Course on
Earthquake Resistant Design of RCC Building

   Seismic Basics – Learn how earthquakes impact buildings.

   Load Calculations – Compute seismic forces with IS codes.
   Structural Analysis – Apply static & dynamic methods.
   Ductile Detailing – Design safer beams, columns & joints.
   Component Design – Slabs, beams, columns, footings under seismic loads.
   Advanced Systems – Explore shear walls & base isolation.
   Hands‑On Practice – Real project‑based reinforcement detailing.

Learning Mode

 Program is available in Online and  Offline mode at Nagpur Centre

Duration

 Duration of Program is 60 hrs. in both Online and offline learning modes

Certification

Certification of Completion with verifiable ID will be issued after course completion

Fee & Offers

Rs. 9900 /-

Rs. 4890 /- (Introductory offer)

Contact us for Group discount

Learning Highlights

  Introduction to Earthquake Engineering: Understand seismic phenomena, seismic zones, and their impact on structures.

  Seismic Load Calculations: Learn methods like the Seismic Coefficient Method (IS 1893) to compute earthquake forces.

  Base Shear & Storey Shear: Calculate forces acting on multi‑storey RCC frames.

  Ductility Concepts: Grasp the importance of ductility in earthquake resistance and how to achieve it.

  Design & Detailing for Ductility: Apply IS 13920 guidelines for beams, columns, and joints.

  Structural Components under Seismic Loads: Design slabs, beams, columns, and footings considering earthquake effects.

  Seismic Analysis Techniques: Explore methods like equivalent static analysis and dynamic analysis

  Reinforcement Detailing: Hands‑on practice in detailing reinforcement for earthquake resistance.

  Use of Shear Walls & Base Isolation: Learn advanced techniques to enhance building stability.
  Practical Project Work: Experience project‑based learning simulating real design office scenarios.

Methodology

Learn–Do–Review approach.

  Learn: Understand technical concepts.

  Do: Hands-on sessions and spreadsheet development.

  Review: Online / offline tests to reinforce learning.

Online Portal Access

Participants receive:

  Free access to premium civil engg. courses for one year.

  Extra discount on premium courses after one year.

  Downloadable resource materials.

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    Email: support@gyanedge.net

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      Key Topics in Training Program

      Getting Ready
    • Revision of structural analysis and design fundamental concepts.
    • Understanding the architectural plan of G+4 story RCC residential building.
      Preparation of centre line diagram using industry grade drafting software.
      Assuming initial column, beam, and slab sizes, their orientation and positions.
      Computation of gravity loads as per IS:875.
      Introduction to Earthquake Engineering.
      Introduction to Structural Dynamics.
      Concept of Response Spectra.
      Review of IS:1893, and IS:13920.
      Seismic forces computation as per IS:1893.
      Equivalent Static Method and Response Spectrum Method.

      Modelling, Analysis, and Design using Analysis & Design Software as per IS:1893 and IS:13920

        Modelling of building geometry in software.
        Assigning Section Properties, Gravity Loads, Seismic Loads, Load Combinations, Design Commands, etc.
        Analysis of structure as per IS:1893 and IS:13920 and extraction of analysis results.

      Design of RCC Elements as per IS:456 & IS:13920

      RCC Design of Slabs, Beams, Columns, Foundation, and stair using IS:456-2000 and detailing as per SP34:1987, IS:13920.
      Development of MS Excel Spreadsheet for RCC Designs.

      Development of Structural Drawings using Drafting Software

      Structural Drawing for details at Foundation / Column Level.
      Structural Drawing for details at Plinth / Ground Beam level.
      Structural Drawing for details at Floor / Roof / Lintel Beam level.

      Introduction to Bar Bending Schedule (BBS)

      Manual computation of BBS.
      Development of MS Excel Spreadsheet for BBS.