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advanced Design of steel industrial halls in 2d

This training focuses on advanced analysis and design methodologies for the 2D structural design of single-storey steel industrial buildings. The training is organized around the use of Consteel, but the principles can be applied to other structural design software as well. 

WHAT WILL YOU LEARN?

Use of 7DOF beam finite element 
Design 2D mainframes (portal and truss) for single-storey steel halls using hot-rolled, welded, or cold-formed members 
Elastic and plastic-hinge analysis options 
Strength and stability verifications to Eurocode 3, with references to AISC 360 and MBMA/AISC Design Guide 25 
Global buckling analysis including all possible failure modes (flexural buckling, torsional buckling, constrained axis buckling, lateral-torsional buckling, etc.)
Understand buckling sensitivity of structural members
Consider lateral stabilization options provided by purlins or roof sheeting 
Effect of roof in-plane stiffness on the stabilization  
Understand the General Method and review applicable imperfections 
Use Equivalent Imperfections and proceed with a design based on Geometrically Non-Linear Analysis (GNIA) 
See how connection stiffness affects global structural behavior 

details

Apply by: 30 October, 2025


important information

Next training date: 6 November, 2025
Language: English
Training duration: 6 hours
Location: Online, Microsoft Teams
Fee: from 98 € – see the pricing
Terms of Participation


WHO IS THIS TRAINING FOR?

This training is ideal for structural engineers seeking to specialize in the design of industrial halls, especially those focused on achieving optimal results by precisely evaluating the impact and interaction of every primary and secondary structural component. 


During the training

  • No Consteel license is needed for the training.
  • The training will be demonstrated in Consteel, but no prior experience or installation is required to follow along.
  • However if you would like to try the advanced analysis and design methods and tools discussed in the training you can do it with a 30-day Trial version for free.

Get to Know Your Trainer

Senior Research Engineer

Bálint is a structural engineer currently serving as Head of the R&D Group at Consteel. He leads the development of new software features, coordinates research activities, and manages international collaboration with Consteel partners. With over nine years of experience in structural analysis and software development, Bálint brings deep expertise in the finite element method, Eurocode 3, and AISC 360 standards. 

Previously, he worked as Engineering Manager for Butler Europe and Astron Building Systems, leading major European pre-engineered metal building producers, which has given him solid knowledge of this market segment. 
He has participated in several international steel-oriented conferences and is a member of the ECCS TC8 Committee. 

REGISTration

By joining, you gain access to a valuable training program and get 30-day Premium Membership for free! 


EARLY BIRD

17 October, 2025 15:00 (CET)

Full price

156

VAT EXCLUDED / PERSON*

FOR CONSTEEL USERS**

Pro

membership

117 156

VAT EXCLUDED / PERSON*

Premium

membership

98 156

VAT EXCLUDED / PERSON*

NORMAL

30 October, 2025 15:00 (CET)

Full price

195

VAT EXCLUDED / PERSON*

FOR CONSTEEL USERS**

Pro

membership

156 195

VAT EXCLUDED / PERSON*

Premium

membership

117 195

VAT EXCLUDED / PERSON*

FAQ

– Use of 7DOF beam finite element
– Design 2D mainframes (portal and truss) for single-storey steel halls using hot-rolled, welded, or cold-formed members
– Elastic and plastic-hinge analysis options 
– Strength and stability verifications to Eurocode 3, with references to AISC 360 and MBMA/AISC Design Guide 25 
– Global buckling analysis including all possible failure modes (flexural buckling, torsional buckling, constrained axis buckling, lateral-torsional buckling, etc.)
– Understand buckling sensitivity of structural members
– Consider lateral stabilization options provided by purlins or roof sheeting
– Effect of roof in-plane stiffness on the stabilization
– Understand the General Method and review applicable imperfections 
– Use Equivalent Imperfections and proceed with a design based on Geometrically Non-Linear Analysis (GNIA)
– See how connection stiffness affects global structural behavior 

This training is ideal for structural engineers seeking to specialize in the design of industrial halls, especially those focused on achieving optimal results by precisely evaluating the impact and interaction of every primary and secondary structural component. 

You will need a device with Microsoft Teams to attend the training. Participants may have the opportunity to perform some smaller calculations during the sessions. For these calculations, a computer with Windows 10/11 and Consteel 18 installed is required. A trial license for Consteel can be requested prior to the training. 

– Date: 6 November, 2025 
– Duration: 6 hours 
– Location: Online via Microsoft Teams 
– Language: English 

To join the training, you’ll need to: 

– Register before the application deadline (30 October, 2025) and complete payment.
– Have a stable internet connection and Microsoft Teams for online access.  

For further details, please read our Terms of Conditions

– No Consteel license is needed for the training.
– The training will be demonstrated in Consteel, but no prior experience or installation is required to follow along.
– However, if you would like to try the advanced analysis and design methods and tools discussed in the training, you can do it with a 30-day Trial version for free.

– The video of the training will be available for 1 month from the date of the training. 
– Participants will have access to example models from the training. 

Live participation is required as this is an interactive training. If you’re unable to attend, we can reserve a spot for you on a future training date. For more details, please refer to our Terms of Participation.

We upgrade all participants’ membership to a 30-days Premium Membership free of charge after completing the training. This includes access to the highest-level knowledge base materials, scripts, and our exclusive, direct engineering support.   

Companies with the valid EU VAT number, no VAT is charged.
– For companies in the European Union (without the valid EU VAT number), 27% VAT is charged.
– For individuals within the European Union, VAT is charged at the applicable rate of the customer’s country of residence.
– For taxable persons established in a third country (i.e., outside the European Union), no VAT is charged.
– For private individuals residing in a third country (i.e., outside the European Union), no VAT is charged.

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