Construction of Smart BIM Laboratory
Construction of Smart BIM Laboratory
A data-driven tool applied to engineering design, construction, and management. By integrating building data and information models, it can be shared and transmitted throughout the entire lifecycle of project planning, operation, and maintenance. This enables engineering and technical personnel to have a correct understanding and efficient response to various building information, providing a foundation for collaborative work for the design team and various construction entities, including construction and operation units, to improve production efficiency, save costs, and shorten construction periods. You can review the entire professional drawings during the design process, conduct collision analysis, pipeline synthesis, clearance analysis, etc. based on BIM models, and view the interior of the model from a third person's perspective by conducting a walkthrough review in the 3D model. Discovering the issue of reserving necessary space for the installation, operation, and maintenance of equipment, pipelines, and fittings, and directly exporting engineering quantities through BIM models to achieve the goal of timely optimization of design solutions. It also provides a solid foundation for meeting the spatial effects of later use.
Optimization of laboratory planning and design
Optimization of laboratory planning and design
BIM integrates the design of various aspects such as building structure, equipment layout, piping systems, electrical wiring, etc. into a unified model, allowing designers to conduct comprehensive planning and design on the same platform. BIM provides an intuitive 3D visualization design interface, allowing designers to intuitively understand the overall layout and design effects of the laboratory through the model. The simulation analysis function of BIM software can be used to simulate and analyze the layout, ventilation, lighting, and other aspects of the laboratory, evaluate the effectiveness of the design scheme, and optimize the design scheme of the laboratory.
Collaboration in laboratory decoration construction
Collaboration in laboratory decoration construction
BIM allows architects, structural engineers, mechanical and electrical engineers, and other designers from different professions to collaborate on the same platform. Laboratory decoration needs to consider many details, such as equipment placement, ventilation system, pipeline layout, etc. BIM can promote communication and collaboration among various specialties, ensuring the consistency and completeness of the design scheme.
Laboratory construction management
Laboratory construction management
The BIM model can be updated at any time and provides real-time visualization effects, allowing all parties involved to see the latest design and progress. The construction team can annotate information such as construction progress, material and equipment locations in the model to ensure that everyone is aware of the latest status of the project. BIM can be integrated with material and resource management systems to help management teams track the usage of materials and resources. This helps to ensure that the required materials and equipment are provided at the appropriate time and location, avoiding construction delays caused by resource shortages or misuse.
Laboratory post operation and maintenance
Laboratory post operation and maintenance
Based on the BIM model, asset information and historical data can be used to develop maintenance plans and preventive maintenance strategies. Through the intelligent analysis and prediction function of BIM models, laboratory managers can timely detect signs of equipment failure, take preventive maintenance measures, extend the service life of equipment, reduce maintenance costs and downtime. Laboratory managers can trace the maintenance records of equipment through BIM models, understand the maintenance status and historical performance of the equipment, and provide reference basis for subsequent maintenance and decision-making.
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