LRFD: Design of Highway Bridge Superstructures, Part 2
LRFD: Design of Highway Bridge Superstructures, Part 2, available at $54.99, has an average rating of 5, with 60 lectures, based on 3 reviews, and has 52 subscribers.
You will learn about Design Steel Bridge Superstructures using LRFD, Part 2 Concrete Girder Superstructure Steel Girder Superstructure LRFD-Design-Examples This course is ideal for individuals who are Young engineers or Final year Civil Engineering students It is particularly useful for Young engineers or Final year Civil Engineering students.
Enroll now: LRFD: Design of Highway Bridge Superstructures, Part 2
Summary
Title: LRFD: Design of Highway Bridge Superstructures, Part 2
Price: $54.99
Average Rating: 5
Number of Lectures: 60
Number of Published Lectures: 60
Number of Curriculum Items: 60
Number of Published Curriculum Objects: 60
Original Price: $19.99
Quality Status: approved
Status: Live
What You Will Learn
- Design Steel Bridge Superstructures using LRFD, Part 2
- Concrete Girder Superstructure
- Steel Girder Superstructure
- LRFD-Design-Examples
Who Should Attend
- Young engineers
- Final year Civil Engineering students
Target Audiences
- Young engineers
- Final year Civil Engineering students
This course gives a brief introduction to LRFD application to the design of Highway Bridge Superstructures. It will shed some light on the design philosophy of LRFD. It will show the Design truck loading and lane loading used for the design of the Superstructure. It will consider both concrete girder bridges and steel bridges. This course presents the theory, methodology, and application for the design and analysis of both steel and concrete highway bridge superstructures. The manual is based on the AASHTO LRFD Bridge Design Specifications, Seventh Edition, 2014, with Interim Revisions through 2015. Design examples and commentary throughout the manual are intended to serve as a guide to aid bridge engineers with the implementation of the AASHTO LRFD Bridge Design
Specifications. This course consists of eight chapters. Chapter 1 provides an introduction to LRFD, including an overview
of the LRFD design philosophy and a description of the various LRFD limit states. Chapter 2 provides general
information about location features and design objectives, as well as a brief overview of Accelerated Bridge
Construction. Chapter 3 presents loads and load factors, including design criteria for common bridge loads, as well as
load factors used for various LRFD load combinations. Chapter 4 provides a general summary of structural analysis,
including general analysis considerations, dead load analysis, live load analysis, and various methods of analysis.
Chapter 5 provides valuable information for the design of concrete girder superstructures, including preliminary design
decisions, flexural design of prestressed I-girders, design for shear and torsion, prestressing, and reinforcement details.
Similarly, Chapter 6 provides valuable information for the design of steel girder superstructures, including LRFD girder
verifications for constructibility, service, fatigue and fracture, flexure, and shear, as well as design provisions for various
steel superstructure details. Chapter 7 describes decks and deck systems, covering such topics as traditional design
method, empirical design method, deck overhang design, precast deck slabs, and bridge railings. Chapter 8 provides
general information about bearings and joints, including design requirements for elastomeric bearings and pot bearings.
Finally, a glossary of common terms related to bridge superstructures and LRFD is provided.
Course Curriculum
Chapter 1: Introduction
Lecture 1: Introduction
Chapter 2: Chapter 5 : Concrete Girder Superstructures
Lecture 1: Chap 5 – Lect 1
Lecture 2: Chap 5 – Lect 2
Lecture 3: Chap 5 – Lect 3
Lecture 4: Chap 5 – Lect 4
Lecture 5: Chap 5 – Lect 5
Lecture 6: Chap 5 – Lect 6
Lecture 7: Chap 5 – Lect 7
Lecture 8: Chap 5 – Lect 8
Lecture 9: Chap 5 – Lect 9
Lecture 10: Chap 5 – Lect 10
Lecture 11: Chap 5 – Lect 11
Lecture 12: Chap 5 – Lect 12
Lecture 13: Chap 5 – Lect 13
Lecture 14: Chap 5 – Lect 14
Lecture 15: Chap 5 – Lect 15
Lecture 16: Chap 5 – Lect 16
Lecture 17: Chap 5 – Lect 17
Lecture 18: Chap 5 – Lect 18
Lecture 19: Chap 5 – Lect 19
Lecture 20: Chap 5 – Lect 20
Lecture 21: Chap 5 – Lect 21
Lecture 22: Chap 5 – Lect 22
Lecture 23: Chap 5 – Lect 23
Lecture 24: Chap 5 – Lect 24
Lecture 25: Chap 5 – Lect 25
Lecture 26: Chap 5 – Lect 26
Lecture 27: Chap 5 – Lect 27
Lecture 28: Chap 5 – Lect 28
Lecture 29: Chap 5 – Lect 29
Lecture 30: Chap 5 – Lect 30
Lecture 31: Chap 5 – Lect 31
Lecture 32: Chap 5 – Lect 32
Lecture 33: Chap 5 – Lect 33
Lecture 34: Chap 5 – Lect 34
Lecture 35: Chap 5 – Lect 35
Lecture 36: Chap 5 – Lect 36
Lecture 37: Chap 5 – Lect 37
Lecture 38: Chap 5 – Lect 38
Lecture 39: Chap 5 – Lect 39
Chapter 3: Chapter 6 : Steel Girder Superstructures
Lecture 1: Chap 6 – Lect 1
Lecture 2: Chap 6 – Lect 2
Lecture 3: Chap 6 – Lect 3
Lecture 4: Chap 6 – Lect 4
Lecture 5: Chap 6 – Lect 5
Lecture 6: Chap 6 – Lect 6
Lecture 7: Chap 6 – Lect 7
Lecture 8: Chap 6 – Lect 8
Lecture 9: Chap 6 – Lect 9
Lecture 10: Chap 6 – Lect 10
Lecture 11: Chap 6 – Lect 11
Lecture 12: Chap 6 – Lect 12
Lecture 13: Chap 6 – Lect 13
Lecture 14: Chap 6 – Lect 14
Lecture 15: Chap 6 – Lect 15
Lecture 16: Chap 6 – Lect 16
Lecture 17: Chap 6 – Lect 17
Lecture 18: Chap 6 – Lect 18
Lecture 19: Chap 6 – Lect 19
Lecture 20: Chap 6 – Lect 20
Instructors
-
Emad Nassar
A Structural Engineer
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- 5 stars: 3 votes
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