To provide participants with in-depth knowledge and practical tools for integrating Building Information Modeling (BIM) and Geographic Information Systems (GIS) in engineering project management, enabling better planning, cost estimation, risk assessment, and coordination across project life cycles.
This program focuses on how BIM and GIS can revolutionize project management in engineering and construction. Participants will explore how to manage project scopes, schedules, and costs with BIM models while leveraging GIS for site analysis, risk management, and infrastructure planning. Real-world case studies and workshops will help participants apply BIM & GIS to tendering, cost optimization, and multi-stakeholder collaboration.
Target Group
Target Group
Senior engineers and project managers
Professionals involved in tendering and bid preparation
Cost engineers and estimators
Planning and scheduling specialists
Technical managers and infrastructure coordinators
Goals
By the end of this course, participants will be able to:
Understand BIM and GIS fundamentals and their role in project management.
Apply BIM for project scope definition, cost estimation, and scheduling.
Use GIS for site analysis, spatial risk management, and infrastructure planning.
Integrate BIM & GIS data for better decision-making and tender preparation.
Enhance collaboration between engineering, planning, and cost control teams.
Implement best practices for using digital models in project execution and lifecycle management.
Target Competencies
Target Competencies
Advanced project planning and control
BIM-based cost estimation and scheduling
GIS-based spatial and risk analysis
Digital integration and data-driven decision-making
Collaborative project management
Outlines
Fundamentals of BIM & GIS in Project Management
Overview of BIM and GIS technologies
Differences and synergies between BIM & GIS
Project lifecycle management using digital models
Standards and guidelines for BIM & GIS integration
Case examples of global best practices
BIM for Engineering Project Control
BIM for scope of work and project definition
Quantity take-off and cost estimation using BIM
Scheduling and resource allocation with 4D BIM
Risk identification and mitigation through modeling
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