LiDAR Point Cloud
to BIM Solutions
JES’s LiDAR Scan to BIM service captures precise as-built data and converts it into detailed 3D models, ready for as-built documentation, facility management and as foundational data for Digital Twins.
Bringing the Real World into a BIM Environment
We deliver advanced solutions to convert real-world environments into precise digital assets. From LiDAR scanning to BIM modeling and integration, our process ensures accuracy and value for every project.

High-Precision LiDAR Scanning
Using cutting-edge LiDAR technology, we capture millions of data points to create dense, accurate 3D point clouds. Our refined process cleans, aligns, and segments raw data, preparing it for seamless use in modeling and analysis.
Point Cloud to BIM Conversion
We transform point cloud data into detailed BIM models, accurately replicating architectural, structural, and MEP systems. Each model is enriched with metadata, providing actionable insights for design, planning, and coordination.
As-Built DocumentationOur As-Built documentation reflects exact site conditions, ensuring your digital records are accurate. These models are essential for renovations, compliance, and future planning, minimizing errors and streamlining workflows.By leveraging JES’s LiDAR scanning and point cloud services, you gain highly accurate data for every stage of your
project, from design to construction and long-term facility management.

Renovations, Digital Twins and Facilities Management
We deliver comprehensive models optimized for renovations, retrofits, and integration with digital twins or facilities management systems. This supports predictive maintenance, operational efficiency, and long-term sustainability.
Why LiDAR?
Key Benefits of LiDAR Scanning
Our LiDAR scanning and point cloud services offer precise data capture, seamless integration with BIM, and real-time monitoring capabilities. Explore how these benefits can enhance accuracy, efficiency, and long-term project performance.
Precise Data Capture
LiDAR scans deliver high-resolution, accurate data for detailed 3D models and reliable project insights
Accurate Measurements
Obtain precise, reliable measurements from LiDAR scans to ensure accuracy during construction, renovations, and as-built documentation
Data Embedding
Support efficient operations and maintenance by integrating accurate data into facilities management systems
Digital Twin Integration
Feed processed LiDAR data into digital twins for real-time monitoring, asset tracking, and predictive maintenance
LiDAR Scan to BIM Workflow
Scanning and Data Processing Workflow
Our workflow outlines the process from LiDAR scanning data capture to delivering accurate LOD 500 as-built models. It includes, processing, modeling, and quality control to ensure reliable outputs that act as as-built documentation tha can be fed into Facilities Management and Digital Twin software for ongoing asset optimisation.
Scanning
Initial Setup
Define the scanning objectives and boundaries based on the project’s specific needs. Configure the Faro Focus S350 long-range 3D scanner to capture high-resolution spatial data with precision.
Site  Preparation
Ensure the site is accessible and ready for scanning. Set up targets or reference markers as needed to enhance scan accuracy and capture the required data effectively.
Data Acquisition
3D Scanning
Perform 3D scanning using the Faro Focus S350 long-range scanner to capture a comprehensive point cloud of the environment. Scan from multiple positions and angles to ensure full coverage and accurate data collection.
DATA Processing
Validate and process the captured data on-site to ensure completeness and accuracy. Export the point cloud in a suitable format such as e57. Import the raw data into Autodesk Recap Pro, where scans are aligned, merged, and cleaned to remove noise. The processed point cloud is then filtered, refined, and exported in formats such as .rcp and .rcs for further modeling.
LOD 500 Model
Point Cloud Processing
The point cloud data is processed and transformed into a precise LOD 500 model, accurately reflecting the project's as-built conditions. This process follows BEP (BIM Execution Plan) guidelines, ensuring smooth integration into BIM platforms.
  • Import Point Cloud: Bring point cloud data into the modeling software.
  • Set Project North: Define the correct orientation for the model.
  • Apply View Templates: Standardize visualization and data structure across the model.
  • Verify Alignment:Check grids, levels, and elements for accuracy.
  • Update Parameters: Adjust project parameters based on site-specific data.
  • Ensure LOD 500 Compliance: Align the model with LOD 500 standards for as-built accuracy.
  • Run Clash Detection: Identify and resolve any system conflicts.
