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FROM DESIGN TO FABRICATION
STRUCTURAL BIM
WORKFLOW
www.topbimcompany.com
WHAT IS
STRUCTURAL BIM?
Structural BIM is the process of creating and managing
digital models of structural systems within a building or
structure.
These models contain information about the structural
components, their properties, and how they interact
with other systems within the building.
Structural BIM is used by structural engineers,
architects, and other stakeholders to design and analyze
the building's structural systems.
THE INDUSTRY NOW AND IN THE FUTURE
According to a report by MarketsandMarkets, the global market for BIM software is expected to
grow from $4.9 billion in 2020 to $8.8 billion by 2025, at a CAGR of 12.5% during the forecast
period.
BIM is becoming an increasingly essential tool. According
to a survey by Engineering News-Record, 68% of
structural engineers used BIM on more than half of their
projects in 2020, compared to 58% in 2018.
The implementation of Structural BIM workflows can lead
to significant cost savings, with one report estimating
that the use of BIM can reduce construction costs by up
to 20%.
These statistics demonstrate the growing adoption of
Structural BIM in the construction industry and highlight
some of the benefits associated with its use.
IN THE STRUCTURAL ENGINEERING
INDUSTRY
HOW BIM CAN HELP STRUCTURAL ENGINEERS?
Structural Analysis: BIM software can be used to analyze the
structural systems and ensure that they are safe and efficient. This
can be done in real-time, allowing engineers to make adjustments and
optimizations as needed.
Clash Detection: BIM software can detect clashes between different
building systems, such as structural and MEP systems.
Detailed Documentation: BIM software enables the creation of detailed
documentation for the structural systems. This documentation can include
3D models, construction drawings, and material schedules.
Fabrication: BIM software can be used to create detailed fabrication
models for the structural systems. These models can be used to generate
shop drawings and CNC files, which can be used to manufacture the
structural components off-site.
Structural engineers play a critical role in the construction process. They are responsible for the BIM structural
design and analysis that support the building or structure. BIM can help structural engineers in several ways:
STRUCTURAL BIM WORKFLOWS FROM DESIGN TO
FABRICATION
BIM software such as Autodesk, Tekla, and Graphisoft ArchiCAD are used throughout the entire
workflow, enabling stakeholders to collaborate and share information.
BENEFITS OF STRUCTURAL BIM
01
IMPROVED COLLABORATION
Structural BIM allows architects, engineers, and other stakeholders to collaborate more effectively. It provides a common digital environment
where stakeholders can share information and make decisions together.
02 ENHANCED DESIGN QUALITY
Structural BIM enables the creation of detailed 3D models that can be used to detect and resolve design conflicts before construction
begins. This helps to ensure that the building is designed to the highest quality standards.
03 INCREASED EFFICIENCY
Structural BIM enables the creation of accurate and detailed construction documentation. This reduces the time and cost associated with
creating and revising documentation.
04 IMPROVED SAFETY
Structural BIM allows designers to analyze the structural systems for safety and performance. This helps to identify potential safety hazards
and prevent accidents on the construction site.
05 BETTER SUSTAINABILITY
Structural BIM enables the creation of more sustainable buildings. The ability to analyze and optimize structural systems can lead to
significant energy savings and reduced environmental impact.
To know more about Structural BIM,
Connect with us.
Email
info@topbimcompany.com
Website
www.topbimcompany.com
Call us
(240) 899 7711

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Structural BIM Workflow From Design to Fabrication

  • 1. FROM DESIGN TO FABRICATION STRUCTURAL BIM WORKFLOW www.topbimcompany.com
  • 2. WHAT IS STRUCTURAL BIM? Structural BIM is the process of creating and managing digital models of structural systems within a building or structure. These models contain information about the structural components, their properties, and how they interact with other systems within the building. Structural BIM is used by structural engineers, architects, and other stakeholders to design and analyze the building's structural systems.
  • 3. THE INDUSTRY NOW AND IN THE FUTURE According to a report by MarketsandMarkets, the global market for BIM software is expected to grow from $4.9 billion in 2020 to $8.8 billion by 2025, at a CAGR of 12.5% during the forecast period.
  • 4. BIM is becoming an increasingly essential tool. According to a survey by Engineering News-Record, 68% of structural engineers used BIM on more than half of their projects in 2020, compared to 58% in 2018. The implementation of Structural BIM workflows can lead to significant cost savings, with one report estimating that the use of BIM can reduce construction costs by up to 20%. These statistics demonstrate the growing adoption of Structural BIM in the construction industry and highlight some of the benefits associated with its use. IN THE STRUCTURAL ENGINEERING INDUSTRY
  • 5. HOW BIM CAN HELP STRUCTURAL ENGINEERS? Structural Analysis: BIM software can be used to analyze the structural systems and ensure that they are safe and efficient. This can be done in real-time, allowing engineers to make adjustments and optimizations as needed. Clash Detection: BIM software can detect clashes between different building systems, such as structural and MEP systems. Detailed Documentation: BIM software enables the creation of detailed documentation for the structural systems. This documentation can include 3D models, construction drawings, and material schedules. Fabrication: BIM software can be used to create detailed fabrication models for the structural systems. These models can be used to generate shop drawings and CNC files, which can be used to manufacture the structural components off-site. Structural engineers play a critical role in the construction process. They are responsible for the BIM structural design and analysis that support the building or structure. BIM can help structural engineers in several ways:
  • 6. STRUCTURAL BIM WORKFLOWS FROM DESIGN TO FABRICATION BIM software such as Autodesk, Tekla, and Graphisoft ArchiCAD are used throughout the entire workflow, enabling stakeholders to collaborate and share information.
  • 7. BENEFITS OF STRUCTURAL BIM 01 IMPROVED COLLABORATION Structural BIM allows architects, engineers, and other stakeholders to collaborate more effectively. It provides a common digital environment where stakeholders can share information and make decisions together. 02 ENHANCED DESIGN QUALITY Structural BIM enables the creation of detailed 3D models that can be used to detect and resolve design conflicts before construction begins. This helps to ensure that the building is designed to the highest quality standards. 03 INCREASED EFFICIENCY Structural BIM enables the creation of accurate and detailed construction documentation. This reduces the time and cost associated with creating and revising documentation. 04 IMPROVED SAFETY Structural BIM allows designers to analyze the structural systems for safety and performance. This helps to identify potential safety hazards and prevent accidents on the construction site. 05 BETTER SUSTAINABILITY Structural BIM enables the creation of more sustainable buildings. The ability to analyze and optimize structural systems can lead to significant energy savings and reduced environmental impact.
  • 8. To know more about Structural BIM, Connect with us. Email info@topbimcompany.com Website www.topbimcompany.com Call us (240) 899 7711