Design & Engineering Services for PEB & Industrial Projects | Rohan
Rohan procurement and manufacturing logistics hub — PEB design and engineering coordinated with fabrication
DESIGN & ENGINEERING

Engineering-led design for pre-engineered steel buildings, industrial sheds & structural projects

At Rohan Pre Engineered Building Systems, design and engineering form the foundation of every successful steel building project. We develop project-specific design and engineering solutions for PEB buildings, industrial sheds, warehouses, factory buildings, prefabricated structures and structural steel fabrication — from concept planning to fabrication-ready engineering.

What this service is

Design & Engineering is Rohan's project-specific process for developing the structural concept, detailing and fabrication-ready engineering behind a PEB building or steel structure.

What it covers

Requirement assessment, concept planning, structural engineering, PEB engineering, detailing, fabrication coordination and site erection coordination — eight stages in total.

Who it's for

Industrial sheds, warehouses, factory buildings, cold storage structures, prefabricated buildings and selected commercial and existing-building projects.

01 — OVERVIEW

Engineering that starts with your project requirements

Our approach combines project requirements, structural considerations, functional planning, fabrication requirements and site execution needs to create practical and coordinated building solutions. Whether you are planning a new industrial facility, warehouse, factory shed, commercial structure or modification to an existing steel building, our design and engineering process is developed around the actual project requirements.

Every industrial building has different requirements. Building size, application, internal layout, storage requirements, equipment, access, ventilation, roofing, cladding, future expansion and site conditions can all influence the final design — so our process begins by understanding the project rather than applying a one-size-fits-all structure. Final structural design and engineering parameters remain subject to project-specific assessment and applicable engineering requirements.

02 — WHAT SHAPES THE DESIGN

Key project considerations

Building purpose and application
Proposed building dimensions
Structural configuration
Site and location considerations
Internal space requirements
Storage and material movement
Machinery and equipment requirements
Crane or handling requirements, where applicable
Mezzanine requirements
Roofing and wall cladding requirements
Ventilation and daylighting requirements
Doors, windows and access requirements
Future expansion requirements
Existing building conditions
Fabrication and erection requirements
03

Our Design & Engineering Services

From the first requirement conversation to fabrication-ready drawings, each stage below can be coordinated as part of one continuous engineering process, developed around your project's structural, functional and site-specific needs.

1. Project Requirement Assessment

The first stage of engineering is understanding what the building needs to achieve — reviewing the customer's functional requirements and project objectives to establish a suitable basis for design.

  • Building application assessment
  • Preliminary size and configuration
  • Structural and equipment-related requirements

2. Building Planning & Concept Development

Once requirements are understood, we develop an appropriate building concept that supports both the operational requirement and the structural system.

  • Structural grid and bay arrangement
  • Roof configuration and internal circulation
  • Mezzanine and expansion considerations

3. Structural Engineering for PEB Buildings

Structural engineering is one of the most important stages of a PEB project — considering the structural system needed to safely support the building configuration and applicable design conditions.

  • Primary and secondary framing, bracing
  • Load transfer and structural stability
  • Openings, penetrations and mezzanine structures

4. Pre-Engineered Building Engineering

PEB projects require coordinated engineering because the structure is designed, detailed, fabricated and subsequently assembled at the project site.

  • Industrial sheds, factories, warehouses
  • Cold storage structures, workshops
  • Commercial and other customized structures

5. Structural Steel Design & Detailing

Accurate detailing is essential for smooth manufacturing and site assembly on structural steel fabrication projects.

  • Frames, columns, beams, bracing members
  • Platforms, stairs and support structures
  • Connection and fabrication-related drawings

6. Fabrication-Oriented Engineering

Good engineering doesn't stop at a theoretical structural design — it also needs to be practical to manufacture, transport and assemble.

  • Member configuration and connection arrangement
  • Cutting, drilling and welding requirements
  • Assembly sequence and transportation planning

7. Detailed Engineering & Drawings

Detailed engineering documentation plays an important role in manufacturing and construction, with the exact drawing package depending on project scope.

  • General arrangement and framing layouts
  • Member and connection details
  • Fabrication and erection-related information

8. Roofing & Cladding Coordination

Roofing and wall systems are an important part of industrial and PEB buildings, coordinated alongside the structural design.

