Characterizing Seasonal Variations in Flexible Pavement Material Properties
As agencies progress toward mechanistic-empirical flexible design procedures, it is critical to quantify the relationships between climate factors and the resulting seasonal variations in pavement layer moduli for a given region. This was investigated for flexible pavement structures and climate con...
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Published in | Transportation research record Vol. 1684; no. 1; pp. 1 - 7 |
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Main Authors | , , |
Format | Journal Article |
Language | English |
Published |
Los Angeles, CA
SAGE Publications
1999
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Abstract | As agencies progress toward mechanistic-empirical flexible design procedures, it is critical to quantify the relationships between climate factors and the resulting seasonal variations in pavement layer moduli for a given region. This was investigated for flexible pavement structures and climate conditions specific to Minnesota. The objective of this study was to quantify the relationships between climate factors, subsurface conditions, and pavement material properties for use in a mechanistic-empirical design procedure that reflect conditions specific to Minnesota. The approach used to establish these relationships may suggest possible directions for similar studies in other regions. The data used in this study were obtained from the Minnesota Road Research Project, located on Interstate 94 in central Minnesota. The extensive instrumentation, on-site weather station, and deflection testing performed at this facility provide valuable environmental and pavement response data. The results show that the maximum stiffness for the pavement layers occurs in the winter, and the minimum stiffness occurs at different periods in a typical year for the different layers. The asphalt concrete modulus is at a minimum in the summer when temperatures are high. The base layer modulus is at a minimum in the spring thaw period, and the subgrade layer modulus is at a minimum in the late spring and summer months. The seasonal variations in pavement layer moduli are used to establish seasonal factors for each layer which describe the modulus cycling in a typical year. These factors may be applied to a mechanistic-empirical design procedure specific to Minnesota. |
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AbstractList | As agencies progress toward mechanistic-empirical flexible design procedures, it is critical to quantify the relationships between climate factors and the resulting seasonal variations in pavement layer moduli for a given region. This was investigated for flexible pavement structures and climate conditions specific to Minnesota. The objective of this study was to quantify the relationships between climate factors, subsurface conditions, and pavement material properties for use in a mechanistic-empirical design procedure that reflect conditions specific to Minnesota. The approach used to establish these relationships may suggest possible directions for similar studies in other regions. The data used in this study were obtained from the Minnesota Road Research Project, located on Interstate 94 in central Minnesota. The extensive instrumentation, on-site weather station, and deflection testing performed at this facility provide valuable environmental and pavement response data. The results show that the maximum stiffness for the pavement layers occurs in the winter, and the minimum stiffness occurs at different periods in a typical year for the different layers. The asphalt concrete modulus is at a minimum in the summer when temperatures are high. The base layer modulus is at a minimum in the spring thaw period, and the subgrade layer modulus is at a minimum in the late spring and summer months. The seasonal variations in pavement layer moduli are used to establish seasonal factors for each layer which describe the modulus cycling in a typical year. These factors may be applied to a mechanistic-empirical design procedure specific to Minnesota. |
Author | Birgisson, Bjorn Newcomb, David E. Ovik, Jill |
Author_xml | – sequence: 1 givenname: Jill surname: Ovik fullname: Ovik, Jill organization: Department of Civil Engineering, University of Minnesota-Twin Cities, 500 Pillsbury Drive, SE, Minneapolis, MN 55455 – sequence: 2 givenname: Bjorn surname: Birgisson fullname: Birgisson, Bjorn organization: Department of Civil Engineering, University of Minnesota-Twin Cities, 500 Pillsbury Drive, SE, Minneapolis, MN 55455 – sequence: 3 givenname: David E. surname: Newcomb fullname: Newcomb, David E. organization: Department of Civil Engineering, University of Minnesota-Twin Cities, 500 Pillsbury Drive, SE, Minneapolis, MN 55455 |
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Cites_doi | 10.1177/0361198196154300102 10.1520/STP16312S 10.1002/9780470172919 10.3141/1629-20 |
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References | Hein D. K. (bibr6-1684-01) 1994; 1 Stroup-Gardiner M. (bibr14-1684-01) 1997 bibr15-1684-01 Mahoney J. P (bibr2-1684-01) 1988 Jury W. A. (bibr16-1684-01) 1991 Watson D. K. (bibr5-1684-01) 1996 bibr7-1684-01 Van Deusen D. (bibr10-1684-01) 1996 Andersland O. B. (bibr12-1684-01) 1978 Ullidtz P. (bibr11-1684-01) 1995 Ovik J. M. (bibr8-1684-01) 1998 Poehl R. (bibr3-1684-01) 1971 (bibr9-1684-01) 1995 (bibr1-1684-01) 1993 bibr4-1684-01 bibr13-1684-01 |
References_xml | – ident: bibr4-1684-01 doi: 10.1177/0361198196154300102 – volume-title: Seasonal Variation in Material Properties of a Flexible Pavement year: 1996 ident: bibr5-1684-01 contributor: fullname: Watson D. K. – start-page: 61 volume-title: Transportation Research Record 1482 year: 1995 ident: bibr11-1684-01 contributor: fullname: Ullidtz P. – ident: bibr13-1684-01 doi: 10.1520/STP16312S – volume-title: Soil Physics year: 1991 ident: bibr16-1684-01 contributor: fullname: Jury W. A. – volume-title: Geotechnical Engineering for Cold Regions year: 1978 ident: bibr12-1684-01 contributor: fullname: Andersland O. B. – volume-title: Mechanistic-Based Overlay Design Procedure for Washington State Flexible Pavements year: 1988 ident: bibr2-1684-01 contributor: fullname: Mahoney J. P – volume: 1 start-page: 661 volume-title: Presented at 4th International Conference on the Bearing Capacity of Roads and Airfields year: 1994 ident: bibr6-1684-01 contributor: fullname: Hein D. K. – volume-title: Seasonal Variations of Pavement Deflections in Texas year: 1971 ident: bibr3-1684-01 contributor: fullname: Poehl R. – volume-title: WSDOT Pavement Guide. Vol. 3, Pavement Analysis Computer Software and Case Studies year: 1995 ident: bibr9-1684-01 – ident: bibr15-1684-01 doi: 10.1002/9780470172919 – volume-title: Selection of Flexible Backcalculation Software for the Minnesota Road Research Project year: 1996 ident: bibr10-1684-01 contributor: fullname: Van Deusen D. – volume-title: AASHTO Guide for Design of Pavement Structures year: 1993 ident: bibr1-1684-01 – volume-title: Characterizing Seasonal Variations in Pavement Material Properties for Use in a Mechanistic-Empirical Design Procedure year: 1998 ident: bibr8-1684-01 contributor: fullname: Ovik J. M. – ident: bibr7-1684-01 doi: 10.3141/1629-20 – volume-title: Investigation of Hot Mix Asphalt Mixtures at Mn/ROAD, Final Report year: 1997 ident: bibr14-1684-01 contributor: fullname: Stroup-Gardiner M. |
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