Today, we will discuss the significance of the BIM application platform. By using the BIM platform to integrate the processes of real construction projects, it leverages the core concepts of “digitalization” and “parameterization” to continuously provide real-time project information. This includes design details, management data, detailed lists, and cost information, all aimed at maintaining high quality, reliability, and coordination throughout the project lifecycle.
The platform uses components and spaces as fundamental units to establish a Project Breakdown Structure (PBS). Each space’s decoration engineering components are then systematically dismantled and recorded. These components are categorized by engineering discipline to form a Work Breakdown Structure (WBS) specific to the decoration project. This WBS serves not only as an archive and classification system for multi-dimensional building component 3D models but also as a reference for subcontractor contracts.
When constructing decoration engineering components according to established construction rules, the process accounts for geometric, behavioral, temporal, and physical attributes of each component. This ensures that the components meet the basic requirements for multi-dimensional building modeling (MD models). As a result, decoration engineering components created under these construction guidelines are fully compatible with MD models.
By utilizing the BIM models and related data already developed on the BIM application platform, maintenance and management teams can access various equipment reference data during operations and record information after completing tasks. This improves maintenance efficiency, enhances convenience for operational staff, and reduces the risk of data tampering or loss, ultimately boosting the overall efficiency of building maintenance management.
Regarding BIM technology, standardized BIM file formats are used during the construction phase to manage spatial information. These files carry vital building data from the design and construction stages, providing essential equipment and spatial information for maintenance purposes. Furthermore, by linking BIM equipment components with resources in PO-ERP systems and treating BIM as a project resource, all maintenance-related information is centralized on a single platform, simplifying data access and management.
This article also explores the reasons behind quantity discrepancies when comparing traditional 2D drawings and BIM-based building information models after quantity calculations. It proposes specific procedures for quantity calculation and model verification to improve accuracy. The process involves converting all contract drawings into 3D models using BIM software, then collaborating with architects and owners to confirm model accuracy. Using the 3D building information model, building drawings and quantity lists are generated and compared with architect-provided quantity sheets to assess their usability in the industry.
That concludes our discussion on the significance of the BIM application platform. I hope this article has been helpful to everyone!















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