/  Structural Steel Design - Pipe Rack, Shelters, Pipe Supports, Platforms and Ladders Training

Structural Steel Design - Pipe Rack, Shelters, Pipe Supports, Platforms and Ladders Training

BMC Training provides a training course in Structural Steel Design - Pipe Rack, Shelters, Pipe Supports, Platforms and Ladders in Construction and Civil Engineering Training

Course Title
Venue
Start Date
End Date
  • London
    5 - 7 - 2020
    9 - 7 - 2020
  • Madrid
    5 - 7 - 2020
    9 - 7 - 2020
  • Munich
    5 - 7 - 2020
    9 - 7 - 2020
  • Berlin
    5 - 7 - 2020
    9 - 7 - 2020
  • New York
    5 - 7 - 2020
    9 - 7 - 2020
  • Istanbul
    12 - 7 - 2020
    16 - 7 - 2020
  • Bali
    12 - 7 - 2020
    16 - 7 - 2020
  • Singapore
    12 - 7 - 2020
    16 - 7 - 2020
  • Washington
    12 - 7 - 2020
    16 - 7 - 2020
  • Istanbul
    19 - 7 - 2020
    23 - 7 - 2020
  • Bali
    19 - 7 - 2020
    23 - 7 - 2020
  • Singapore
    19 - 7 - 2020
    23 - 7 - 2020
  • Washington
    19 - 7 - 2020
    23 - 7 - 2020
  • Dubai
    26 - 7 - 2020
    30 - 7 - 2020
  • Paris
    26 - 7 - 2020
    30 - 7 - 2020
  • Hong Kong
    26 - 7 - 2020
    30 - 7 - 2020
  • Kuala Lumpur
    2 - 8 - 2020
    6 - 8 - 2020
  • Rome
    2 - 8 - 2020
    6 - 8 - 2020
  • Barcelona
    2 - 8 - 2020
    6 - 8 - 2020
  • Zurich
    2 - 8 - 2020
    6 - 8 - 2020
  • London
    9 - 8 - 2020
    13 - 8 - 2020
  • Madrid
    9 - 8 - 2020
    13 - 8 - 2020
  • Munich
    9 - 8 - 2020
    13 - 8 - 2020
  • Berlin
    9 - 8 - 2020
    13 - 8 - 2020
  • New York
    9 - 8 - 2020
    13 - 8 - 2020
  • Dubai
    16 - 8 - 2020
    20 - 8 - 2020
  • Paris
    16 - 8 - 2020
    20 - 8 - 2020
  • Hong Kong
    16 - 8 - 2020
    20 - 8 - 2020
  • Istanbul
    23 - 8 - 2020
    27 - 8 - 2020
  • Bali
    23 - 8 - 2020
    27 - 8 - 2020
  • Singapore
    23 - 8 - 2020
    27 - 8 - 2020
  • Washington
    23 - 8 - 2020
    27 - 8 - 2020
  • London
    27 - 9 - 2020
    1 - 10 - 2020
  • Madrid
    27 - 9 - 2020
    1 - 10 - 2020
  • Munich
    27 - 9 - 2020
    1 - 10 - 2020
  • Berlin
    27 - 9 - 2020
    1 - 10 - 2020
  • New York
    27 - 9 - 2020
    1 - 10 - 2020
  • Istanbul
    6 - 9 - 2020
    10 - 9 - 2020
  • Bali
    6 - 9 - 2020
    10 - 9 - 2020
  • Singapore
    6 - 9 - 2020
    10 - 9 - 2020
  • Washington
    6 - 9 - 2020
    10 - 9 - 2020
  • Kuala Lumpur
    13 - 9 - 2020
    17 - 9 - 2020
  • Rome
    13 - 9 - 2020
    17 - 9 - 2020
  • Barcelona
    13 - 9 - 2020
    17 - 9 - 2020
  • Zurich
    13 - 9 - 2020
    17 - 9 - 2020
  • Dubai
    20 - 9 - 2020
    24 - 9 - 2020
  • Paris
    20 - 9 - 2020
    24 - 9 - 2020
  • Hong Kong
    20 - 9 - 2020
    24 - 9 - 2020
  • Kuala Lumpur
    18 - 10 - 2020
    22 - 10 - 2020
  • Rome
    18 - 10 - 2020
    22 - 10 - 2020
  • Barcelona
    18 - 10 - 2020
    22 - 10 - 2020
  • Zurich
    18 - 10 - 2020
    22 - 10 - 2020
  • London
    25 - 10 - 2020
    29 - 10 - 2020
  • Madrid
    25 - 10 - 2020
    29 - 10 - 2020
  • Munich
    25 - 10 - 2020
    29 - 10 - 2020
  • Berlin
    25 - 10 - 2020
    29 - 10 - 2020
  • New York
    25 - 10 - 2020
    29 - 10 - 2020
  • Dubai
    4 - 10 - 2020
    8 - 10 - 2020
  • Paris
    4 - 10 - 2020
    8 - 10 - 2020
  • Hong Kong
    4 - 10 - 2020
    8 - 10 - 2020
  • Istanbul
    11 - 10 - 2020
    15 - 10 - 2020
  • Bali
    11 - 10 - 2020
    15 - 10 - 2020
  • Singapore
    11 - 10 - 2020
    15 - 10 - 2020
  • Washington
    11 - 10 - 2020
    15 - 10 - 2020
  • London
    15 - 11 - 2020
    19 - 11 - 2020
  • Madrid
    15 - 11 - 2020
    19 - 11 - 2020
  • Munich
    15 - 11 - 2020
    19 - 11 - 2020
  • Berlin
    15 - 11 - 2020
    19 - 11 - 2020
  • New York
    15 - 11 - 2020
    19 - 11 - 2020
  • Istanbul
    22 - 11 - 2020
    26 - 11 - 2020
  • Bali
    22 - 11 - 2020
    26 - 11 - 2020
  • Singapore
    22 - 11 - 2020
    26 - 11 - 2020
  • Washington
    22 - 11 - 2020
    26 - 11 - 2020
  • Kuala Lumpur
    1 - 11 - 2020
    5 - 11 - 2020
  • Rome
    1 - 11 - 2020
    5 - 11 - 2020
  • Barcelona
    1 - 11 - 2020
    5 - 11 - 2020
  • Zurich
    1 - 11 - 2020
    5 - 11 - 2020
  • Dubai
    8 - 11 - 2020
    12 - 11 - 2020
  • Paris
    8 - 11 - 2020
    12 - 11 - 2020
  • Hong Kong
    8 - 11 - 2020
    12 - 11 - 2020
  • Kuala Lumpur
    20 - 12 - 2020
    24 - 12 - 2020
  • Rome
    20 - 12 - 2020
    24 - 12 - 2020
  • Barcelona
    20 - 12 - 2020
    24 - 12 - 2020
  • Zurich
    20 - 12 - 2020
    24 - 12 - 2020
  • London
    27 - 12 - 2020
    31 - 12 - 2020
  • Madrid
    27 - 12 - 2020
    31 - 12 - 2020
  • Munich
    27 - 12 - 2020
    31 - 12 - 2020
  • Berlin
    27 - 12 - 2020
    31 - 12 - 2020
  • New York
    27 - 12 - 2020
    31 - 12 - 2020
  • Dubai
    13 - 12 - 2020
    17 - 12 - 2020
  • Paris
    13 - 12 - 2020
    17 - 12 - 2020
  • Hong Kong
    13 - 12 - 2020
    17 - 12 - 2020
  • Istanbul
    6 - 12 - 2020
    10 - 12 - 2020
  • Bali
    6 - 12 - 2020
    10 - 12 - 2020
  • Singapore
    6 - 12 - 2020
    10 - 12 - 2020
  • Washington
    6 - 12 - 2020
    10 - 12 - 2020

