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"Modelling, Analysis & Design of Steel Buildings" is an intensive course that covers a wide range of topics essential for understanding and designing steel structures.

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"Modelling, Analysis & Design of Steel Buildings" is an intensive course that covers a wide range of topics essential for understanding and designing steel structures.

The course begins with establishing the building information and initial model settings, followed by a detailed exploration of building geometry and member properties. Participants learn to create member groups, utilize section libraries, and assign materials.

Creation and assignment of Vertical and lateral loads are thoroughly addressed, including the load combinations. Analysis and design parameters are discussed, with a focus on interpreting results from both manual and software-based approaches.

Beam design is extensively covered, encompassing manual design methods, software-assisted design processes, and optimization strategies. Special attention is given to addressing failures, optimizing designs, and integrating services within beams.

Column design is similarly detailed, with participants learning manual and software-based approaches, failure mitigation, and optimization techniques. The course also delves into beam-column design, considering the interaction between these structural elements and addressing base plates and anchor bolts design.

Tension members and bracings are explored in depth, covering types, grades, and design methodologies. Participants gain insights into designing façade supporting structures, including mullions, transoms, and architecturally exposed steel elements.

Finally, planning and design approaches for terrace floors are discussed, ensuring participants understand the unique considerations involved in this aspect of steel building design.

By the end of the course, participants emerge equipped with the knowledge and skills necessary to model, analyze, and design steel buildings effectively and efficiently.

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What's inside

Syllabus

Structural Models for Analysis
This module covers the software aided structural modelling using STAAD Pro, including building geometry, member groups, section libraries, material properties, member specification, support conditions, loads, load combinations, and the analysis and design process. The module also addresses the interpretation of analysis and design results, providing insights into output visualization and understanding.
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Beam Design
This module focuses on beam design for buildings, presenting an overview of IS 800 standards, covering manual and software-based beam design. It addresses failure analysis, optimization, design of cantilever beams, service integration, built-up beams, torsion, and backup beam concepts. Additionally, the module explores simplified floor vibration analysis for comprehensive structural understanding.
Columns, Base Plate and Anchor Bolts
This module focuses on column design for buildings, covering manual and software-based approaches. It addresses failure analysis, optimization, and introduces a beam-column design approach. The content includes the design of beam-columns, base plates, and anchor bolts, providing a comprehensive overview of the structural design process for columns in building construction.
Tension Members, Bracings and Façade Supporting Elements
This module explores tension members in buildings, detailing types and grades. It covers the design of tension members, bracings, and façade supporting structures. Then the content delves into the design of mullions and transoms. Additionally the module also provides insights into the planning and design approach for terrace floors and architecturally exposed steel elements in building structures.

Good to know

Know what's good
, what to watch for
, and possible dealbreakers
Teaches the fundamentals of structural modelling, analysis, and design for steel buildings, making it suitable for beginners seeking a foundational understanding
Emphasizes hands-on learning through software-aided structural modelling using STAAD Pro, providing practical experience
Covers both manual and software-based design approaches, equipping learners with a comprehensive understanding of structural design principles
In-depth exploration of beam design, including failure analysis, optimization, and service integration, ensures a thorough grasp of beam design concepts
Explores advanced topics such as beam-column design, base plate and anchor bolt design, and façade supporting structures, catering to learners interested in specialized areas of structural engineering
Taught by subject matter experts, ensuring the course is up-to-date and aligned with industry best practices

