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Design loads considered on bridges

Design loads considered on bridges

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Syllabus

This course is full of best-in-class content by leading faculty and industry experts in the form of videos and projects

Course Overview

  • The learners will gain a thorough knowledge of the various loads to be applied to bridges during their design life.
  • This course demonstrates all types of loads with codal provisions and formulas for the calculation of the loads, along with a software demo.
  • During the course, the learners will learn about
    • Various types of loads acting on the bridge structure.
    • Application of external loadings on the bridge structure and its design applications.
    • Loads considered for analyzing a double-decker bridge supporting a metro viaduct on the upper deck and a four-lane highway on the lower deck.
    • Design loading on vehicular underpasses using STAAD.Pro.

Course Syllabus

On a daily basis we talk to companies in the likes of Tata Elxsi and Mahindra to fine tune our curriculum.

Week 1 - Dead Load

  • Unit Weight of Materials
  • Self-weight of Structural Elements
  • Self-weight of Superimposed Dead loads
  • Application of Dead Loads in STAAD.Pro 
  • Load Application in Superstructure
  • Load Application in Substructure
  • Worked out examples in STAAD.Pro
  • Static Check of Loads
  • Analysis by Moment Distribution Method

Week 2 - Live Load

  • Types of Loading
    • IRC Class A Loading
    • IRC Tracked Loading
    • IRC Class 70R Loading
    • Footway Loading 
  • Influence Line Diagram
  • Load Definition and Application

Week 3 - Live Load

  • Introduction to the Indian Railway Standards (IRS) Code
    • IRS Gauge Classification
    • Broad Gauge Loading
    • Metre Gauge Loading
    • Metro Rail Loading
  • Solved Example Problems
  • STAAD.Pro Demo

Week 4 - Earth Pressure Load

  • Unit Weight of Soil
  • Earth Pressure at Rest
  • Active and Passive Earth Pressure 
  • Soil Loads on Piers and Abutments
  • Soil Loads on Foundation
  • Load Factors
  • Application of Loads in STAAD.Pro

Week 5 - Wind Load

  • Introduction IRC 6
  • Clauses for Wind Force
  • Wind Zones of India
  • Basic Wind Speed
  • Wind Force Coefficients
  • Application of Wind Load in STAAD.Pro

Week 6 - Seismic Loads

  • Introduction to IRC 6 Clause
  • Seismic Zones of India
  • Zone Factor
  • Importance Factor
  • Response Reduction Factor
  • Design Seismic Load
  • Application of Seismic Load in STAAD.Pro

Week 7 - Water Current Load and Braking Loads

  • Introduction to Water Current Forces
  • Water Current Loads as per IRC
  • Application of Loads in Substructure
  • Introduction to Longitudinal Forces
  • STAAD.Pro Demo and Load Application

Week 8 - Centrifugal and Impact Loads

  • Centrifugal Loads
  • Crash Barriers
  • Impact Loads 
  • STAAD.Pro Demo

Week 9 - Snow Loads and Erection Effect and Construction Loads

  • Snow Loads
  • Calculation of Snow Loads as per IS 875
  • Shape Coefficients
  • Density of Snow
  • Solved Example
  • STAAD.Pro Demo
  • Erection Effects & Construction Loads

Week 10 - Temperature Loads

  • Introduction to Temperature Loads 
  • Temperature Variation in the Structure
  • Calculation of Temperature Loads
  • Solved Example Problem
  • STAAD.Pro Demo

 

Week 11 - Superimposed Dead Load, Fatigue Loads, Crash Barrier Loads, Pedestrian Bicycle Loads and Barge Impact Loads on Bridges

  • Superimposed Dead Load
  • Utility Loads
  • Pipe Load
  • Fatigue Loads
  • Pedestrian Live Loads
  • Barge Impact Loading
  • STAAD.Pro Demo

Week 12 - Load Combinations

 

  • Load Combinations
  • STAAD.Pro Demo 

 

 

Our courses have been designed by industry experts to help students achieve their dream careers

Industry Projects

Our projects are designed by experts in the industry to reflect industry standards. By working through our projects, Learners will gain a practical understanding of what they will take on at a larger-scale in the industry. In total, there are 2 Projects that are available in this program.

Calculate the Design Load for a Single Long-span Bridge in Mumbai

In this project, the design load has to be calculated for a single long-span bridge that is situated in Mumbai with a 20 m span and a 10 m carriageway.

Calculate the Design Load for a Double Long-span Bridge in Manali

In this project, the design load has to be calculated for a double long-span bridge that is situated in Manali with a 24 m span and a 7 m carriageway.

Our courses have been designed by industry experts to help students achieve their dream careers

Ratings & Reviews by Learners

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4.8

Design loads considered on bridges

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Become job ready with our comprehensive industry focused curriculum for freshers & early career professionals

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Instructors profiles

Our courses are designed by leading academicians and experienced industry professionals.

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1 industry expert

Our instructors are industry experts along with a passion to teach.

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12 years in the experience range

Instructors with 12 years extensive industry experience.

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Areas of expertise

  • Structural design of bridges/ flyovers/ ROBs/ Metro Viaducts

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