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Analysis and Design of Buildings using STAAD.Pro - A Professional Approach in Pune

Become an expert in the use of STAAD.Pro for designing, modeling, and analysing buildings. This is a cornerstone course in the civil design domain.

12 weeks long course | 100% Online

Learn from leading experts in the industry

Project based learning with 2 industry level projects that learners can showcase on LinkedIn.

Learn Key Tools & Technologies STAAD.Pro

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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

STAAD.Pro is extensively used to automate, accelerate, and improve accuracy in the process of designing a variety of structures. Professionals use this tool in the industry to design and model structures according to design codes. On top of this, users can also perform structural analysis and mimic loading conditions that structures will experience in the real-world. Knowing how to work with STAAD.Pro when it comes to the design of buildings and other structures is a vital software skill for civil engineers and other professionals working in the industry. 

To provide a comprehensive understanding of the ins and outs of STAAD.Pro from a professional and industrial perspective, Skill-Lync offers this course on the Analysis and Design of Buildings using STAAD.Pro. 

By taking this course, learners will…

  • Understand how to work with the STAAD.Pro GUI.
  • Design and model RCC and steel structures according to IS Codes using STAAD.Pro. 
  • Calculate different loads (dead load, live load, seismic load, wind loads) acting on a structure according to IS Codes. 
  • Understand the parameters that go into the design of a building, and be able to interpret the output.
  • Be able to use STAAD Advanced Concrete Design for design calculations and documentation. 
  • Complete projects that require hands-on use of STAAD.Pro to design buildings according to industry specifications. 

Who can enrol in this course?

Students and working professionals with a background in civil engineering can take this course.

Course Syllabus in Pune

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

Week 1 - Introduction to Basics

STAAD.Pro is used to analyse structures made of a variety of materials, and simulate different loads that structures are subjected to. The STAAD.Pro user interface (UI) has a wide range of design parameters and tools for the development and analysis of both 2D and 3D models. To accurately design and model buildings, it is important for learners to understand the features of the STAAD.Pro UI. 

This week will cover

  • User interface (UI) of the software
  • Types of structures
  • Material specifications
  • Support conditions 
  • Design parameters
  • Analysis and post processing options available in STAAD.Pro

Week 2 - Modeling of RC Building

Reinforced concrete (RC) is made of cement concrete, and steel bar reinforcements that maximise the tensile strength and ductility of the material. By modelling RC buildings, engineers can understand the components and materials needed, as well as errors in the design that can be reduced before the actual construction phase. As RC buildings are common in the industry, it is important for learners to understand the process of developing them using STAAD.Pro. 

This week will cover

  • Steps involved in modelling, designing, and analysing RC structures
  • Structure’s framework
  • Structural elements

Week 3 - Input Generation

The materials, labour, design parameters, components, and other resources that go into the development of a building system are called inputs. These input parameters play a significant role in the behaviour of buildings, and are often specified by industry standards. It is important for learners to know how to input specific parameters on STAAD.Pro when designing a building. 

This week will cover

  • Material specifications
  • Assigning supports and constants
  • Design parameters of the model under study. 
  • Analysis of buildings according to requirements

Week 4 - Load Generation

When designing a building or any structure, civil engineers consider all the possible loads that could act on a structure into considerations. This includes wind loads, seismic loads, dead loads, live loads, and more. Load combinations occur when there are more than one type of load acting on a building. As all buildings experience loads, it is important for learners to understand how distinct loads are calculated and can be simulated using STAAD.

This week will cover

  • Load cases and load combinations 
  • Load calculations 
    • Dead load 
    • Live load 
    • Wind load 
  • Applying calculated load to software models

Week 5 - Analysis of the Model

After building models have been developed in the pre-processing step, the results from modelling and analysis can be studied and interpreted in the post-processing step using STAAD.Pro. As the post-processing step is crucial in the workflow of developing buildings, it is important for learners to understand how to interpret results in the post-processing step.

This week will cover

  • Complete analysis of the structure
  • Post-processing results 
  • Interpretation of results 
  • Extracting shear force diagram (SFD), bending moment diagram (BMD), reactions, and displacements for design purposes

Week 6 - Output Interpretation

The resulting building model will have information regarding displacements, forces, loads, stresses, reactions, and other related factors. These factors can be confirmed using manual calculation sheets, and interpreted for further understanding of the building’s behaviour under different conditions. In addition to designing building models, STAAD.Pro can also be used in the design of individual structural elements that makeup a building. To effectively understand the behaviour of a building, it is important for learners to understand how to interpret output values. 

This week will cover

  • Design of structural elements (slab, beam, column, and foundation) using STAAD.Pro
  • Verifying results with manual calculation sheets

Week 7 - Introduction to Steel Structures

Steel structures are common in the construction industry and are used in the design of buildings for their high tensile strength, ductility, stiffness, and toughness. These structures are made of different components connected together. It is important for learners to understand the individual steel components, and how they contribute to the strength and load-bearing capacities of the overall steel structure. 

This week will cover

  • Types of steel structures 
  • Components in a steel building 
    • Rafters 
    • Purlins 
    • Side wall and end wall girts
    • Column 
    • Bay spacing 
    • Cladding

Week 8 - Modelling of Steel Building

Steel structures can be modelled using individual steel components on STAAD.Pro. It is important to understand the tools and techniques used in the design and modelling of steel buildings. 

