Master's Degree in Continuing Education in BIM Management
PRESENTATION
Objectives
• Lead the implementation of project management strategies in collaborative environments. • Integrate applicable regulations into project design and execution, ensuring compliance and operational efficiency. • Design and implement a methodology for full-scale construction information modeling in technical offices, transforming operational processes. • Manage highly complex projects, anticipating and resolving challenges with a leadership-driven and strategic approach. • Evaluate and select advanced technological tools for the design, coordination, and comprehensive management of projects. • Lead multidisciplinary teams in adopting OpenBIM workflows, promoting interoperability and efficiency. • Optimize resource and cost management in BIM projects, maximizing profitability and operational efficiency. • Make strategic decisions based on BIM data analysis to drive continuous project improvement.
Methodology
At Educa PHAROS, we use a highly practical methodology focused on the direct application of knowledge in the student’s professional environment, combining theoretical content with real-world cases, digital tools, and support from a team of specialized instructors.
Program
- Digital Transformation
- Digitalization in the Construction Industry
- What is BIM?
- Why BIM?
- Why Does BIM Fail?
- BIM Dimensions
- BIM Software and Its Relationship to BIM Dimensions
- BuildingSMART and Its Contributions to the Industry
- BIM Around the World
- ISO 19650
- BIM
- The Life Cycle of a BIM Project
- Resources for BIM Methodology Management
- BIM Applications in Project Planning
- BIM Applications in the Construction of a Project
- BIM Roles
- BIM Documents
- Documentation Structure and Nomenclature
- BEP BIM Execution Plan
- CDE - Common Data Environment
- Types of Models
- Overview of Integrated Models
- Modeling Guidelines and Standards
- Levels of Development - LOD+LOI
- Classification Systems
- BIM Implementation
- BIM Maturity Levels
- Phases and Requirements for BIM Implementation
- BIM Processes and Workflows
- Open BIM
- Principles of Project Management
- Due Diligence and Preliminary Studies
- Project Cycle
- Human Resources, Positions, Profiles, and Competencies
- Project Kickoff, Stakeholder Matrix, and Project Charter
- Project Timeline
- Project Budget
- Acquisition Matrix and Risk Matrix
- Responsibilities and Communications Matrix
- Negotiations and Contracts
- Project Evaluation and Financial Analysis
- Project Monitoring and Control
- Cost Management
- Occupational Health and Safety
- Project Closure
- Project Operation and Maintenance
- Project Sustainability Certification
- Project Management Software
- Agile Methodologies
- Lean Construction
- High-Rise Housing
- Horizontal Housing
- Winery complexes
- Industrial Projects
- Infrastructure Projects
- Mobility Projects
- Renovations
- Power Generation Projects
- Hospital Projects
- Mining Projects
- Locations
- Surveying
- Data Collection, Photogrammetry, and Point Clouds (I)
- Data Collection, Photogrammetry, and Point Clouds (II)
- Architectural Models
- Structural models
- Revit Structure
- MEP Facility Models
- Water and Sanitation Facilities
- Electrical and Special Installations
- HVAC Systems
- Autodesk InfraWorks
- Autodesk Civil 3D
- OpenRoads Designer
- OpenRail Designer
- BIM Viewers (I): BIM Vision
- BIM Viewers (II): Solibri Anywhere
- BIM Viewers (III): Trimble Connect
- BIM Viewers (IV): usBIM Viewer
- Autodesk Navisworks Manage
- What does it mean to manage a project in Revit?
- Planning Tables
- Planning tables applied to a structural model
- Planning Tables Applied to a Hydraulic Facilities Model
- Scheduling Tables Applied to a Model of Electrical Installations
- Project Phases
- Design Options
- Team Workflows in Revit
- Linking Models in Revit
- Worksets (Subprojects)
- BIM Coordination
- Project Management
- Roles in BIM Coordination
- Work Methodology
- Collaborative work
- Template Settings
- Phases of a Project
- Exporting and Importing Files
- Collaboration in Revit
- Working with Worksets
- Federated models
- IFC Models
- Introduction to Navisworks
- Interference Analysis
- Construction Simulation
- Interoperability in BIM
- Open BIM
- Collaboration with Specialists
- Collaboration Options
- Autodesk Coordination Platform
- Basic Concepts
- Incident Management Processes and Techniques
- Introduction to the Cloud Project
- Navisworks Manage
- Navisworks as an Issue Tracker
- Autodesk Construction Cloud and Its Tools
- BIM Collaborate Docs for Managing Incidents
- BIM Collaborate Model Coordination for Incident Management
- BIMcollab
- BIM Track
- Development of Construction Strategies
- Construction Strategies to Increase Productivity
- Evaluation of Construction Strategies
- Technical Documents
- Critical Path Analysis for Projects
- Folder Structure
- Communication Flows
- Communication Management
- Construction Review
- Key Views and Permissions
- Construction Planning and Oversight
- Buildability and Planning
- Operations Planning
- Construction Monitoring and Oversight
- Construction Progress
- Cost Estimation in BIM Environments
- Information Structure
- Measurements
- Budgets
- BIM Requirements for Construction
- Definitions from the Industry
- Industrial Methodologies and Tools
- Facilities Management
- Operation
- Maintenance
- BIM for Facilities Management Projects
- Initial BIM Inputs in Facilities Management
- Interoperability
- ECD Implementation of Standards
- Archibus
- What is BIM, and what isn't?
- AEC BIM, Key Factors
- More Than Just Software
- Basic Terminology
- BIM Implementations
- Implementation Budget
- Definitions for Analysis
- Assessment and Recommendations for Improvement
- Suggestion for Improvement
- Measurement, Evaluation, and Continuous Improvement
- Introduction to Dynamo
- Nodes (Anatomy of Visual Programming)
- Packages and Scripts
- Key Operations
- Lists and Data Extraction
- Importing and Exporting to Dynamo
- Interact with Revit
- Optimizing Processes (I)
- Optimizing Processes (II)
- Basic Geometries
- Introduction to Big Data
- Big Data and BIM
- Artificial Intelligence
- Cities
- Smart Cities
- Sustainability
- Sustainable Construction
- Energy Efficiency
- BIM and Energy Efficiency
- GIS and BIM
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Educa PHAROS is a training solution for businesses that centralizes learning, simplifies user management, and allows you to track progress through dashboards and reports.
It is designed for organizations that want to develop internal skills, standardize role-based training, and have traceability and learning metrics.
It includes learning paths by profile, user and permission management, progress reports, certification, and access to masterclasses or live sessions (depending on the plan).
It is based on best practices in security, access control, learning traceability, and implementation support. Customize this text according to your commitments (SLA, compliance, etc.).
Educa PHAROS is a next-generation training model that places a company’s human capital at the forefront. Through a platform that adapts to each company’s corporate identity and offers a total of more than 900 courses, it provides tailored training for each organization. The unlimited flat-rate plan provides each company with the number of courses that best suits its needs, as well as the ability to determine which employees will have access.