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As Built to BIM Services | Silicon Engineering Consultants LLC.pptx
1. LEVERAGING
AS BUILT TO
BIM SERVICES:
Created by Silicon Consultants LLC
https://www.siliconconsultant.com/
A Comprehensive Guide
2. • Digital Building Representation: BIM brings buildings to life
digitally, offering 3D models that help visualize designs and
coordinate projects effectively.
• Interdisciplinary Collaboration: BIM serves as a meeting
ground for architects, engineers, and contractors, fostering
seamless collaboration through data sharing.
• Lifecycle Management: Covering every stage, BIM guides
buildings from inception through construction, operation, and
maintenance, ensuring holistic management.
• Efficiency and Error Reduction: BIM streamlines projects,
curbing errors and rework by meticulously integrating and
managing data with precision.
• Informed Decision-Making: With BIM, data-driven decisions
become the cornerstone, enabling stakeholders to optimize
construction, maintenance, and overall building performance.
Scan to BIM Services
Brief Overview of Building Information Modeling
(BIM)
3. • As-Built Drawings: These updated blueprints depict actual
construction details, alterations, and deviations from the original
design, visually documenting changes.
• Documentation Records: Comprehensive records of materials,
equipment, and installation specifications help in future
maintenance, repairs, and renovations.
• As-Built Surveys: Utilizing laser scanning or other methods,
these surveys create precise 3D models, ensuring accurate
representation of the as-built environment.
• Digital As-Built Models: Building Information Modeling (BIM)
generates detailed, digital 3D models that capture the
constructed environment's intricacies.
• Regulatory Compliance Records: As-Built Data serves as a legal
record to ensure compliance with local building codes and
regulations, offering transparency.
As Built to BIM Services:
Types of As-Built Information (Drawings, Documentation, Surveys):
4. • Data Accuracy: Achieving precise representation of physical structures can be
challenging due to discrepancies between initial design plans and the actual
construction process. Inaccuracies can stem from human errors, material
substitutions, or on-site changes that aren't adequately documented.
• Data Timeliness: Timeliness is crucial when it comes to updating As-Built Data.
Delays in recording changes made during construction or renovation can
impede project progress, as well as impact maintenance and decision-making
processes. Outdated data can lead to costly errors.
• Integration Complexity: Integrating As Built Services Data into existing
systems and workflows can be complex. It requires seamless compatibility
between various software tools and platforms, as well as data standardization.
This complexity can slow down data utilization.
• Data Accessibility: Accessibility issues can hinder the effective use of As-Built
Data. Stakeholders, including architects, engineers, and maintenance teams,
need easy access to up-to-date information. Ensuring this access across
different devices and locations is a challenge.
• Cost and Resources: Maintaining accurate As-Built Data demands substantial
resources. This includes the costs associated with data collection,
documentation, and digitalization efforts. It can strain budgets, especially for
organizations with large portfolios of buildings or infrastructure projects.
Balancing the investment with the expected benefits is a critical consideration.
Structural BIM Services:
Challenges with As-Built
Data:
5. • Data Collection: Initiate the process by meticulously gathering
precise As-Built data, which includes drawings, documentation,
and comprehensive surveys of the existing physical structure.
• Data Integration: Seamlessly integrate the acquired As-Built data
into the Building Information Modeling (BIM) software, ensuring a
coherent alignment with the digital project representation.
• Model Comparison: Conduct a thorough analysis by comparing
the As-Built data with the existing BIM Services model. This step
reveals discrepancies, deviations, and areas requiring updates.
• Model Refinement: With a keen focus on accuracy, refine the BIM
model by thoughtfully incorporating the As-Built data. The
objective is to create a highly precise digital twin.
• Data Maintenance: Implement a robust data maintenance
system that facilitates the continuous synchronization of the BIM
model with any modifications made during the construction or
renovation phase.
Building Information Modelling:
As-Built to BIM Workflow:
6. • Greater Precision: As-Built to BIM enhances project accuracy by
aligning digital models with real-world data. This alignment reduces
mistakes and inconsistencies.
• Efficient Renovations: When renovating, having a detailed
understanding of existing structures helps save time and
resources. You'll make informed decisions.
• Smooth Collaboration: It fosters seamless collaboration among
project stakeholders, including architects, engineers, and
contractors. Everyone works from a shared, up-to-date platform.
• Cost Efficiency: By ensuring that design plans match actual site
conditions and materials, As-Built to BIM reduces expensive errors
and change orders.
• Lifecycle Management: Beyond construction, it aids in facility
management and maintenance, optimizing operations and
extending the life of the asset.
Point Cloud to BIM Services:
Benefits of As-Built to BIM:
7. • Comprehensive Surveys: Conduct thorough site
surveys using digital process like Scan to BIM Services ,
ensuring precise measurements, structural details, and
utility information.
• Documentation Review: Scrutinize existing
documentation alongside real-time updates during
construction to maintain data accuracy and
completeness.
• Skilled Personnel: Assign trained personnel for data
collection and validation, emphasizing the importance of
precision and adherence to standards.
• Data Consistency: Continuously compare As-Built data
with design plans and previous records, implementing
digital verification and standardization practices.
• Documentation Trail: Keep a meticulous
documentation trail for all processes to ensure
transparency, accountability, and reliable integration into
BIM models and databases.
As Built to BIM Services:
Best Practices for As-Built Data Collection, Quality Control,
and Data Validation:
8. • Design Phase Alignment: As-Built to BIM ensures that real-world data
aligns seamlessly with design plans, bridging the gap between vision and
reality.
• Construction Efficiency: It acts as a construction compass, guiding
builders with precision, minimizing errors, and optimizing resource
utilization throughout the construction phase.
• Facility Management Transition: After project completion, it becomes a
valuable asset, offering a digital twin of the facility. This twin empowers
efficient facility management, enhancing maintenance and operations.
• Change Management: In a dynamic project environment, As-Built to BIM
becomes a change tracker. It records and documents alterations to the
original design, aiding in effective change management.
• Data-Driven Decisions: By seamlessly integrating with design,
construction, and facility management phases, As-Built to BIM empowers
stakeholders with data-driven insights for informed decision-making and
superior project outcomes.
Scan to BIM Services:
Integration with BIM Project Lifecycle::