BIM Objects Statistics


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BIM Objects Statistics 2023: Facts about BIM Objects outlines the context of what’s happening in the tech world.

LLCBuddy editorial team did hours of research, collected all important statistics on BIM Objects, and shared those on this page. Our editorial team proofread these to make the data as accurate as possible. We believe you don’t need to check any other resources on the web for the same. You should get everything here only 🙂

Are you planning to form an LLC? Maybe for educational purposes, business research, or personal curiosity, whatever the reason is – it’s always a good idea to gather more information about tech topics like this.

How much of an impact will BIM Objects Statistics have on your day-to-day? or the day-to-day of your LLC Business? How much does it matter directly or indirectly? You should get answers to all your questions here.

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Top BIM Objects Statistics 2023

☰ Use “CTRL+F” to quickly find statistics. There are total 18 Bim Objects Statistics on this page 🙂

Bim Objects “Latest” Statistics

  • As part of a productivity collaboration, the New Zealand government established a BIM acceleration committee with the objective of increasing construction sector efficiency by 20% by 2020.[1]
  • 51% increase in leads originating through the BIM object platform between 2019 and 2020.[2]
  • According to a study of the object types described in the IFC, only 10.7% of the auxiliary components and 48% of the building elements were defined.[3]

Bim Objects “Other” Statistics

  • In 2021, the global marketplace for BIM objects surpassed 2.7 million users and close to 2,200 building product manufacturers, according to BIM Object.[4]
  • A 2013 survey of European BIM practice showed France in last place, but, with government support, in 2017 it had risen to third place with more than 30% of real estate projects carried out using BIM.[5]
  • In 2011, 43% of respondents indicated they had never heard of BIM; by 2020, 73% reported using it.[5]
  • Building SMART Norway, a regional organization that represents 25% of the Norwegian construction sector, serves as the focal point for national BIM development.[5]
  • Despite a higher number of consumers and a larger energy reference area, the building’s energy requirements were reduced by 61%, according to Webinarcare.[1]
  • According to statistics from 2017, there were then at least 26 countries, including the USA and many EU countries, that had either introduced or planned to introduce BIM mandates.[1]
  • In 2019, government officials said BIM could help save up to 20% by shortening construction time, and urged wider adoption by infrastructure ministries.[1]
  • The usage phase in typical buildings accounts for up to 90% of all environmental loads, mostly because of heating and/or cooling.[6]
  • Only horizontal grids and vertical levels were indicated among the auxiliary components, but around 72% of all construction elements and 66.7% of spatial elements were.[3]
  • Almost 96.1% of the drawing expression components were made using the BIM model data, with 50.2% of those expression elements being developed using pure BIM and 45.9% using BIM plus extra labor.[3]
  • BIM authoring software allowed for the generation of drawings without the need for extra outside labor, and just 71% of the drawing expression parts needed it.[3]
  • When the techniques of data usage were finally applied to a sample project, it was discovered that only 92.9% of the components were expressed in combination with the BIM model data, while only 71% of the drawing expression elements needed external work.[3]
  • 92.9% of drawing expression components may be stated together with the BIM data to ensure consistency between the BIM model data and drawings.[3]
  • About 92.9% of the structural floor plans and structural section drawings in the field of structures were created using BIM data.[3]
  • When 2D deliverables are taken out of the BIM model and do not adhere to the standards of the traditional 2D CAD based drawing process, an additional 41% of work is needed on top of what is done using BIM data.[3]

Also Read

How Useful is Bim Objects

One of the key advantages of BIM objects is their ability to save time and reduce errors in the design and construction process. By using standardized data-rich models, designers can quickly and accurately incorporate products into their designs, eliminating the need for manual input and reducing the risk of miscommunication or misinterpretation. This can lead to more efficient project delivery, lower costs, and higher quality outcomes for construction projects.

Furthermore, BIM objects can facilitate collaboration between different project team members. With access to a centralized digital library of building components, stakeholders can easily share and access the latest design information, making it easier to coordinate design changes and ensure that everyone is working from the same set of data. This can help to improve project workflows, reduce conflicts, and enhance overall project communication.

BIM objects can also be a valuable resource for improving sustainability and energy efficiency in building design. By incorporating models of energy-efficient products and materials into their designs, architects and engineers can evaluate the environmental impact of their decisions and make more informed choices about sustainable building practices. This can help to reduce carbon emissions, conserve resources, and create healthier, more sustainable buildings for the future.

However, it’s important to recognize that BIM objects do have limitations. For one, BIM objects are only as useful as the data they contain. If the information within the objects is incomplete, inaccurate, or outdated, it can undermine their utility and create potential risks for project performance. It is crucial for manufacturers and suppliers to ensure that their BIM objects are up-to-date and accurate to maximize their value to the industry.

Additionally, the use of BIM objects may require a certain level of technical proficiency and training on the part of design professionals. Some users may struggle to navigate complex BIM software or integrate BIM objects into their workflows effectively, which could limit the broader adoption and impact of BIM technology in the industry. Education and training programs may be necessary to help mitigate these challenges and ensure that all stakeholders can benefit from the potential of BIM objects.

In conclusion, BIM objects have the potential to revolutionize the way building projects are designed, planned, and constructed. They offer a host of benefits, including improved design efficiency, enhanced collaboration, and increased sustainability. However, it is essential for industry professionals to be mindful of the limitations of BIM objects and take proactive steps to address potential challenges in order to fully harness their utility and maximize their impact on the construction industry.

Reference


  1. webinarcare – https://webinarcare.com/best-bim-objects-software/bim-objects-statistics/
  2. bimobject – https://business.bimobject.com/en-us/blog/statistics-proving-bim-means-business/
  3. sciencedirect – https://www.sciencedirect.com/science/article/pii/S0926580522002138
  4. bimobject – https://business.bimobject.com/en/blog/what-100-million-downloaded-files-mean-for-manufacturers/
  5. wikipedia – https://en.wikipedia.org/wiki/Building_information_modeling
  6. researchgate – https://www.researchgate.net/publication/346860939_Integration_of_Life_Cycle_Data_in_a_BIM_Object_Library_to_Support_Green_and_Digital_Public_Procurements

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