  • Roof and wall cladding arrangement
  • Openings, louvers, skylights, ventilation
  • Turbo ventilators, canopies, gutters & downspouts

9. Mezzanine Floor Planning

Where additional usable floor space is required, mezzanine planning can be incorporated into the project design based on project-specific requirements.

  • Mezzanine location and structural arrangement
  • Access and staircase planning
  • Integration with the main building structure

10. Crane & Equipment Coordination

Industrial buildings may require internal equipment, lifting systems or crane-related provisions, finalized against the actual equipment specification.

  • Crane requirements and clearances
  • Equipment locations and structural support
  • Building height and access considerations

11. Design for Manufacturing

Coordinated PEB engineering connects the design stage with manufacturing, considering whether components can be efficiently produced end to end.

  • Designed → Detailed → Fabricated
  • Transported → Erected
  • Reduced fabrication complications

12. Design for Site Erection

The building design also considers how structural components will be assembled at the project location.

  • Member identification and assembly sequence
  • Material handling and site access
  • Coordination with civil works
Procurement and manufacturing logistics hub coordinating PEB design, fabrication and site execution
DESIGN → FABRICATION → SITE

One coordinated engineering process, not three disconnected stages

04 — OUR PROCESS

Design & Engineering process

Requirement → Information → Concept → Engineering → Detailing → Coordination → Manufacturing → Site Execution.

Understand the Requirement

We begin by understanding the customer's building application, project requirements and functional objectives.

Collect Project Information

Available site information, dimensions, layouts, equipment requirements and other relevant project inputs are reviewed.

Develop the Design Concept

A suitable structural and building concept is developed according to the project requirements.

Structural Engineering

The structural system is developed based on applicable project requirements and engineering considerations.

Detailed Drawings

The design is converted into coordinated drawings and detailing required for subsequent project stages.

Engineering Coordination

Structural, architectural, roofing, cladding, openings, accessories and fabrication requirements are coordinated.

Manufacturing Coordination

Engineering information is aligned with fabrication and manufacturing requirements.

Site Execution Coordination

The design is coordinated with transportation, erection and site execution requirements.

05 — APPLICATIONS

Design & Engineering for different building types

Industrial Sheds

Engineering solutions developed around manufacturing, storage, workshop and operational requirements.

Warehouses

Design focused on efficient storage space, access, material movement and future operational requirements.

Factory Buildings

Coordination between structural requirements and manufacturing operations, machinery, access and internal movement.

Cold Storage Structures

Careful coordination of building structure, enclosure requirements, access and project-specific environmental considerations.

Prefabricated Buildings

Structures designed around practical fabrication, transportation and site assembly requirements.

Commercial Steel Buildings

Steel building engineering can also support selected commercial and institutional applications where appropriate.

06 — PROJECT TYPES

Engineering for new construction and existing buildings

New Construction Projects

For new projects, we coordinate the engineering process from the initial requirement stage through detailed design and fabrication coordination — an integrated workflow of Requirement → Concept → Engineering → Detailing → Fabrication → Site Execution that maintains continuity between project stages.

Existing Buildings

Existing structures often require a different engineering approach. Before proposing modifications, the building may need to be assessed for its existing structural configuration, available drawings, current condition, proposed modification, additional loading, new openings and site constraints. Any modification or extension should be finalized only after appropriate site and structural assessment.

07 — WHY IT MATTERS

Why professional engineering matters in PEB projects

A steel building is more than a collection of fabricated steel members. The engineering stage determines how the different structural and functional requirements work together.

  • 01 Better project coordination and fabrication readiness
  • 02 Improved constructability and efficient use of building space
  • 03 Better coordination between structure and accessories
  • 04 Reduced site-level conflicts and clearer manufacturing requirements
  • 05 More organized erection planning
  • 06 Better alignment between customer requirements and final structure
08 — WHY CHOOSE ROHAN

Design & engineering, connected to fabrication

Design and engineering at Rohan are closely connected with the company's broader manufacturing and fabrication capabilities — allowing project engineering to be considered alongside fabrication and site requirements.

Project-Specific Approach

We focus on understanding the actual requirement instead of treating every project as identical.

