The new AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG) provides pavement analysis and performance predictions for various what-if scenarios. MEPDG performance predictions for anticipated climatic and traffic conditions will depend on the values of the input parameters that characterize pavement materials, layers, design features, and condition. A comprehensive global sensitivity analysis methodology is proposed for evaluating performance predictions for jointed plain concrete pavement to MEPDG inputs for five climatic conditions and three traffic levels. MEPDG inputs evaluated in the analysis include traffic volume, layer thicknesses, material properties, groundwater depth, and geometric parameters. Correlations between MEPDG in...
This paper focuses on comprehensive sensitivity analyses of various rigid pavement scenarios. Jointe...
In support of the initiatives for implementing the new Mechanistic- Empirical Pavement Design Guide ...
Pt.1: Sensitivity analysis Pt.2: Validations and local calibrationOptimization of transportation fa...
The new AASHTO Mechanistic–Empirical Pavement Design Guide (MEPDG) provides pavement analysis and pe...
The new AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG) performance predictions for the a...
This paper focuses on quantitative and qualitative sensitivity analyses of various jointed plain con...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) is a comprehensive tool developed in 2002 by...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) is a comprehensive tool developed in 2002 by...
Initiatives are underway to implement the new mechanistic-empirical pavement design guide (MEPDG) in...
Recently, pavement design has changed from old method based on empirical relation to a new method ca...
Many agencies use the AASHTO Guide for Design of Pavement Structures to design their pavement system...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) was the result of NCHRP project 1-37A. This ...
This paper focuses on comprehensive sensitivity analyses of various rigid pavement scenarios. Jointe...
The Mechanistic Empirical Pavement Design Guide (MEPDG) developed by the National Cooperative Highwa...
The release of Mechanistic-Empirical Pavement Design Guide (MEPDG) in 2004 has been leading a transi...
This paper focuses on comprehensive sensitivity analyses of various rigid pavement scenarios. Jointe...
In support of the initiatives for implementing the new Mechanistic- Empirical Pavement Design Guide ...
Pt.1: Sensitivity analysis Pt.2: Validations and local calibrationOptimization of transportation fa...
The new AASHTO Mechanistic–Empirical Pavement Design Guide (MEPDG) provides pavement analysis and pe...
The new AASHTO Mechanistic-Empirical Pavement Design Guide (MEPDG) performance predictions for the a...
This paper focuses on quantitative and qualitative sensitivity analyses of various jointed plain con...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) is a comprehensive tool developed in 2002 by...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) is a comprehensive tool developed in 2002 by...
Initiatives are underway to implement the new mechanistic-empirical pavement design guide (MEPDG) in...
Recently, pavement design has changed from old method based on empirical relation to a new method ca...
Many agencies use the AASHTO Guide for Design of Pavement Structures to design their pavement system...
The Mechanistic-Empirical Pavement Design Guide (MEPDG) was the result of NCHRP project 1-37A. This ...
This paper focuses on comprehensive sensitivity analyses of various rigid pavement scenarios. Jointe...
The Mechanistic Empirical Pavement Design Guide (MEPDG) developed by the National Cooperative Highwa...
The release of Mechanistic-Empirical Pavement Design Guide (MEPDG) in 2004 has been leading a transi...
This paper focuses on comprehensive sensitivity analyses of various rigid pavement scenarios. Jointe...
In support of the initiatives for implementing the new Mechanistic- Empirical Pavement Design Guide ...
Pt.1: Sensitivity analysis Pt.2: Validations and local calibrationOptimization of transportation fa...