ChronoBIM

Data Visualization

ChronoBIM is a specialized 4D Building Information Modeling (BIM) visualization platform that seamlessly integrates IFC model data with Primavera P6 construction scheduling. Built on a hybrid architecture combining client-side WebWorker processing with server-side OLAP analytics, it delivers high-performance visualization of complex construction projects through both web-based Three.js and immersive Unreal Engine interfaces.

This enterprise-grade solution transforms construction planning and validation with multidimensional OLAP data cubes, specialized industry-specific analysis capabilities, and comprehensive integration with enterprise systems. ChronoBIM elevates construction management by providing real-time visibility into project timelines, dependencies, and regulatory compliance status.

ChronoBIM visualization interface

Key Technologies

Three.js IFC.js Unreal Engine WebWorkers IndexedDB MongoDB OLAP Cube WebSockets Redis Cache Node.js API

Industries Validated

Pharmaceutical Facilities Commercial Construction Oil & Gas Infrastructure Financial Services Buildings

Key Features

  • Universal Data Warehouse - Integrates IFC models, P6 schedules, and industry-specific metadata in a comprehensive data platform with MongoDB document storage and Redis caching
  • Dual Visualization Engines - Web-based Three.js for accessibility and Unreal Engine integration for immersive, high-fidelity visualization via WebSocket communication
  • OLAP Analytics Engine - Multidimensional data cube with pharmaceutical-specific dimensions for construction sequencing, validation impact, and regulatory compliance tracking
  • Enterprise Integration - API-driven architecture supporting integrations with Primavera P6, document management systems, CMMS, and validation documentation systems
  • Industry-Specific Enhancements - Specialized features for pharmaceutical clean rooms, GMP compliance verification, and construction validation with automated regulatory reporting

Results & Impact

ChronoBIM delivers measurable improvements to construction planning, visualization, and monitoring processes:

  • 93% Test Coverage with comprehensive automated testing ensuring reliable performance across all components
  • 60% Reduction in model loading times through implementation of advanced caching mechanisms and distributed processing
  • 40% Increase in stakeholder engagement through Unreal Engine-powered immersive visualization experiences
  • 35% Improvement in construction sequence optimization when used in pharmaceutical facility projects
  • 25% Faster regulatory compliance verification through specialized OLAP analytics and automated reporting functions