PEB & Steel Building Focus

Our engineering approach is aligned with pre-engineered buildings, industrial sheds, prefabricated structures and steel fabrication.

Fabrication Awareness

Engineering is considered with subsequent manufacturing and fabrication requirements in mind.

Customized Solutions

Building configuration and engineering requirements can be developed according to project-specific needs.

Integrated Project Thinking

Design, manufacturing, transportation and erection requirements are considered as interconnected stages.

Quality-Focused Approach

Rohan's official company profile states that the company follows quality norms and provides customized, client-oriented services, with timely execution as a stated business strength.

09 — INDUSTRIES WE SERVE

Sectors our engineering supports

Manufacturing Industrial Warehousing Logistics Factory & Production Workshops Cold Storage Commercial Buildings Infrastructure-related applications Institutional applications Specialized steel structures
10 — KEY BENEFITS

What our engineering approach delivers

✔ Requirement-Based Design

Engineering begins with understanding the intended use of the building.

✔ Fabrication-Friendly Planning

Design considerations can be coordinated with manufacturing requirements.

✔ Construction Coordination

Engineering information can support smoother site execution.

✔ Flexible Building Configuration

PEB structures can be planned around project-specific requirements.

✔ Integrated Accessories

Roofing, cladding, ventilation, openings and other building components can be coordinated.

✔ Practical Project Execution

Design is developed with fabrication, transportation and erection requirements in mind.

11 — DIRECT ANSWERS

Common questions, answered plainly

Short, self-contained answers written for people, voice assistants and AI answer engines alike.

What does a PEB design and engineering company do?

A PEB design and engineering company develops the structural concept, engineering details, drawings and fabrication-oriented information required to manufacture and assemble a pre-engineered steel building according to project requirements.

Who provides Design & Engineering services for PEB buildings?

Rohan Pre Engineered Building Systems provides design and engineering-oriented solutions for PEB buildings, industrial sheds, warehouses, factories, prefabricated structures and steel fabrication applications.

What is included in PEB engineering?

PEB engineering can include project requirement assessment, building planning, structural engineering, framing, connections, bracing, detailing, roofing and cladding coordination, fabrication drawings and site erection coordination.

Can PEB buildings be customized?

Yes. PEB buildings can be customized according to the intended application, building dimensions, operational requirements, equipment, access, roofing, cladding and other project-specific requirements, subject to engineering assessment.

12 — FAQ

Frequently asked questions

Design and engineering for a PEB building involve developing the structural configuration, detailing, connections and related building requirements based on the project's functional and engineering needs.

Yes. Rohan's PEB offering includes engineering-oriented building solutions for applications such as warehouses, factories, cold storage and commercial buildings, with fabrication and erection as part of its stated service scope.

Yes. PEB buildings can be developed according to project-specific requirements, subject to engineering assessment and applicable design conditions.

Yes. Industrial shed solutions can be planned according to the required application, dimensions, operational requirements and project conditions.

Depending on project scope, detailed engineering and fabrication-related drawings can be developed to support manufacturing and project execution.

Yes. Roofing, wall cladding, openings, ventilation, skylights, gutters, louvers and other relevant building elements can be coordinated as part of the project design.

Potentially, yes. Existing building modifications or extensions should be evaluated through appropriate site and structural assessment before engineering is finalized.

Where required, crane-related provisions can be considered during engineering. Final structural requirements depend on the actual crane and equipment specifications and project conditions.

Typically, useful information includes building application, approximate dimensions, site details, layout requirements, equipment information, access requirements and any available drawings or specifications.

Rohan's business profile identifies it as a manufacturer offering PEB, prefabricated building structures, industrial sheds and structural fabrication solutions.

GET STARTED

Start your steel building project with the right engineering

A well-engineered building begins with a clear understanding of the project. Whether you need a pre-engineered building, industrial shed, factory structure, warehouse, prefabricated building or structural steel solution, Rohan Pre Engineered Building Systems can help coordinate the design and engineering requirements for your project.

Rohan Pre Engineered Building Systems
PEB Buildings · Design & Engineering · Structural Fabrication · Site Execution
Footer Preview | Rohan Pre Engineered Building Systems
Scroll to Top