This week will cover

  • Study of a steel structure 
  • Modelling the structure using the coordinate method

Week 9 - Input Generation

When designing steel buildings, there are input parameters added in the preprocessing stage according to specific standards. These parameters are used to calculate loads, displacements, forces, and other factors. It is important for learners to understand the input parameters that they need to provide when designing a steel building using STAAD.Pro.

This week will cover

  • Input parameters according to specifications and standards. 
  • Calculation of loads in a steel building using Microsoft Excel 
  • Applying the calculated load on a model

Week 10 - Analysis of the Model

There are different types of linear and nonlinear methods of analysis used to analyse a model on STAAD.Pro. It is important for learners to understand how the resulting steel structure is studied and interpreted for use by civil engineers. 

This week will cover

  • Input parameters 
  • Design specifications 
  • Analysis of structures

Week 11 - Result Interpretation

After post-processing is complete, information from the output file can be used to gain information on different parameters such as the BMD and SFD. It is important for learners to understand how results are extracted, interpreted, and used. 

This week will cover

  • Interpretation of the output file generated
  • Extraction of results for each element in the building 
    • BMD 
    • SFD
    • Serviceability check

Week 12 - Documentation & Verification of the Output

Findings from results can be documented and verified by performing manual calculations. It is important for learners to know how to perform these manual calculations, and how to present their findings. 

This week will cover

  • Representing analysis in the form of documents and drawings 
  • Factors to be considered when representing the design (Detailing drawing with cross section (C/S) and longitudinal section (L/S))
  • Cross-checking extracted results from software with manual calculations

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

Industry Projects in Pune

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.

Design of Multistorey RCC Building according to Given Specifications using STAAD.Pro

Learners are required to design a G+10 storey RCC residential building using STAAD.Pro. They are to create a project plan and elevation for the building by following the Design Requirements Baseline (DRB). Learners are to adhere to design specification files and complete the project with Excel sheets and IS codes as reference.

Design of an Industrial Building using STAAD.Pro

Learners are required to design an industrial building made of structural steel using STAAD.Pro. They are to create a project plan and elevation for the building by following the Design Requirements Baseline (DRB). Learners are to adhere to design specification files and complete the project with Excel sheets and IS codes as reference.

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

Ratings & Reviews by Learners

Skill-Lync has received honest feedback from our learners around the globe.

Google Rating
4.6

Boost Your Resume with the Analysis and Design of Buildings using STAAD.Pro - A Professional Approach Course in Pune

Skill-Lync's STAAD.Pro course in Pune is a comprehensive learning program that covers all aspects of the software. It starts with the basics of structural analysis and design and gradually builds up to more advanced topics.

The STAAD.Pro classes in Pune are designed keeping in mind the needs of both students and working professionals. The course content has been curated by experts, and the instructional videos are easy to follow. In addition, there are plenty of projects and assignments to help you practice what you have learned.

The course covers topics such as steel and concrete design, trusses and frames, wind and seismic loads, and more. After course completion, you will be able to use STAAD.Pro for your projects.

FAQs on the Analysis and Design of Buildings using STAAD.Pro Course in Pune

Why should I choose the Analysis and Design of Buildings using STAAD.Pro course by Skill-Lync in Pune?

This STAAD.Pro course has been designed by experts in the field and offers a comprehensive overview of all the important aspects of structural engineering. You will learn about the different analysis and design methods and how to use STAAD.Pro to its full potential.

What are the prerequisites for taking up the Analysis and Design of Buildings using STAAD.Pro course in Pune?

Students from civil and structural backgrounds can pursue this STAAD.Pro certification course.

What is the program fee for Skill-Lync's Analysis and Design of Buildings using STAAD.Pro course in Pune?

Skill-Lync offers three options for enrollment: Basic, Pro, and Premium. The Basic Plan offers 2 months' access at Rs 7000 per month for 3 months. The Pro Plan provides 4 months' access at Rs 10,000 per month for 3 months and the Premium Plan offers lifetime access at Rs 15,000 per month for 3 months. 

What are the benefits of doing the Analysis and Design of Buildings using STAAD.Pro course in Pune

Pursuing a STAAD.Pro civil engineering course at Skill-Lync would offer many benefits to you.

  • Industry-oriented curriculum.
  • Hands-on experience in solving industry projects.
  • Email and forum support from the technical support team to clear your doubts.
  • A certificate of completion for all participants and a merit certificate for the top 5% of the scorers.

What are the career prospects after completing Skill-Lync's Analysis and Design of Buildings using STAAD.Pro course in Pune?

After completing the STAAD.Pro software course, you will be eligible for roles like:

  • Civil Structural Engineer
  • Structural Design Engineer
  • Architectural Engineer

After completing this course, what is the expected salary range?

The salary after completing the STAAD.Pro course in Pune depends upon your skills and experience. The average salary of a structural design engineer is Rs. 4.5 lakhs per annum.

Can you tell me more about Skill-Lync?

Skill-Lync is among India's leading EdTech platforms dedicated to transforming engineering education. We equip young engineers with the latest skill sets and cutting-edge tools in new-age technologies.
The brainchild of two engineers from Chennai, Skill-Lync, is on a mission to bridge the skill gap between aspiring professionals and the industry's demands through job-oriented courses.

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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5 years in the experience range

Instructors with 5 years extensive industry experience.

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Areas of expertise

  • Structural Engineering

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