Scan to BIM Services

Know exactly what you're building on. We laser scan your facility and turn that data into accurate as-built BIM models — so your team can spot clashes, plan retrofits, and avoid costly surprises before construction even starts.

Scan to BIM Services

Scan to BIM 3D Modeling

Digital representations of sites help engineering professionals gain a clear understanding of existing conditions and execute construction and renovation projects with greater confidence. Through Scan to BIM, we successfully convert a site, building or facility into a 3D model containing geometric and semantic information.

From site scanning to BIM delivery, our on-field and in-office teams ensure the creation of accurate BIM models with high-quality rendering and comprehensive quality checks at every stage.

By using this technology, engineers can make informed decisions before proceeding with structural changes while minimising safety risks associated with manual measurements.

Transform Scans to Data-rich BIMs

Transform Scans to Data-rich BIMs

Raw LiDAR scan data may not always produce accurate digital models with intact geometry. Engineering judgement at every stage is applied to convert haphazard data into a precise and detailed model.

Our structured Scan to BIM process ensures reliable and consistent project execution:

  • Project scope defines the level of scanning required for MEP coordination, facilities management, and BIM execution plan submission.
  • Scanning stations are assigned depending on size and complexity, and photographs of the site are captured for colour mapping for accurate visual reference.
  • Point cloud files generated from scan data support the identification of equipment locations and zoning layouts.
  • The BIM model is created using Revit with point cloud data as a reference. Each element and floor geometry, position, and dimensions are verified with the scan data.
  • The scan data and BIM model containing floor plans, sections, elevations, with a model accuracy report, and a handover register are issued.

Reality Capture to BIM integration

We understand that translating real facilities into detailed 3D models can be challenging. Our BIM experts minimise rework and enhance model accuracy, helping site engineers to focus on construction rather than spending additional time on re-verifying dimensions.

Here are some of the issues that we solve by applying sound engineering judgement and deliver dependable BIM models:

Point Cloud Data Issues

Organise high-density scans and large data sets from a single scanning campaign rather than multiple manual measurements

MEP Layout Coordination

Ensuring new and existing MEP designs are integrated by accurately documenting the positions, sizes, and routes of ducts, pipes, and cabling.

Modeling Irregularities

Reduce the mismatch between 2D design drawings of existing structures and scanned components by tagging unverified data and visually inspecting the deviations in Navisworks.

Accuracy and Tolerance

Establish project-specific industry standards to minimise element misclassification during BIM model-to-point-cloud comparisons.

As-Built Deviations

Include field-verified data to match differences in actual structures and original drawings during BIM modelling.

Quality-Driven Scan to BIM modeling

Quality-Driven Scan to BIM modeling

We understand that high-quality BIM models are of utmost importance for delivering successful construction outcomes. Using Scan to BIM, our design engineers transform scans without compromising original data even during multiple project iterations.

Efficient Scan Reuse

Previously captured BIM scans of a project can be utilised as a verified baseline for future modifications instead of undertaking a new site survey. Existing scans reduce time and costs for facility refurbishments and fitouts.

Pre-Design Quality Check

Undocumented component positions and service routes are discovered and rectified before beginning BIM modelling. Discrepancies caught early can resolve differences in legacy drawings and reality capture data, improving design integrity.

Preserving Site Integrity

3D laser scanning enables accurate detection of structural defects, wear and tear, and foundation settlements. Engineers can plan corrective measures to preserve the structures through retrofitting.

Collaborative Digital Environment

All parties involved in the project—clients, on-site engineers, in-office design experts—are privy to data secured from the beginning of the project in a common data environment.

Technologies we use

AUTODESK REVIT * BIM 360 * ETABS

TEKLA * STAAD.PRO * AUTODESK CONSTRUCTION CLOUD

Industries we serve

MANUFACTURING

MEDICAL

STEEL STRUCTURAL

CIVIL

METRORAIL

Industrial Standards

DEWABSNFPAISOISO 19650

Frequently Asked Questions

Scan to BIM modeling Services FAQs

We utilise already available facility documentation, BIM models, and project records to align newly captured scan data with the current building model. We conduct multiple scans and visual inspections, where necessary, to ensure seamless integration into a complete and accurate 3D BIM Model. Any structural deviations or modifications identified during the process are verified with the POC before being incorporated into the new model.
A single laser scan can capture the complete dimensions and geometry of an entire facility compared to traditional measurement methods. The resulting point cloud serves as a highly accurate digital replica of a facility, enabling the creation of precise, clash-free models and accurate blueprints.
We plan the scanning and modelling process based on the following details: - Project scope and location - Site access details - Existing point cloud data (fresh scanning can be performed, if unavailable) - Existing drawings and models (if available) - Preferred file output formats (PDF, NWC, RVT, etc.) - Required LOD level and BIM engineering disciplines (architectural, structural, MEP, etc) These details help us align our BIM deliverables with your project’s objectives.
PROJECTS DELIVERED SUCCESSFULLY
100%

Projects Delivered

REDUCTION IN COST
63%

Reduction in cost

IMPROVEMENT IN PRODUCT
73%

Improvement in product

REDUCTION IN TIME TO MARKET
56%

Reduction in time to market

INCREASE IN INNOVATION
47%

Increase in innovation