Course Description

Steel is the most used construction material in the USA for industrial buildings, high-rise towers, bridges and other structures. It competes with reinforced concrete in the world because of its many favorable characteristics including high strength, high stiffness, ductility and toughness, speed of erection, competitive cost, etc. Its use in the Middle East region has been mostly confined to industrial plants, offshore structures and warehouses. The lower construction time and it can be used as a temporary structure make it competitive than the concrete structure.

Design of steel structures has widely been based on the Allowable Stress Design based on the AISC. Many designers and fabricators still use the old allowable stress techniques.

The petroleum industry is interesting in modify the structure in case of offshore structures topsides or in the on shore facilities to carry more load or add more machine so the management of change must be considered and important.

Course Objective

  • This course is intended to overview modern procedures for the design and erection of structural steel buildings especially for oil and gas industry.
  • This course will increase the knowledge and assist in using new tools for designing and construction the steel structure for new project or modify the existing one.
  • The interaction between concrete and steel will be defined. The anchor bolts, machine skid design, construction and installation will be discussed theoretically and practically.
  • For those engineers with limited practical experience the course will illustration of real design and construction issues that may assist the designer to conceive of a structural steel system that is safe, economical and constructible.
  • The rule of thumb to check the steel structure or to  modify the deck in case of offshore  and onshore structures.
  • The course will be started from the basics to ensure the full participation of all attendees.

Course Outline

  • Introduction
  • The case for steel use in construction.
  • Structure system
  • The comparison between different structure system
  • Define the appraise, select and define step in steel structure projects
  • Available steel grades and sections.
  • Codes of practice for design, evolution from allowable stress to LRFD and limit state design.
  • Preparing SOR and BOD
  • Codes and standards Philosophy 
  • Selection of structural systems
  • Rigidly connected frames
  • Plane trusses
  • Space trusses
  • Design of tension members
  • Design of compression members.
  • Design of Beams
  • Design of Beam-Columns
  • Different types of temporary support
  • Bolted connections design
  • Welded connections design
  • Fabrication and erection of steel connection
  • New methods for connecting steel to Concrete.
  • Anchor bolt design
  • Types of different soil
  • Choose suitable foundation based on soil type
  • The required simple test to identify the soil
  • Foundation under reciprocating and centrifugal machine
  • Dynamic analysis calculation for steel skid
  • Using CFRP in Steel structure
  • Fabrication and erection of CFRP
  • Design of composite beams.
  • Design of composite columns
  • Design of composite slabs
  • Preparation of fabrication and erection shop-drawings
  • Specifying structural steel

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