Implementation of the Mechanistic-empirical Pavement Design Guide in Utah

Implementation of the Mechanistic-empirical Pavement Design Guide in Utah PDF Author: Michael I. Darter
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 218

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Book Description
"Highway agencies across the nation are moving towards implementation of the new AASHTO Mechanistic- Empirical Pavement Design Guide (MEPDG) for pavement design. The objective of this project was to implement the MEPDG into the daily operations of the Utah Department of Transportation (UDOT). The implementation of the MEPDG as a UDOT standard required modifications in some UDOT pavement design protocols (i.e., lab testing procedures, equipment, and protocols, traffic data reporting, software issues, design output interpretation, and others). A key requirement is validation of the MEPDG's nationally calibrated pavement distress and smoothness prediction models when applied under Utah conditions and performing local calibration if needed. This was accomplished using data from Long Term Pavement Performance (LTPP) projects located in Utah and UDOT pavement management system (PMS) pavement sections. The nationally calibrated MEPDG models were evaluated. With the exception of the new hot-mix asphalt (HMA) pavement total rutting model, all other models were found to be reasonable. The rutting model was locally calibrated to increase goodness of fit and remove significant bias. Due to the nature of the data used in model validation, it is recommended that further MEPDG model validation be accomplished in the future using a database that contains HMA pavement and jointed plain concrete pavement (JPCP) exhibiting moderate to severe deterioration. This report represents Phase II of the UDOT MEPDG implementation study and builds on the Phase I study report completed in 2005 for UDOT. The Draft User's Guide for UDOT Mechanistic-Empirical Pavement Design (UDOT Research Report No. UT-09.11a, dated October 2009) incorporates the findings of this report as inputs and pavement design guidelines for Utah for use by UDOT's pavement design engineers during trial implementation of the MEPDG"--Technical report documentation p.

Implementation of the Mechanistic-empirical Pavement Design Guide in Utah

Implementation of the Mechanistic-empirical Pavement Design Guide in Utah PDF Author: Michael I. Darter
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 218

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Book Description
"Highway agencies across the nation are moving towards implementation of the new AASHTO Mechanistic- Empirical Pavement Design Guide (MEPDG) for pavement design. The objective of this project was to implement the MEPDG into the daily operations of the Utah Department of Transportation (UDOT). The implementation of the MEPDG as a UDOT standard required modifications in some UDOT pavement design protocols (i.e., lab testing procedures, equipment, and protocols, traffic data reporting, software issues, design output interpretation, and others). A key requirement is validation of the MEPDG's nationally calibrated pavement distress and smoothness prediction models when applied under Utah conditions and performing local calibration if needed. This was accomplished using data from Long Term Pavement Performance (LTPP) projects located in Utah and UDOT pavement management system (PMS) pavement sections. The nationally calibrated MEPDG models were evaluated. With the exception of the new hot-mix asphalt (HMA) pavement total rutting model, all other models were found to be reasonable. The rutting model was locally calibrated to increase goodness of fit and remove significant bias. Due to the nature of the data used in model validation, it is recommended that further MEPDG model validation be accomplished in the future using a database that contains HMA pavement and jointed plain concrete pavement (JPCP) exhibiting moderate to severe deterioration. This report represents Phase II of the UDOT MEPDG implementation study and builds on the Phase I study report completed in 2005 for UDOT. The Draft User's Guide for UDOT Mechanistic-Empirical Pavement Design (UDOT Research Report No. UT-09.11a, dated October 2009) incorporates the findings of this report as inputs and pavement design guidelines for Utah for use by UDOT's pavement design engineers during trial implementation of the MEPDG"--Technical report documentation p.

Draft User's Guide for UDOT Mechanistic-empirical Pavement Design

Draft User's Guide for UDOT Mechanistic-empirical Pavement Design PDF Author: Michael I. Darter
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 136

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Book Description
Validation of the new AASHTO Mechanistic-Empirical Pavement Design Guide's (MEPDG) nationally calibrated pavement distress and smoothness prediction models when applied under Utah conditions, and local calibration of the new hot-mix asphalt (HMA) pavement total rutting model, were recently completed as documented in UDOT Research Report No. UT-09.11 Implementation of the Mechanistic-Empirical Pavement Design Guide in Utah: Validation, Calibration, and Development of the UDOT MEPDG User's Guide, dated October 2009. This Draft User's Guide incorporates the findings of the model validation and local calibration report and provides information for use by UDOT's pavement design engineers during trial implementation of the MEPDG. This information includes an overview of the MEPDG procedure, information on installation of the software, guidelines for obtaining all needed inputs, guidance to perform pavement design using the software for new and rehabilitated HMA pavement and jointed plain concrete pavement (JPCP), and pavement design examples for new HMA pavement and new JPCP using the MEPDG software.

Implementation Plan for the New Mechanistic-empirical Pavement Design Guide

Implementation Plan for the New Mechanistic-empirical Pavement Design Guide PDF Author: Y. Richard Kim
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 690

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Implementation of the AASHTO Mechanistic-Empirical Pavement Design Guide and Software

Implementation of the AASHTO Mechanistic-Empirical Pavement Design Guide and Software PDF Author:
Publisher:
ISBN:
Category : Electronic book
Languages : en
Pages :

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Mechanistic-empirical Pavement Design Guide Implementation Plan

Mechanistic-empirical Pavement Design Guide Implementation Plan PDF Author: Todd E. Hoerner
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages : 324

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Book Description
As AASH is expected to eventually adopt the MEPDG at its primary pavement design method, it is critical that the SDDOT become familiar with the MEPGD documentation and associated design software. The research conducted under this project was a first step toward achieving this goal.

Implementing the Mechanistic-empirical Pavement Design Guide

Implementing the Mechanistic-empirical Pavement Design Guide PDF Author: Brian Coree
Publisher:
ISBN:
Category : Pavements
Languages : en
Pages :

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Mechanistic-empirical Pavement Design Guide

Mechanistic-empirical Pavement Design Guide PDF Author: American Association of State Highway and Transportation Officials
Publisher: AASHTO
ISBN: 156051423X
Category : Pavements
Languages : en
Pages : 218

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Implementation of 2002 Mechanistic-empirical Pavement Design Guide Software for Minnesota Low-volume Roads

Implementation of 2002 Mechanistic-empirical Pavement Design Guide Software for Minnesota Low-volume Roads PDF Author: Shariq Husain
Publisher:
ISBN:
Category :
Languages : en
Pages : 304

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Preparation of the Implementation Plan of AASHTO Mechanistic-empirical Pavement Design Guide (M-E PDG) in Connecticut

Preparation of the Implementation Plan of AASHTO Mechanistic-empirical Pavement Design Guide (M-E PDG) in Connecticut PDF Author: Iliya Yut
Publisher:
ISBN:
Category : Pavements, Asphalt
Languages : en
Pages : 126

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Preparation of the Implementation Plan of AASHTO Mechanistic-empirical Pavement Design Guide (M-EPDG) in Connecticut

Preparation of the Implementation Plan of AASHTO Mechanistic-empirical Pavement Design Guide (M-EPDG) in Connecticut PDF Author: Iliya Yut
Publisher:
ISBN:
Category : Pavements, Asphalt
Languages : en
Pages : 133

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Book Description