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Introduction to Pavement Structural Design

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Rufaro Bakasa

2:25:38

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  • 1. Course Introduction & Technical Background.mp4
    03:12
  • 2. Course Outline.mp4
    00:34
  • 1. Type I - Flexible Pavement.mp4
    04:28
  • 2. Type II Rigid Pavement.mp4
    08:59
  • 1.1 AGPT02-17 Guide to Pavement Technology Part 2 Pavement Structural Design.pdf
  • 1.2 TRH16.pdf
  • 1.3 TRH4.pdf
  • 1.4 UTG2.pdf
  • 1. Design Catalogs.mp4
    11:19
  • 2. Empirical Design.mp4
    00:56
  • 3.1 aashto1993.pdf
  • 3. ASHTO Method.mp4
    04:42
  • 4. Mechanistic-Empirical Design.mp4
    04:09
  • 1. Background.mp4
    06:37
  • 2. Performance Measurements & HMA Pavement Materials.mp4
    05:09
  • 1. Flexible Pavement.mp4
    13:54
  • 2. Rigid Pavement.mp4
    10:20
  • 1. Empirical Design Summary.mp4
    00:28
  • 1. Flexible Pavement Example.mp4
    10:12
  • 2. Rigid Pavement Example.mp4
    09:26
  • 1. Flexible Pavement Mechanistic Model.mp4
    08:04
  • 2. Finite Element Model.mp4
    06:12
  • 3. Rigid Mechanistic Models.mp4
    04:40
  • 1. Example of Pavement Failure.mp4
    11:08
  • 1. ME Design Methodology.mp4
    07:13
  • 2. Design Flow Chart.mp4
    07:50
  • 3. Industry Softwares.mp4
    03:50
  • 1. Used Sources and End of Lecture.mp4
    02:16
  • Description


    Pavement design methods for Rigid/ Flexible pavement. Including Mechanistic, Empirical & Mechanistic-Empirical.

    What You'll Learn?


    • Graduate Civil Engineers
    • Intermediate Civil Engineers
    • Pavement Engineers
    • Geotechnical Engineers

    Who is this for?


  • Graduate/ Intermediate Civil Engineers
  • What You Need to Know?


  • Basic Knowledge of Civil Engineering
  • More details


    Description

    An introduction to various pavement design methods for rigid/ flexible pavement. Including mechanistic, empirical, and mechanistic-empirical pavement design methods. Including design examples, and typical software used for design.

    The course looks at the inception of structural pavement design and the various methodologies and tests which have been carried out to establish the current guidelines used in America, South Africa, New Zealand & Australia.

    The goal of structural design is to determine the number, material composition and thickness of the different layers within a pavement structure required to accommodate a given loading regime. This includes the surface course as well as any underlying base or subbase layers.

    The course also discusses of best methods of practice for pavement rehabilitation and new pavements. Design output layout and stakeholder communication in regard to design outputs.

    Overall, this Module is only meant to provide a brief overview of the different structural design techniques as well as their assumptions, inputs and outputs. Detailed analysis of the design methods presented here can be found in:

    • Empirical Method: The AASHTO Guide for Design of Pavement Structures, TRH4 &16, UTG2, Austroad :AGPT02-17Guide

    • Mechanistic Method: The NCHRP 1-37A Design Guide, which is still under review, and other state design procedures.

    Who this course is for:

    • Graduate/ Intermediate Civil Engineers

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    Rufaro Bakasa
    Rufaro Bakasa
    Instructor's Courses
    Civil Engineer with 5 year's experience. Currently doing a MEng (Geotech & Earthquake) with the University of Auckland. I have tutored Math's, Physics, and Chemistry.I am an energetic and dedicated person, who will assist any student to reach their desired goal. I have been tutoring for over 8 years and I am confident there is no one who can't be coached to grasp and master any subject.
    Students take courses primarily to improve job-related skills.Some courses generate credit toward technical certification. Udemy has made a special effort to attract corporate trainers seeking to create coursework for employees of their company.
    • language english
    • Training sessions 23
    • duration 2:25:38
    • Release Date 2024/04/13