Output
Quality Control
A final quality check ensures the LOD 500 model is accurate, complete, and compliant with all standards
  • Model Cleanup: Remove unnecessary elements.
  • Delete Extra Views/Plans: Eliminate redundant views.
  • Standard Compliance: Ensure all standards are met.
  • Workset Check: Verify worksets are correct.
  • Purge and Audit: Clean and optimize the file.
  • COBie Extraction: Extract COBie data for facility management.
  • Final Deliverables: Export as-built drawings in DWG and PDF formats.
Scanning
Data Acquisition
LOD 500 Model
Output
Initial Setup
Define the scanning objectives and boundaries based on the project’s specific needs. Configure the Faro Focus S350 long-range 3D scanner to capture high-resolution spatial data with precision.
3D Scanning
Perform 3D scanning using the Faro Focus S350 long-range scanner to capture a comprehensive point cloud of the environment. Scan from multiple positions and angles to ensure full coverage and accurate data collection.
Point Cloud Processing
The point cloud data is processed and transformed into a precise LOD 500 model, accurately reflecting the project's as-built conditions. This process follows BEP (BIM Execution Plan) guidelines, ensuring smooth integration into BIM platforms.
  • Import Point Cloud: Bring point cloud data into the modeling software.
  • Set Project North: Define the correct orientation for the model.
  • Apply View Templates: Standardize visualization and data structure across the model.
  • Verify Alignment:Check grids, levels, and elements for accuracy.
  • Update Parameters: Adjust project parameters based on site-specific data.
  • Ensure LOD 500 Compliance: Align the model with LOD 500 standards for as-built accuracy.
  • Run Clash Detection: Identify and resolve any system conflicts.
Quality Control
A final quality check ensures the LOD 500 model is accurate, complete, and compliant with all standards
  • Model Cleanup: Remove unnecessary elements.
  • Delete Extra Views/Plans: Eliminate redundant views.
  • Standard Compliance: Ensure all standards are met.
  • Workset Check: Verify worksets are correct.
  • Purge and Audit: Clean and optimize the file.
  • COBie Extraction: Extract COBie data for facility management.
  • Final Deliverables: Export as-built drawings in DWG and PDF formats.
Site  Preparation
Ensure the site is accessible and ready for scanning. Set up targets or reference markers as needed to enhance scan accuracy and capture the required data effectively.
DATA Processing
Validate and process the captured data on-site to ensure completeness and accuracy. Export the point cloud in a suitable format such as e57. Import the raw data into Autodesk Recap Pro, where scans are aligned, merged, and cleaned to remove noise. The processed point cloud is then filtered, refined, and exported in formats such as .rcp and .rcs for further modeling.
Service Delivery Model
Offshore Savings, Onshore Quality
Our blended onshore-offshore model seamlessly integrates regional knowledge with international talent, ensuring clear communication and alignment throughout your project. Benefit from reduced costs and enhanced quality, delivering your projects efficiently and on budget.
Engineering Manager
Client Team
(Onshore)
Project Lead / BIM Manager
JES Team
(Onshore/Offshore)
Auxiliary Support
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
Engineering/Project
 Manager
Client Team
(Onshore)
Project Lead / BIM Manager
JES Team
(Onshore/Offshore)
Auxiliary Support
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Package Lead
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
Team Of Up To 8 Modelers
JES Team
(Offshore)
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Why JES?
Local Expertise, Global Resources.
We combine deep local knowledge with cost-efficient global resources, offering flexible, high-quality, and cost-effective LiDAR Scan to BIM solutions. Understanding the unique challenges of AEC stakeholders in the Middle East, we leverage international best practices in reality capture and digital construction to deliver precise, innovative, and tailored models for projects of all scales.
250
+
Architects & Engineers
Skilled professionals with diverse expertise in BIM, engineering, and digital construction
5
+
Global Offices
Strategic presence across Europe, India, and the UAE, ensuring local support and expertise
30
+
Projects Delivered
Successfully delivered major projects across various sectors in the Middle East
6
+
Offshore Teams Managed
Seamlessly integrated offshore teams for contractors and consultants in the MENA region
We have had the pleasure of working with industry leaders on some of the most complex project in the region
BIM Case Studies
Building Success, Together.
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Journal
Digital Construction Insights
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