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Activities

Be better prepared before your course. Deepen your understanding during and after it. Supplement your coursework and achieve mastery of the topics covered in Modelling, Analysis and Design of Steel Buildings with these activities:
Review Fundamentals of Structural Analysis
Refresh your foundational knowledge in structural analysis before starting the course.
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  • Review basic concepts of statics, such as forces, equilibrium, and moments.
  • Brush up on mechanics of materials, including stress, strain, and material properties.
  • Practice solving simple structural analysis problems.
Join a study group
Enhance your learning experience by joining a study group to collaborate with peers, discuss concepts, and reinforce your understanding.
Browse courses on Beam Design
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  • Find a study group or create your own with classmates or online.
  • Meet regularly to discuss the course material, work on assignments together, and quiz each other.
  • Share your knowledge and insights with others in the group.
Solve Structural Design Problems
Practice solving a variety of structural design problems to reinforce your understanding of concepts.
Browse courses on Beam Design
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  • Find practice problems from textbooks, online resources, or the course materials.
  • Attempt to solve the problems using manual methods or software.
  • Check your solutions against provided answers or consult with an instructor for feedback.
Five other activities
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Solve practice problems
Enhance your problem-solving skills and deepen your understanding of the course material by solving practice problems.
Browse courses on Beam Design
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  • Identify the topic you want to practice.
  • Find practice problems related to that topic from textbooks, online resources, or the course materials.
  • Attempt to solve the problems on your own.
  • Check your solutions against the provided answers or consult with the course instructor for guidance.
Analyze and Design a Structural Element
Create a practical project to apply the structural concepts and principles learned in the course.
Browse courses on Beam Design
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  • Identify a structural element to analyze and design, such as a beam, column, or truss.
  • Determine the loads and boundary conditions acting on the element.
  • Select appropriate materials and sections based on the design requirements.
  • Perform structural analysis using software or manual methods.
  • Design the element to meet the required strength, stiffness, and stability criteria.
Develop a Steel Building Design Presentation
Create a deliverable to showcase your understanding and skills in designing steel structures.
Browse courses on Building Design
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  • Select a suitable steel building project.
  • Perform structural analysis and design using software or manual methods.
  • Create a presentation that clearly explains your design approach, assumptions, and results.
  • Incorporate visuals, such as diagrams, charts, and CAD drawings, to support your presentation.
Follow Coursera's guided tutorials
Reinforce your understanding of the concepts covered in the course by following Coursera's guided tutorials.
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  • Access the tutorials section of the course platform.
  • Choose a tutorial that aligns with the topic you want to strengthen your knowledge in.
  • Follow the step-by-step instructions in the tutorial.
  • Complete the exercises and quizzes associated with the tutorial to test your understanding.
Create a technical blog
Solidify your understanding of the course concepts and improve your communication skills by creating a technical blog on a topic related to steel building design.
Browse courses on Structural Analysis
Show steps
  • Choose a specific topic within the course that you want to explore in depth.
  • Conduct research on the topic to gather relevant information.
  • Write a blog post that presents your findings, insights, and analysis.
  • Publish your blog post online and share it with others.

