Modeling and Design of Flexible Pavements and Materials
ISBN-13:
9783319864105
ISBN-10:
3319864106
Edition:
Softcover reprint of the original 1st ed. 2018
Author:
David H. Allen, Dallas N. Little, Amit Bhasin
Publication date:
2018
Publisher:
Springer
Format:
Paperback
714 pages
Category:
Transportation
,
Energy
,
Physics
,
Mechanical
,
Engineering
,
Construction
,
Climatology
,
Earth Sciences
,
Rivers
,
Nature & Ecology
,
Mechanics
,
Nanotechnology
,
Technology
FREE US shipping
Book details
ISBN-13:
9783319864105
ISBN-10:
3319864106
Edition:
Softcover reprint of the original 1st ed. 2018
Author:
David H. Allen, Dallas N. Little, Amit Bhasin
Publication date:
2018
Publisher:
Springer
Format:
Paperback
714 pages
Category:
Transportation
,
Energy
,
Physics
,
Mechanical
,
Engineering
,
Construction
,
Climatology
,
Earth Sciences
,
Rivers
,
Nature & Ecology
,
Mechanics
,
Nanotechnology
,
Technology
Summary
Modeling and Design of Flexible Pavements and Materials (ISBN-13: 9783319864105 and ISBN-10: 3319864106), written by authors
David H. Allen, Dallas N. Little, Amit Bhasin, was published by Springer in 2018.
With an overall rating of 4.3 stars, it's a notable title among other
Transportation
(Energy, Physics, Mechanical, Engineering, Construction, Climatology, Earth Sciences, Rivers, Nature & Ecology, Mechanics, Nanotechnology, Technology) books. You can easily purchase or rent Modeling and Design of Flexible Pavements and Materials (Paperback) from BooksRun,
along with many other new and used
Transportation
books
and textbooks.
And, if you're looking to sell your copy, our current buyback offer is $0.3.
Description
This textbook lays out the state of the art for modeling of asphalt concrete as the major structural component of flexible pavements. The text adopts a pedagogy in which a scientific approach, based on materials science and continuum mechanics, predicts the performance of any configuration of flexible roadways subjected to cyclic loadings. The authors incorporate state-of the-art computational mechanics to predict the evolution of material properties, stresses and strains, and roadway deterioration. Designed specifically for both students and practitioners, the book presents fundamentally complex concepts in a clear and concise way that aids the roadway design community to assimilate the tools for designing sustainable roadways using both traditional and innovative technologies.
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