research Record, 1575, Journal of the Transportation Research Board, Washington, DC (pp. 34–41). Saarenketo, T. (1997). Using ground-penetrating radar and dielectric probe measurements in pavement density quality control. In Transportation Research Record, 1575, Journal of the Transportation Research Board, Washington, DC (pp. 34–41).
Zurück zum Zitat Song, I., Hayhoe, G. F., & Aponte, R. (2012). Rut depth measurement method and analysis at the FAA’s National Airport Pavement Test Facility (NAPTF). In 4th International conference on accelerated pavement testing, Davis, California, September 2012. Song, I., Hayhoe, G. F., & Aponte, R. (2012). Rut depth measurement method and analysis at the FAA’s National Airport Pavement Test Facility (NAPTF). In 4th International conference on accelerated pavement testing, Davis, California, September 2012.
Zurück zum Zitat Song, I., Larkin, A., & Gagnon, J. (2014). Monitoring Hot Mix Asphalt pavement density changes using Ground Penetrating Radar at the FAA’s National Airport Pavement Test Facility. In 15th international conference of ground penetrating radar (GPR), Brussels, Belgium. Song, I., Larkin, A., & Gagnon, J. (2014). Monitoring Hot Mix Asphalt pavement density changes using Ground Penetrating Radar at the FAA’s National Airport Pavement Test Facility. In 15th international conference of ground penetrating radar (GPR), Brussels, Belgium.
Zurück zum Zitat Uddin, W. (2006). Ground penetrating radar study—Phase I technology review and evaluation. Jackson: Mississippi Department of Transportation Research Division. (Report No. FHWA/MS-DOT-RD-06-182) Uddin, W. (2006). Ground penetrating radar study—Phase I technology review and evaluation. Jackson: Mississippi Department of Transportation Research Division. (Report No. FHWA/MS-DOT-RD-06-182)
Metadaten
Titel
Use of Ground Penetrating Radar at the FAA’s National Airport Pavement Test Facility (NAPTF)
verfasst von
Injun Song
Albert Larkin
Copyright-Jahr
2016
DOI
https://doi.org/10.1007/978-3-319-42797-3_36

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