Career center

Learners who complete Modelling, Analysis and Design of Steel Buildings will develop knowledge and skills that may be useful to these careers:
Structural Detailer
A Structural Detailer creates detailed drawings of steel structures. Steel structures are essential to the construction industry and this course can help to build your grounding in the subject matter. The content of this course covers the analysis and design of steel buildings and provides a foundational understanding of this field. Overall, this course may be useful to a Structural Detailer.
Civil Engineer
A Civil Engineer plans, designs, and builds infrastructure projects. Steel structures are commonly used in the construction of bridges, buildings, and other civil engineering projects, so it is important for a Civil Engineer to understand steel structures. This course covers the essential aspects of steel structures and can contribute to the growth of your foundational knowledge in this area. Overall, this course may be useful to a Civil Engineer.
Building Code Official
A Building Code Official enforces building codes and regulations. Steel structures are widely used in construction and this course can help you to understand the essential aspects of steel structures. The content on the analysis and design of steel buildings can be particularly beneficial in this role. Overall, this course may be useful to a Building Code Official.
Construction Manager
A Construction Manager oversees the construction of buildings and other structures. Steel structures are widely used in construction and this course can help you to build the essential understanding of steel structures relevant to this role. The content on steel structures, beam design, and column design can all be beneficial for understanding how these structures are used in construction. Overall, this course may be useful to a Construction Manager.
Structural Engineer
A Structural Engineer works to ensure that buildings and structures are safe and can withstand natural disasters. Steel structures are commonly used for buildings and this course can contribute to your foundational understanding of the subject. Specifically, the content on beams, columns, tension members, and bracing can help you to better understand the principles behind the design of steel structures. Overall, this course may be useful to a Structural Engineer.
Forensic Engineer
A Forensic Engineer investigates the cause of building failures. Steel structures are commonly used in construction and this course can contribute to your foundational knowledge in the subject. The content of this course covers the analysis and design of steel buildings and can provide insights into the potential causes of structural failures. Overall, this course may be useful to a Forensic Engineer.
Building Inspector
A Building Inspector ensures that buildings and other structures are safe and comply with building codes. Steel structures are widely used in the construction industry and this course can help you to understand the essential aspects of steel structures. The content on the analysis and design of steel buildings can be particularly beneficial in this role. Overall, this course may be useful to a Building Inspector.
Architectural Drafter
An Architectural Drafter creates technical drawings and plans for buildings and other structures. Steel structures are commonly used in construction and this course can contribute to your foundational understanding of the subject. The content on the creation of member groups, utilization of section libraries, and assignment of materials can be particularly relevant. Overall, this course may be useful to an Architectural Drafter.
Construction Estimator
A Construction Estimator determines the cost of construction projects. Steel structures are commonly used in construction and this course can contribute to your understanding of the subject. The content on planning and design approaches for steel buildings can be particularly relevant to this role. Overall, this course may be useful to a Construction Estimator.
Real Estate Developer
A Real Estate Developer acquires land and develops it for commercial, residential, or industrial use. Steel structures are commonly used in construction and this course can contribute to your understanding of the subject. The content on planning and design approaches for steel buildings can be particularly relevant to this role. Overall, this course may be useful to a Real Estate Developer.
Project Manager
A Project Manager plans, organizes, and executes projects. Steel structures are commonly used in construction projects and this course can contribute to your understanding of the subject. The content on planning and design approaches for steel buildings can be particularly relevant to this role. Overall, this course may be useful to a Project Manager.
Geotechnical Engineer
A Geotechnical Engineer designs and evaluates the stability of foundations for buildings and other structures. Understanding steel structures is important in this role. This course can help you to build the essential grounding in steel structures that may be useful to a career as a Geotechnical Engineer.
Architect
An Architect designs buildings and other structures. Having an understanding of steel structures is very important for this role. This course can help you build the essential grounding in steel structures that may be useful to a career as an Architect. The content of this course is relevant to understanding the structural aspects of buildings and their design. Overall, this course may be helpful to an Architect.
Urban Planner
An Urban Planner plans the development of cities and towns. Steel structures are commonly used in construction and this course can contribute to your foundational understanding of the subject. The content on planning and design approaches for steel buildings can be particularly relevant to this role. Overall, this course may be useful to an Urban Planner.
Sustainability Consultant
A Sustainability Consultant advises clients on how to make their buildings and other structures more sustainable. Steel structures can be used in sustainable construction and this course can contribute to your foundational understanding of the subject. The content on the planning and design approaches for terrace floors can be particularly relevant to this role. Overall, this course may be useful to a Sustainability Consultant.

Reading list

We've selected eight books that we think will supplement your learning. Use these to develop background knowledge, enrich your coursework, and gain a deeper understanding of the topics covered in Modelling, Analysis and Design of Steel Buildings.
This handbook provides a comprehensive overview of steel construction. It covers a wide range of topics, including material properties, structural analysis, and design methods.
This document provides the full text of Eurocode 3, which is the European standard for the design of steel structures. It valuable reference for engineers and designers who work with steel structures in Europe.
Provides a comprehensive overview of steel structures, covering topics such as structural analysis, design, and construction. It valuable resource for students and professionals alike.
Provides a detailed guide to the design of steel buildings to Eurocodes. It covers a wide range of topics, including member design, connection design, and overall structural analysis.
This textbook provides a comprehensive overview of steel structures, covering topics ranging from analysis and design to fabrication and construction. It would serve as a useful reference for further understanding the concepts taught in the course.
Focuses on the stability of steel structures, covering topics such as buckling, lateral instability, and dynamic stability. It would be a useful resource for students and professionals who want to gain a deeper understanding of these important design considerations.
This textbook covers a wide range of topics in steel structure design, including the design of beams, columns, and connections. It would be a useful reference for students who want to further explore the design aspects covered in the course.
Provides a comprehensive overview of the limit state design method for steel structures. It would be a helpful resource for students who want to gain a deeper understanding of this design approach.

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