Pipe Rack and Industrial Steel Design Course
At a glance
- Duration
- 5 days
- Format
- Classroom
- Cities
- Tbilisi, Prague, Milan, Singapore, Cairo, Frankfurt and more
- Next session
- 12 – 16 October 2026, Tbilisi
- Average fee
- 7,550 €
Overview
Pipe Rack and Industrial Access Steel Design Course is a five-day advanced course for structural, civil, piping, plant, fabrication, and review teams who leave with an Industrial Steel Structure Design Basis. Participants connect pipe rack layouts, load paths, stability systems, pipe-support interfaces, access platforms, ladders, connections, fabrication, and erection. The course turns multidisciplinary inputs into traceable steel design coordination decisions. Agile Leaders Training Center presents pipe rack and industrial access steel design through practical engineering artifacts.
Who Should Attend
- Teams responsible for pipe rack, shelter, pipe-support, platform, and ladder structural systems
- Functions defining piping loads, equipment reactions, thermal effects, and operational cases
- Personnel coordinating steel members, bracing, connections, bases, and foundations
- Groups preparing fabrication details, erection sequences, and constructability reviews
- Reviewers checking structural design inputs, interfaces, assumptions, and deliverables
The course assumes participants can interpret structural drawings and basic steel calculations, and it leaves out project-specific analysis, final design, piping stress analysis, approvals, and professional certification.
Departments and Industries
The course supports departments and industries responsible for industrial steel systems, plant projects, technical assurance, and field delivery.
- Structural engineering, civil engineering, piping, and plant layout
- Petrochemical, chemical processing, power, and utilities
- Manufacturing, minerals processing, logistics, and industrial facilities
- Fabrication, detailing, construction, and erection supervision
- Engineering consultancy, project management, procurement, and quality assurance
Learning Objectives
By the end of this course, participants will be able to:
- Analyze pipe rack layouts, load cases, and transfer paths
- Evaluate transverse, longitudinal, and local stability systems
- Compare member, bracing, connection, and base-interface concepts
- Apply pipe-support, thermal, equipment, platform, and ladder coordination checks
- Build fabrication, erection, constructability, and quality review controls
- Prioritize decisions in an Industrial Steel Structure Design Basis
Course Agenda
Day 1: Systems, Layouts, and Design Inputs
- Pipe Rack, Shelter, Support, and Access System Classification
- Structural Grid, Bay, Elevation, and Expansion Layout Map
- Piping, Cable Tray, Equipment, and Access Interface Register
- Design Responsibility and Multidisciplinary Input Matrix
- Industrial Steel Structure Design-Criteria Brief
Day 2: Loads, Transfer, and Stability
- Gravity, Piping, Equipment, Environmental, and Maintenance Load Schedule
- Thermal, Friction, Anchor, Guide, and Operational Effect Map
- Load Combination and Governing-Case Decision Table
- Transverse Frame and Longitudinal Bracing Load-Path Diagram
- Overall, Member, and Local Stability Review Checklist
Day 3: Members, Bracing, and Supports
- Beam, Column, Strut, and Brace Behavior Screen
- Member Sizing and Utilization Review Sheet
- Pipe Shoe, Guide, Anchor, and Support Interface Matrix
- Equipment Shelter Framing and Serviceability Check Map
- Expansion Joint and Structural Break Coordination Plan
Day 4: Connections, Access, and Delivery
- Bolted and Welded Connection Design-Intent Schedule
- Base Plate, Anchor, Pedestal, and Foundation Interface Register
- Platform, Grating, Stair, Handrail, and Ladder Coordination Checklist
- Fabrication Detail and Shop-Drawing Review Workflow
- Erection Sequence, Tolerance, Access, and Quality Control Plan
Day 5: Industrial Steel Design Basis Practice
- Exercise: Define the Structural Layout and Interface Register
- Exercise: Build the Load Schedule and Stability Diagram
- Exercise: Screen Members, Bracing, Supports, and Connections
- Exercise: Resolve Access, Fabrication, and Erection Constraints
- Capstone Exercise: Industrial Steel Structure Design Basis
Practical Exercises
The course uses suggested activities to connect design inputs, structural behavior, multidisciplinary interfaces, and delivery controls.
