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Building Information Modelling: compete or collaborate? Tuesday 29th May, 5.308pm (Registration 5.10pm) Venue: RIBS 66 Portland Place, London, W1B 1AD This session will challenge existing concepts
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How to fill out building information modelling:

01
Begin by gathering all the necessary data and information about your building project. This includes architectural drawings, structural plans, mechanical and electrical systems details, and any other relevant data.
02
Next, create a digital representation of the building using a building information modelling software or BIM tool. This should include all the different components and systems of the building, such as walls, floors, windows, doors, HVAC systems, plumbing, and electrical systems.
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Use the BIM tool to input the data and information you have collected. This may involve entering dimensions, specifications, materials, and other relevant details about each component of the building.
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Once all the data has been inputted, you can start building the 3D model of the building using the BIM tool. This involves placing the different components in their respective locations and ensuring that they are accurately represented in the digital model.
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As you build the 3D model, make sure to include any additional information or details that may be important for the construction and management of the building. This may include information about sustainability features, energy consumption, maintenance requirements, and life cycle analysis.
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Continuously review and update the BIM throughout the building project. As new information or changes are made, make sure to reflect these updates in the BIM model to ensure that it remains accurate and up to date.

Who needs building information modelling:

01
Architects and architectural firms use building information modelling to create accurate and detailed digital representations of their designs. This allows them to visualize the building in 3D, analyze its performance, and make informed design decisions.
02
Construction companies and contractors use building information modelling to plan and manage the construction process. This includes scheduling, sequencing, and coordinating different trades and disciplines, as well as identifying any potential conflicts or issues before they occur in the field.
03
Building owners and facility managers use building information modelling to effectively manage and maintain their buildings throughout their lifecycle. BIM provides valuable information about the building's systems, components, and performance, allowing for more efficient and cost-effective maintenance and operations.
04
Government agencies and regulatory bodies use building information modelling to ensure compliance with building codes and regulations. BIM can help identify potential conflicts or issues in the design or construction process, as well as provide valuable information for inspections and approvals.
05
Manufacturers and suppliers use building information modelling to showcase their products and systems in the context of the building. BIM allows them to demonstrate how their products integrate and interact with the overall building design, as well as provide important data and specifications for procurement and installation.
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Building Information Modelling (BIM) is a process that involves creating and managing digital representations of physical and functional characteristics of a building or infrastructure.
Architects, engineers, contractors, and other professionals involved in the design and construction of a building are required to file building information modelling.
Building information modelling is filled out using specialized software that allows users to create 3D models of the building along with relevant data and information.
The purpose of building information modelling is to improve the efficiency and accuracy of the design and construction process, enhance collaboration among project stakeholders, and provide valuable data for building operation and maintenance.
Building information modelling must include detailed information about the building's geometry, spatial relationships, geographic information, quantities, costs, and other relevant data.
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