Analysis and Design of Reinforced Cement Concrete and Steel Structures using Tekla Structural Designer

BY
Skill Lync

Mode

Online

Duration

12 Weeks

Quick Facts

particular details
Medium of instructions English
Mode of learning Self study
Mode of Delivery Video and Text Based

Course and certificate fees

The fees for the course Analysis and Design of Reinforced Cement Concrete and Steel Structures using Tekla Structural Designer is -

HeadAmount
Programme feesRs. 40,000
certificate availability

Yes

certificate providing authority

Skill Lync

The syllabus

Week 1 - Planning Structural Layout and Introduction to Tekla Structural Designer

  • Program interface and commands required to run the program
  • Development of structural layout plans for industrial steel structures 
  • Basics of grids and construction levels

Week 2 - Modeling Industrial Steel Structures (Part 1)

  • Modelling of steel columns
  • Modelling of steel beams on the ground floor
  • Managing properties using TSD
  • Validation of the model

Week 3 - Modeling Industrial Steel Structures (Part 2)

  • Modelling of beams for floor with reference to the structural plan
  • Modelling of longitudinal and plan bracings
  • Modelling of slabs

Week 4 - Loading Industrial Steel Structures (Part 1)

  • Load applications
  • Gravity loads and their application on the model according to IS codes
  • Calculation and application of dead loads
  • Calculation and application of live loads
  • Calculation and application of crane loads

Week 5 - Loading Industrial Steel Structures (Part 2)

  • Calculating lateral loads based on IS codes and applying them to the steel structure model
  • Calculation and application of manual wind load 
  • Application of wind load using Wind Wizard in the software
  • Calculation and applicatiton of seismic load in the model

Week 6 - Analysis and Design of Steel Structures

  • Check and review analysis settings
  • Analysis of the model
  • Interpretation of analysis to understand the behavior of the structure
  • Design of substructure and superstructure elements 

Week 7 - Modeling RC Residential Structures

  • Modeling and designing an RC residential building
  • Structural layout plan for an RC structure based on architectural drawings
  • Generating a new model
  • Grid modeling
  • Unique floor models in TSD
  • Modelling of RC Columns
  • Modelling of RC Beams
  • Modelling of Shear Walls 

Week 8 - Loading for RC Residential Structure

  • Calculation of gravity loads and lateral loads and applying the loads to the model according to inputs and IS codes
  • Calculation and application of dead loads
  • Calculation and application of live loads
  • Calculation and application of wind loads 

Week 9 - Loading and Analysis of RC Residential Structures

  • Lateral loadings based on inputs and IS Code - running analysis on the same
  • Calculation and application of seismic load 
  • Check and review analysis settings
  • Analysis of the model
  • Interpretation of analysis results to understand the behavior of the structure

Week 10 - Design of RC Residential Structure

  • Designing structural elements
  • Grouping members
  • Check and design of column size and reinforcement
  • Check and design of beam size and reinforcement
  • Group members based on detailing

Week 11- Design of RC Residential Structures

  • Design of floor slabs
  • Design foundation for the building
  • Report generation for structures

Week 12 - Generating Reports and Drawings for Industrial Steel Structures and RC Structures

  • How to generate reports and drawings used for submission while working on a live project
  • Generating reports for members using the steel and RC model
  • Managing the drawing layers in the software
  • Generating arrangement and detail drawings from the Steel and RC Model

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