- Suggested activity: map rack bays, elevations, supported systems, equipment shelters, access routes, structural breaks, and discipline responsibilities for an industrial case.
- Suggested activity: organize gravity, piping, equipment, thermal, environmental, and maintenance actions into a load schedule and load-path diagram.
- Suggested activity: compare framing, bracing, member, support, connection, and base concepts against stability, serviceability, access, and constructability criteria.
- Suggested activity: integrate assumptions, interfaces, checks, details, erection constraints, quality controls, and open decisions in an Industrial Steel Structure Design Basis.
FAQs
Who suits the pipe rack and industrial access steel design course and what does it assume?
It suits structural, civil, piping, plant, fabrication, construction, and review teams responsible for industrial steel systems, and assumes they can interpret structural drawings and basic steel calculations.
How does pipe rack steel design differ from a general structural steel design course?
Pipe rack steel design centers on piping reactions, thermal effects, equipment and cable interfaces, longitudinal and transverse stability, access structures, fabrication, and erection constraints that are specific to industrial facilities.
How are loads coordinated for structural steel pipe racks?
Loads are coordinated through a responsibility matrix, load schedule, operating-case register, support map, combination table, and load-path diagram that connect piping, equipment, electrical, structural, and maintenance inputs.
Why are expansion and thermal effects important in pipe rack design?
Expansion and thermal effects influence anchors, guides, friction forces, structural breaks, longitudinal bracing, member demand, connections, and the distribution of reactions between the piping and structural systems.
What belongs in an Industrial Steel Structure Design Basis?
The design basis records system layouts, criteria, loads, combinations, load paths, stability systems, member and connection concepts, interfaces, access provisions, fabrication and erection controls, assumptions, checks, and open decisions.
Conclusion
Participants take back an Industrial Steel Structure Design Basis linking layouts, loads, stability, supports, access, connections, and delivery controls. It changes fragmented discipline inputs into a traceable basis for pipe rack and industrial access decisions. The design basis supports coordinated engineering without replacing project-specific analysis, final design, piping stress analysis, approvals, or professional certification.
credits: 5 credit per day
Course Mode: full-time
Provider: Agile Leaders Training Center
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Events for this Course
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Tbilisi 12 – 16 October 2026
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Prague 2 – 6 November 2026
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Milan 16 – 20 November 2026
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Singapore 23 – 27 November 2026
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Cairo 30 November – 4 December 2026
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Frankfurt 30 November – 4 December 2026
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London 14 – 18 December 2026
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Tokyo 21 – 25 December 2026
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New York 21 – 25 December 2026
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Marbella 27 – 31 December 2026
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Trabzon 3 – 7 January 2027
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Amman 10 – 14 January 2027
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Athens 18 – 22 January 2027
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Abu Dhabi 25 – 29 January 2027
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Seoul 1 – 5 February 2027
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Chicago 7 – 11 February 2027
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Dubai 8 – 12 February 2027
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Manama 14 – 18 February 2027
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San Diego 22 – 26 February 2027
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Bali 28 February – 4 March 2027
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Madrid 15 – 19 March 2027
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Kuwait 21 – 25 March 2027
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Nice 29 March – 2 April 2027
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Baku 5 – 9 April 2027
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Cape town 11 – 15 April 2027
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Nairobi 18 – 22 April 2027
