Revolutionising Egyptian pavement design: a comprehensive E* database and advanced modeling approach for contextually informed performance predictions

Author:

Elshayeb Maha A.1ORCID,Saudy Maram M.2ORCID,Gabr Alaa R.1ORCID,Mahdy Hassan A.3,El-Badawy Sherif M.1ORCID,Awed Ahmed M.1ORCID

Affiliation:

1. Highway and Airport Engineering Laboratory, Public Works Engineering Department, Faculty of Engineering, Mansoura University, Mansoura, Egypt

2. Department of Construction Engineering, The American University in Cairo (AUC), AUC Avenue, New Cairo, Egypt

3. Public Works Engineering Department, Ain Shams University, Cairo, Egypt

Publisher

Informa UK Limited

Reference97 articles.

1. AASHTO, 2008. Mechanistic-empirical pavement design guide: a manual of practice. Washington, D.C.: American Association of State Highway and Transportation Officials.

2. AASHTO M 332-23, 2023. Standard specification for performance-graded asphalt binder using multiple stress creep recovery (MSCR) test. Washington, DC: American Association of State Highway Transportation Officials.

3. AASHTO R 28-22, 2022. Standard practice for accelerated aging of asphalt binder using a pressurized aging vessel (PAV). Washington, DC: American Association of State Highway and Transportation Officials.

4. AASHTO R 62-13, 2021. Standard practice for developing dynamic modulus master curves for asphalt mixtures. Washington, DC: American Association of State Highway and Transportation Officials.

5. AASHTO T 312-22, 2022. Standard method of test for preparing and determining the density of asphalt mixture specimens by means of the superpave gyratory compactor. Washington, DC: American Association of State Highway and Transportation Officials.

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