Spreadsheets for Fire Design according to Eurocode 3 & 4
https://sites.google.com/view/ecapplied/fire-design
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Using spreadsheets to assist engineers and designers with Eurocodes 1, 3, and 4 for Structural Fire Design can be an efficient and practical approach:
- Eurocode 1 – Actions on Structures:
Eurocode 1-2, “Actions on Structures – Part 2: Actions on Structures Exposed to Fire,” provides guidance on the actions to be considered for structural design in fire situations. Engineers and designers can use spreadsheets to calculate the design fire loads, including thermal actions and other relevant actions based on the specific requirements of the project.
The spreadsheet can include input fields for relevant data, such as the fire scenario (temperature-time curve), material properties, and geometry of the structure. The spreadsheet should then perform the necessary calculations, considering temperature distribution, thermal expansion, and other fire-induced actions, as specified in Eurocode 1-2.
- Eurocode 3 – Design of Steel Structures:
Eurocode 3-1-2, “Structural Fire Design,” addresses the design of steel structures subjected to fire. Spreadsheets can be helpful in designing and assessing the behavior of steel elements in fire conditions.
The spreadsheet can include design equations and formulations from Eurocode 3-1-2 for calculating the load-bearing capacity of steel members exposed to fire. It should consider factors such as temperature-dependent material properties, load reduction factors, and other parameters relevant to structural fire design.
- Eurocode 4 – Design of Composite Steel and Concrete Structures:
Eurocode 4-1-2, “Structural Fire Design,” provides guidance on the design of composite steel and concrete structures under fire conditions. Spreadsheets can be used to perform calculations for composite members, considering the interaction between steel and concrete components during fire exposure.
The spreadsheet should incorporate the relevant design rules from Eurocode 4-1-2, including temperature profiles, material properties, load reduction factors, and other considerations for composite structures in fire situations.
Overall, the spreadsheets were designed to take inputs from the engineers and designers, perform the required calculations based on the Eurocodes, and provide design results for each structural element under fire conditions. Additionally, it is crucial to ensure that the spreadsheets are regularly updated to reflect the latest versions of the Eurocodes and any amendments or national annexes that may be applicable.
Spreadsheets can be valuable tools for engineers and designers, but it is crucial to verify the results with experienced professionals to ensure accuracy and safety in structural design. Consulting fire engineering experts is highly recommended for structural fire design.
User interface examples for Fire Design
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_01_tension-member.png?w=502)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_02_steel-beam.png?w=456)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_03_steel-column.png?w=391)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_04_welded-box-section.png?w=812)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_05_composite-beam.png?w=369)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_06_partially-encased-composite-beam.png?w=444)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_07_partially-encased-composite-column-simple-calculation-method.png?w=331)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_08_partially-encased-composite-column-tabulated-data-method.png?w=539)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_09_totally-encased-composite-column.png?w=505)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_10_concrete-filled-tube-hollow-section-tabulated-data-method.png?w=592)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_11_composite-slab.png?w=375)
![](https://ecapplied.wordpress.com/wp-content/uploads/2023/04/ec-fire-design_12_welded-h-section.png?w=757)
order now only from $ 1.99 USD
- Tension Member (1.99 USD)
- Steel Beam (2.99 USD)
- Steel Column (3.99 USD)
- Welded Box Section (1.99 USD)
- Composite Beam (2.99 USD)
- Partially Encased Composite Beam (3.99 USD)
- Partially Encased Composite Column (Simple Calculation Method) (3.99 USD)
- Partially Encased Composite Column (Tabulated Data Method) (3.99 USD)
- Totally Encased Composite Column (2.99 USD)
- Concrete Filled Tube-Hollow Section (Tabulated Data Method) (2.99 USD)
- Composite Slab (1.99 USD)
Offer full package of Fire Design spreadsheet (Eurocode 3 and 4) with only 30.99$
https://sites.google.com/view/ecapplied/fire-design
Payment method
Pay Pal me: paypal.me/ecapplied
or/and contact us: ecapplied@gmail.com
Transfer description: ecapplied_pay_for_apps_[name_of_spreadsheet_you’re_interested]
Example: ecapplied_pay_for_apps_joints cantilever (half joints)
Package of Steel Structures design calculation spreadsheet (Eurocode 3) | 33.99$ |
Package of Steel Connection design calculation spreadsheet (Eurocode 3) | 39.99$ |
Package of Steel Structures + Steel Connection (Eurocode 3) | 71.99$ |
Package of Concrete Structures design calculation spreadsheet (Eurocode 2) | 41.99$ |
Package of Steel Structures (Eurocode 3) + Concrete Structure (Eurocode 2) | 73.99$ |
Package of Fire design calculation spreadsheet (Eurocode 3 + 4) | 30.99$ |
Package of Steel Structures & Connection + Fire design (Eurocode 3 + 4) | 99.99$ |
Package of Steel (Eurocode 3) + Concrete (Eurocode 2) + Fire design (Eurocode 3 + 4) | 99.99$ |
FULL Package of Steel + Connection (Eurocode 3) & Concrete + Fire design (Eurocode 2, 3 & 4) | 129.99$ |
Or refer to each individual spreadsheet based on the values provided on the website: ecapplied.wordpress.com |
contact us: ecapplied@gmail.com
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