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Rome 26 – 30 April 2027
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Bangkok 2 – 6 May 2027
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Tashkent 9 – 13 May 2027
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Zanzibar 23 – 27 May 2027
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Muscat 13 – 17 June 2027
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Istanbul 21 – 25 June 2027
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Jakarta 21 – 25 June 2027
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Langkawi 4 – 8 July 2027
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Sharm El-Sheikh 5 – 9 July 2027
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Phuket 11 – 15 July 2027
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Vienna 12 – 16 July 2027
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Accra 18 – 22 July 2027
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London 19 – 23 July 2027
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Barcelona 26 – 30 July 2027
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Munich 26 – 30 July 2027
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Paris 2 – 6 August 2027
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Montreux 2 – 6 August 2027
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Porto 9 – 13 August 2027
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Lisbon 16 – 20 August 2027
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Abu Dhabi 23 – 27 August 2027
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Doha 29 August – 2 September 2027
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Dubai 30 August – 3 September 2027
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Geneva 5 – 9 September 2027
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Amsterdam 13 – 17 September 2027
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Johannesburg 19 – 23 September 2027
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Casablanca 20 – 24 September 2027
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Berlin 27 September – 1 October 2027
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Zoom 4 – 8 October 2027
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Toronto 10 – 14 October 2027
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Kuala Lumpur 11 – 15 October 2027
| Image | Location | Dates | Duration | Mode | Price | Actions |
|---|---|---|---|---|---|---|
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Madrid |
Week 11, 2027 15 – 19 March 2027 |
5 Days | Onsite | €6,500 | |
|
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Kuwait |
Week 11, 2027 21 – 25 March 2027 |
5 Days | Onsite | €7,000 | |
|
|
Nice |
Week 13, 2027 29 March – 2 April 2027 |
5 Days | Onsite | €8,000 | |
|
|
Baku |
Week 14, 2027 5 – 9 April 2027 |
5 Days | Onsite | €8,000 | |
|
|
Cape town |
Week 14, 2027 11 – 15 April 2027 |
5 Days | Onsite | €6,000 | |
|
|
Nairobi |
Week 15, 2027 18 – 22 April 2027 |
5 Days | Onsite | €6,000 | |
|
|
Rome |
Week 17, 2027 26 – 30 April 2027 |
5 Days | Onsite | €6,500 | |
|
|
Bangkok |
Week 17, 2027 2 – 6 May 2027 |
5 Days | Onsite | €8,000 | |
|
|
Tashkent |
Week 18, 2027 9 – 13 May 2027 |
5 Days | Onsite | €8,000 | |
|
|
Zanzibar |
Week 20, 2027 23 – 27 May 2027 |
5 Days | Onsite | €6,000 | |
|
|
Muscat |
Week 23, 2027 13 – 17 June 2027 |
5 Days | Onsite | €6,500 | |
|
|
Istanbul |
Week 25, 2027 21 – 25 June 2027 |
5 Days | Onsite | €6,000 | |
|
|
Jakarta |
Week 25, 2027 21 – 25 June 2027 |
5 Days | Onsite | €8,000 | |
|
|
Langkawi |
Week 26, 2027 4 – 8 July 2027 |
5 Days | Onsite | €8,000 | |
|
|
Sharm El-Sheikh |
Week 27, 2027 5 – 9 July 2027 |
5 Days | Onsite | €5,200 | |
|
|
Phuket |
Week 27, 2027 11 – 15 July 2027 |
5 Days | Onsite | €8,000 | |
|
|
Vienna |
Week 28, 2027 12 – 16 July 2027 |
5 Days | Onsite | €7,500 | |
|
|
Accra |
Week 28, 2027 18 – 22 July 2027 |
5 Days | Onsite | €6,000 | |
|
|
London |
Week 29, 2027 19 – 23 July 2027 |
5 Days | Onsite | €6,500 | |
|
|
Barcelona |
Week 30, 2027 26 – 30 July 2027 |
5 Days | Onsite | €6,500 |
Frequently asked questions
What does this course cover?
OverviewPipe Rack and Industrial Access Steel Design Course is a five-day advanced course for structural, civil, piping, plant, fabrication, and review teams who leave with an Industrial Steel Structure Design Basis. Participants connect pipe rack layouts, load paths, stability systems, pipe-support interfaces, access platforms, ladders, connections, fabr…
Are training dates available?
Yes. Available dates and destinations are listed in the course dates section on this page.
How can I register?
Choose an available date on this page and complete the registration form, or send a programme enquiry.
Can I download the course brochure?
Yes. Use the brochure download link provided on this page.
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