
Explore BIM basics, PIM information management under ISO 19650, IRR and AIR/PIR definitions, and the information delivery workflow from assessment to project closeout.
Explore the main challenges engineers face in building smarter cities, and how BIM, GIS, and IoT enable smart planning, design, and infrastructure resilience amid rapid urban growth.
Understand how building information modeling unifies stakeholders and streamlines data across planning, design, construction, and operation to reduce information gaps and rework.
Compare BIM with traditional CAD, showing cost control shifts from construction to design, and how BIM's intelligent 3D models, clash elimination, and one-click bill of quantities enhance project efficiency.
Explore BIM dimensions 3d to 7d, detailing 3d modeling with existing condition data and 4d scheduling simulations. Learn 5d cost estimating, 6d sustainability, and 7d facility management.
Explore how BIM supports sustainability by reducing energy use, minimizing waste, and using renewable resources, supported by lifecycle planning, stakeholder collaboration, and asset management through ISO 19650.
Explore how BIM supports facility management across utilities, mechanical, plumbing, and maintenance, enabling lifecycle updates, asset management, and clash detection to reduce rework.
Trace bim maturity from level zero 2d cad to level three integrated bim, highlighting level one 3d cad, level two open bim, common data environment, and ifc interoperability.
Explore project information management, using BIM and asset data to coordinate decisions, planning, and collaboration, reducing mistakes and keeping everyone aligned throughout the project lifecycle.
Information drives every stage of a project life cycle—from procurement and design to production, assembly, operation, maintenance, decommissioning, and recycling—ensuring compliance, clear specifications, and sustainability.
Explore project information management (PIM) processes that collect, store, and share information to keep the project team aligned, on time, and within budget.
Build a BIM information model by integrating a graphic 3d model, documentation, and asset data, capturing materials, maintenance, reports, drawings, photos, and visualizations with legal, regulatory and contractual compliance.
Differentiate physical assets from virtual ones with BIM for designing and managing a building's life cycle, while digital twins enable real-time monitoring and predictive maintenance.
Learn why, when, how, and what information to exchange in BIM, and how centralized information improves collaboration, accuracy, and decisions through structured production, checks, and approvals.
Define information requirements as exact details and instructions outlining what information to create, how to create it, and for what purpose, and collaborate with end users to ensure relevance.
The BIM execution plan defines how information management supports tender appointments and delivery, guiding roles, organizational structure, and the federation strategy for efficient BIM implementation.
Stage one defines the client's information requirements and standards, appoints a BIM lead, and sets information delivery milestones, standards, Nzsis guidelines, production methods, and a client-side CDE for tendering.
Stage two invites tenderers by defining the project information management requirements, assembling reference resources, and setting tender response criteria to align BIM data and RFP documentation transparently.
Explain how a tender response communicates BIM capability, capacity, and information delivery strategy for the RFP, including appointing a BIM lead and drafting a pre-appointment BIM execution plan.
Define and align appointment requirements by refining the BIM execution plan and information delivery strategy, detailing responsibilities, exchange information requirements, and a master information delivery plan to avoid scope gaps.
Mobilize resources and information technology in stage five, testing and refining information production methods. The BIM manager briefs the delivery team on requirements, training, milestones, and procedures.
Stage six collaborative production confirms reference information is available, generates information per project information standard and EIR, and verifies through QA before sharing BIM data via the common data environment.
Stage seven delivers the federated information model and non-graphical data for client approval. Submit through the project CDE with a model description, audit report, and clash detection.
Archive the information model and its components after acceptance to support asset management, determine file formats, and plan for access. Capture lessons learned to inform continuous improvement for future projects.
Complete the BIM information management course based on ISO standards, gaining insights into building information modeling, project information management, and BIM information delivery.
BIM Project Information Management - ISO 19650 Standard
Welcome to the BIM Information Management Course based on the ISO 19650 standard. This course is designed to provide a comprehensive understanding of Building Information Modeling (BIM) and its effective management in accordance with ISO 19650 standards. Let's delve into the key topics covered in this course:
1. BIM Basics:
Explore the fundamental concepts of BIM, including its definition, challenges, and a comparison with traditional engineering approaches.
Understand BIM dimensions and maturity levels, along with the benefits of adopting BIM globally.
Gain insights into the ISO 19650 BIM Standards that serve as a foundation for effective BIM implementation.
2. Project Information Management:
Recognize the critical need for information throughout a project's life cycle.
Dive into the intricacies of Project Information Management and the associated processes.
Differentiate between BIM and Digital Twin concepts.
Explore the dynamics of information exchange in BIM and the roles within an information management team.
3. BIM Information Delivery - ISO 19650:
Understand the significance of Organization Information Requirements, Asset Information Requirements, and Project Information Requirements.
Navigate through the stages of the BIM information delivery process based on ISO 19650, including Assessment and Need, Invitation to Tender, Tender Response, Appointment, Mobilization, Collaborative Production of Information, Information Model Delivery, and Project Close-out.
4. Appendix & Templates:
Explore additional resources and templates that complement the ISO 19650 standard, aiding in practical application.
This course is designed to equip you with the essential knowledge and skills required for effective BIM information management in alignment with ISO 19650 standards. Whether you are new to BIM or seeking to enhance your understanding, this course will guide you through the core principles and practices of BIM, empowering you to contribute to successful project outcomes. Let's embark on this insightful journey together.
course is in the progress of adding the lectures. more and more lectures are on the way.