Reporting the Bearing Capacity of Airfield Pavements Using PCR Index

Author:

Armeni Angeliki1ORCID,Loizos Andreas2

Affiliation:

1. Laboratory of Pavement Engineering, School of Civil Engineering, National Technical University of Athens (NTUA), 9 Iroon Polytechniou St., GR 15780 Athens, Greece

2. Department of Transportation Planning & Engineering, School of Civil Engineering, National Technical University of Athens (NTUA), 9 Iroon Polytechniou St., GR 15780 Athens, Greece

Abstract

Airfield pavements are important assets that have to secure the safe operation of an airport. On this basis, assessing and reporting the bearing capacity of an airfield runway pavement is a critical task. Recently, the Aircraft Classification Rating-Pavement Classification Rating (ACR-PCR) system has been introduced, which uses the PCR index for expressing the bearing capacity of an airfield pavement. In order to accurately determine PCR, the mechanical characteristics and the thicknesses of the individual layers of a pavement are required. For this purpose, it is not seldom that in the absence of resources dedicated to detailed pavement evaluation procedures, assumptions for the material characteristics of the pavement considering typical materials may be made, while pavement thicknesses may be derived by pavement design records. The present paper highlights the importance of using Non-Destructive Testing (NDT) for accurately assessing the in-situ condition of a flexible runway pavement and determining the PCR index. In order to achieve the goal of the investigation, measurements were performed along the flexible pavement of an airport runway. In addition, the paper focuses on the impact of the variation of the thickness and of the mechanical characteristics of the asphalt concrete layers on the PCR index and on the interpretation of the results considering the acceptance of aircraft operations by airport authorities.

Publisher

MDPI AG

Reference25 articles.

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3. Sabahfar, N., and Murrell, S. (2020). International Conference on Transportation and Development, American Society of Civil Engineers.

4. Loizos, A., Armeni, A., and Plati, C. (2020, January 26–29). Airfield Pavement Overloading and Current Practice. Proceedings of the International Airfield and Highway Pavements Conference, Seattle, WA, USA.

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