Pavement Condition Index Model for Mechanistic–Empirical Design of Airport Concrete Pavements Considering Environmental Effects

Author:

Park Hae-Won1ORCID,Kim Jong Myung2,Lee Jae Hoon3,Lee Dae Sik4,Jeong Jin-Hoon4ORCID

Affiliation:

1. Smart City Industry Support Center, Korea Agency for Infrastructure Technology Advancement, Anyang-si 14066, Republic of Korea

2. Department of Airport, Yooshin Engineering Corporation, Seoul 06252, Republic of Korea

3. Department of Smart City Engineering, Inha University, Incheon 22212, Republic of Korea

4. Department of Civil Engineering, Inha University, Incheon 22212, Republic of Korea

Abstract

A transfer function is the main model of a design program that correlates mechanistically calculated damage to a pavement with the actual field distress. In this study, a pavement condition index (PCI) model that reflects environmental and traffic loads was developed as a transfer function for a design program for airport concrete pavements. Seven runways from five airports in Korea, for which design data were available, were selected as target runways, and their design, traffic, and weather data were collected. The minimum tensile stress of the slab generated by environmental loads and the maximum tensile stress induced by combined environmental and traffic loads were calculated by conducting a three-dimensional finite element analysis. The cumulative fatigue damage to the target runways was calculated by substituting the climatic conditions and traffic volume into the fatigue model, which considered the minimum and maximum tensile stresses. The PCI, which was uniformly and varyingly distributed according to pavement age, was adopted as the indicator of actual field distress, whereas the previously used structural condition index was mostly 100 because no structural distress occurred, regardless of the pavement age. The PCI model was established via multi-regression analysis to predict field PCIs using mechanistically calculated cumulative fatigue damage and pavement age as independent variables. The actual and predicted PCIs of the target airports were compared to validate the PCI model.

Funder

Incheon International Airport Corporation

Inha University

Publisher

MDPI AG

Subject

Building and Construction,Civil and Structural Engineering,Architecture

Reference53 articles.

1. MOLTMA (2011). Road Pavement Structure Design Guidelines, Ministry of Land, Transport and Maritime Affairs.

2. ARA Inc (2004). Guide for Mechanistic-Empirical Design of New and Rehabilitated Pavement Structures, National Coop-erative Highway Research Program. NCHRP 1-37A.

3. New Formulas for Stresses in Concrete Pavements of Airfields;Westergaard;Trans. Am. Soc. Civ. Eng.,1948

4. (2009). Standard for Airport Pavement Design and Evaluation. Standard No. FAA AC 150/5320-6E.

5. (2016). Standard for Airport Pavement Design and Evaluation. Standard No. FAA AC 150/5320-6F.

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