PEB Structure Design Services

PEB Structure Design for Industrial and EPC Projects

The PEB structure design transforms architectural drawings, project specifications, and structural load into a steel building that is ready for fabrication and erection. Engineers assess the building dimensions, loading conditions, structural stability, connections, and how different members operate together. The final design might be influenced by factors including clear span, bay spacing, eave height, slope of the roof, wind loads, seismic loads, crane needs and mezzanine loads.

KMS Technologies offers PEB structural engineering design services for PEB manufacturers, EPC contractors, and industrial projects. Our scope covers structural analysis, primary and secondary framing, member design, connections, PEB structural drawings, and detailing. We create the design around the project requirements so the final output can move smoothly towards fabrication and site erection.

PEB Structure Design Services

What Is a PEB Structure

PEB short for Pre-engineered Building refers to a structure in which the primary structural elements are designed and fabricated according to the project requirements. After fabrication the components are transported to site and assembled to form the complete building structure.

A PEB structure consists of steel columns, purlins, girts, bracing, connections, roofing and wall systems in a single coordinated building system. Factors such as span height, load requirements, site conditions etc are considered during preparation of peb structure design to make sure the peb construction works completes smoothly from fabrication to final erection.

Codes and Standards We Follow

We use the applicable Indian design codes and project requirements when developing a PEB structural design. Depending on the building and its location, the design may consider:

  • checkmark IS 800 for steel design
  • checkmark IS 875 for relevant dead, live, wind, and other loads
  • checkmark IS 1893 for seismic design considerations
  • checkmark Limit state method for structural design

We follow the applicable design standards based on the building use, location, loading conditions, architectural requirements, and information provided by the client.

Codes and Standards for PEB Structural Design

Our PEB Structural Design Process

1. Review client details

We review the details and inputs like architectural drawings, dimensions, soil testing report and project requirements like crane or mezzanine structure.

2. Define Structural loads

We clearly define dead, live, wind, seismic, crane, and other applicable loads to efficiently design the structure.

3. Model and analyse

We use structural designing tools such as STAAD Pro and ETABS to thoroughly analyze member forces, deflection, stability, and load paths.

4. Design members

We design primary and secondary framing, bracing, connections, and other structural elements based on the analysis.

5. Detail and document

We use Tekla Structures, Revit, and AutoCAD for 3D modelling, detailing, structural, fabrication, and erection drawings.

Our PEB Structural Design Process

Software and Tools Used in PEB Structure Design

We design every step of PEB structure design precisely with structural design, BIM, drawing and 3D Modeling Software. The tools efficiently map structural design with modeling, drawings, and fabrication requirements.

STAAD Pro

Structural modeling and designing of PEB construction. We use it to analyze loads, member forces, deflections and structural stability.

ETABS

Structural modeling and analysis for applications requiring thorough structural analysis. It can be used to assess loads such as gravity, wind, seismic, and other applicable loads on the structure.

Tekla Structures

Primarily used for 3D structural modeling. We use it to design structural members, connections, fabrication and erection information.

Autodesk Revit

BIM based 3D modeling and project coordination. We utilize it to coordinate structural elements with architecture and other building requirements.

AutoCAD

Primarily used for 2D structural drafting and design of drawings. We use it for layouts, structural drawings, connection diagrams and other technical documentations.

Design Decisions That Affect Cost and Performance

Several project decisions influence the structural design, steel quantity, building performance, and foundation requirements. We review these factors early to develop a suitable structural system.

Clear span

Larger clear spans can require stronger primary frames and different member sections.

Bay spacing

Frame spacing affects member loads, frame quantity, steel consumption, and overall structural arrangement.

Eave height

Greater building height can increase wind effects and influence column and frame design.

Roof slope

Roof slope affects building geometry, drainage, roof loads, and overall structural behaviour.

Crane loads

Crane capacity and wheel loads introduce additional forces that require suitable structural support.

Mezzanine loads

Mezzanine usage and floor loads influence beam sizes, columns, connections, and foundation reactions.

Wind loads

Project location and applicable wind conditions influence frame design, bracing, and structural stability.

Seismic loads

Seismic conditions can affect structural framing, bracing requirements, connections, and overall building stability.

Design Decisions That Affect Cost and Performance

Why Choose KMS Technologies for PEB Structural Design

KMS Technologies is a PEB manufacturer based in Greater Noida and holds ISO 9001 certification. We work across structural engineering and PEB manufacturing, which gives our design team a practical understanding of how engineering information moves toward fabrication and erection.

Our enterprise client experience includes work associated with Tata, L&T, Infosys, JBM Group, and Star Cement. We use the project scope and available technical information to define the engineering work rather than applying the same design approach to every building.

Frequently Asked Questions

We need architectural drawings, building dimensions, location, usage, load requirements and soil testing report. Crane, mezzanine, equipment, and other special requirements should also be shared where applicable.

Our services include structural analysis, primary and secondary member design, bracing, connection requirements, and structural drawings. We also provide GA, fabrication and erection drawings.

We follow standard Indian design codes from IS 800, IS 875, and IS 1893 along with project specific criteria. The exact codes and load cases depend on the structure type, location, and design requirements.

Yes, we provide structural drawings and detailing outputs based on the agreement. Fabrication and erection drawings can also form part of the project where the required detailing information is available.

Yes. We design structures considering crane loads, runway beam requirements, mezzanine loads, and other additional structural requirements as per the agreement with the client.

We first review how the change affects the existing design, loads, members, connections, and drawings. We then update the relevant engineering and detailing work based on the revised project information and agreement.

Pricing generally depends on the building size, structural complexity, design scope, drawing requirements, special loads, and level of detailing required. We can discuss the project requirements first and define the scope before preparing a commercial proposal.

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