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    CIVIL NX WEBINAR
    Integrated Design of Steel Highway Bridge with
    Varying Pier Heights as per IRC codes
    📅 Date
    14 July 2026
    Tuesday
    🕒 Time
    12:00 PM – 01:00 PM
    IST
    📍 Platform
    Live Webinar
    GoToWebinar
    REGISTER NOW →
       
    Webinar Overview
    Join us for an insightful webinar on Integrated Design of Steel Highway Bridge with Varying Pier Heights using IRC Codes, designed specifically for bridge engineers, consultants, and EPC contractors involved in the planning, design, and execution of bridge infrastructure projects.
    Discover how MIDAS CIVIL NX simplifies the analysis and design of a real multi-span steel truss bridge with irregular geometry, varying pier heights, and complex substructure systems. Learn how an integrated modelling workflow eliminates manual workarounds, enables accurate code-based design verification, improves engineering confidence, and accelerates project delivery through advanced analysis and automation.
    01
    Model
    Develop an integrated analytical model for steel truss bridges with irregular geometry and varying pier heights.
    02
    Analyse
    Perform advanced structural analysis including moving load simulation and response spectrum analysis with greater confidence.
    03
    Verify
    Complete code compliant design checks for steel and RC members using IRC standards within a unified workflow.
    Learning Outcomes
    ✓  Integrated steel bridge modelling in CIVIL NX
    ✓  Varying pier height modelling
    ✓  Moving load & response spectrum analysis
    ✓  IRC-based design verification
    ✓  Automated steel & RC design checks
    ✓  Reduced modelling effort
    ✓  Improved engineering accuracy
    ✓  Faster bridge design workflow
    Integrated Bridge Design for Complex Real-World Projects
    Discover how a single integrated workflow in CIVIL NX enables engineers to model, analyse, and verify complex steel highway bridges with confidence. Learn practical techniques to reduce design iterations, streamline proof consultancy reviews, ensure IRC code compliance, and deliver challenging bridge projects more efficiently.

    Technical Session
    Webinar Agenda
    1
     
     
    Introduction and Problem Framing
    3-span steel truss bridge with varying pier heights supported on pile foundations.
    2
     
     
    Material & Bridge Modelling
    Material and section properties, superstructure and substructure modelling, boundary conditions, and bearing layouts.
    3
     
     
    IRC-Based Vehicles & Moving Load Cases
    Defining IRC-based vehicles and moving load cases with 3 simple steps.
    4
     
     
    Auto Load Combinations 
    Auto-load combinations as per IRC 6 limit states. 
    5
     
     
    Moving Load Analysis
    Moving load analysis based on Influence Line Theory.
    6
     
     
    Response Spectrum Analysis
    Response spectrum analysis as per IRC SP 114.
    7
     
     
    Steel Truss Bridge Design
    Steel truss bridge design as per IRC 24 with optimal design features.
    8
     
     
    RC Substructure Design
    RC substructure design as per IRC 112.
    9
     
    Irregular Pier Section Capacity Checks
    Capacity checks using General Section Designer (GSD).
    Real Project
    Webinar Project Model
    Explore the real engineering model demonstrated throughout the webinar.
    Steel Bridge Project Model
    ✔ 3-Span Steel Truss Bridge
    ✔ Varying Pier Heights
    ✔ IRC-Based Analysis & Design
    Exclusive Access
    Attendee Benefits
    MIDAS CIVIL NX Trial
    MIDAS CIVIL NX Trial license 
    Get complimentary access to a trial license of MIDAS CIVIL NX to explore its powerful bridge modelling, analysis, and design capabilities.
    Steel Bridge Model
    Steel Bridge Project Model
    Receive the CIVIL NX steel bridge model demonstrated during the webinar for hands-on learning and workflow practice.