Fire Analysis of Steel Structures according to Eurocodes
Fire Analysis of Steel Structures according to Eurocodes, available at $19.99, has an average rating of 4.35, with 29 lectures, based on 49 reviews, and has 225 subscribers.
You will learn about By the end of the course you will be able to calculate standard fire resistance of steel structural elements This course is ideal for individuals who are Course is intended for students, structural engineers, professionals who want to learn how to calculate standard fire resistance of steel structural elements according to Eurocodes It is particularly useful for Course is intended for students, structural engineers, professionals who want to learn how to calculate standard fire resistance of steel structural elements according to Eurocodes.
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Summary
Title: Fire Analysis of Steel Structures according to Eurocodes
Price: $19.99
Average Rating: 4.35
Number of Lectures: 29
Number of Published Lectures: 29
Number of Curriculum Items: 29
Number of Published Curriculum Objects: 29
Original Price: $39.99
Quality Status: approved
Status: Live
What You Will Learn
- By the end of the course you will be able to calculate standard fire resistance of steel structural elements
Who Should Attend
- Course is intended for students, structural engineers, professionals who want to learn how to calculate standard fire resistance of steel structural elements according to Eurocodes
Target Audiences
- Course is intended for students, structural engineers, professionals who want to learn how to calculate standard fire resistance of steel structural elements according to Eurocodes
Fire resistance of building structure« means the ability of the structure exposed to fire the appropriate time maintaining its strength. To recognize the precise value of the duration in which the construction retains its capacity, is crucial for fire-resistant design. Fire analysis calculation takes into account the actual technical state of construction material exposed to thermal impact or fire load and provide you with the critical temperature, e.g. the temperature to which the structure maintains its capacity or advice you of the optimal fire protection of the structural elements.
Why must we learn Fire Analysis?
Because we do not want that we have fire protection, which is oversized and as well uneconomical. On the other hand we do not want that the construction is in fire risk and does not allow a safe evacuation, as well as fire extinguishing and rescue.
Course Structure
In this course, I will present a thorough overview of structural fire analysis according to nominal temperature-time curves according to Eurocodes.
We will learn the following topics:
– What is thermal action?
– How to calculate temperature of protected and unprotected steel sections
– How to create load combinations for the fire limit states
– How to calculate fire resistance of structural members and their critical temperature
– Fire protection systems for steel structures
All chapters will also provide you with worked examples which will cover theoretical part presented. At the end you will be presented a calculation of critical temperature and required fire protection for typical structural elements of real structure.
I will provide you with an easy-to-follow material explanation, each section is clearly demonstrated in the presentation and covered with worked examples.
Course Curriculum
Chapter 1: Introduction
Lecture 1: Fire Analysis Course Introduction
Chapter 2: Impact of Fire on Structure
Lecture 1: Thermal Action
Lecture 2: Heat Transfer Mechanisms
Lecture 3: Section Factor
Lecture 4: Temperature of Unprotected Steel Sections
Lecture 5: Temperature of Protected Steel Sections
Chapter 3: Structural Fire Design Fundamentals
Lecture 1: Load Combinations
Lecture 2: Introduction to Mechanical Analysis
Lecture 3: Classification of Cross Sections
Chapter 4: Structural Fire Design in Strength Domain
Lecture 1: Tension Members
Lecture 2: Compression Members
Lecture 3: Shear Members
Lecture 4: Bending Members
Lecture 5: Combined Bending and Shear
Lecture 6: Combined Bending and Axial Force
Lecture 7: Critical Moment for LTB
Lecture 8: Lateral Torsional Buckling
Lecture 9: Combined Bending and Axial Compression
Lecture 10: Members with Class 4 Cross Sections
Chapter 5: Structural Fire Design in Temperature Domain
Lecture 1: Critical Temperature Calculation
Lecture 2: Iterative Procedure at Critical Temperature Caluclation
Chapter 6: Fire Protection of Steel Structures
Lecture 1: Fire Protection Systems
Lecture 2: Calculation of Fire Protection
Chapter 7: Worked Examples & Conclusions
Lecture 1: Structure Definition
Lecture 2: Main Beams
Lecture 3: Secondary Beams
Lecture 4: Columns
Lecture 5: Analysis of Results – Conclusions
Chapter 8: In Closing
Lecture 1: Thanks for joining the course!
Instructors
-
Primoz Kvaternik, M.Eng.
Structural Engineer & Technology Consultant
Rating Distribution
- 1 stars: 1 votes
- 2 stars: 0 votes
- 3 stars: 10 votes
- 4 stars: 17 votes
- 5 stars: 21 votes
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