Publikowanie artykułów jest możliwe po podpisaniu zgody na przeniesienie licencji na czasopismo.
The development of BIM technology, its dissemination and the resulting standardisation are visible globally. This technology gives access to data created during the design process, enabling their schedule, modification and analysis. The use of data is a common point with data-driven design which, in the context of this paper, is a design approach where data is the primary source of information that affects the design.
Considering the characteristics of modern office buildings and their layout, a workflow using data-driven design and BIM software was created. It makes the process more efficient in terms of the time needed for selected tasks as well as the use, transfer and management of information.
The paper presents solutions that standardise the input data of the type and number of rooms meeting the tenant's needs. Based on the data from the spreadsheet, using scripts, elements representing the area and other parameters of rooms are created. After the arrangement of the spaces, the creation of walls and rooms, the data is automatically transferred to the parameters of the rooms. The furniture is automatically placed using equipment standard spreadsheet data. To ensure the verification of the project's compliance with the requirements, a script was created which graphically shows the fulfilment of the conditions.
MillwardBrown, “Raport z badania: BIM - polska perspektywa”, (2015).
Google Scholar
Machado M. et al., “Implementing BIM to Streamline a Design, Manufacture, and Fitting Workflow: A Case Study on A Fit-Out SME in the UK”, International Journal of 3-D Information Modeling, vol. 5, no. 3, (2016), pp. 31–46. https://doi.org/10.4018/IJ3DIM.2016070103
DOI: https://doi.org/10.4018/IJ3DIM.2016070103
Google Scholar
PN-EN ISO 19650-2 : 2019 Organizacja i digitalizacja informacji o budynkach i budowlach, w tym modelowanie informacji o budynku (BIM) - Zarządzanie informacjami za pomocą modelowania informacji o budynku - Część 2: Realizacja projektu, Polish Committee for Standardization.
Google Scholar
Dudzińska E., “Optimization of the design process for office spaces with the use of BIM technology”, Builder Science, vol. 278, no. 9, (2020), pp. 41–43.
DOI: https://doi.org/10.5604/01.3001.0014.3584
Google Scholar
Jasiński A., “Modern office buildings according to shell and core standard – design experience 1995 – 2013”, Technical Transactions Architecture, vol. 7-A, (2014).
Google Scholar
Sugiyama T. et al., “Office spatial design attributes, sitting, and face-to-face interactions: Systematic review and research agenda”, Building and Environment, vol. 187, no. November 2020, (2021). https://doi.org/10.1016/j.buildenv.2020.107426
DOI: https://doi.org/10.1016/j.buildenv.2020.107426
Google Scholar
Nediari A. et al., “Preparing post Covid-19 pandemic office design as the new concept of sustainability design”, IOP Conference Series: Earth and Environmental Science, vol. 729, no. 1, (2021). https://doi.org/10.1088/1755-1315/729/1/012095
DOI: https://doi.org/10.1088/1755-1315/729/1/012095
Google Scholar
Dudzińska E., “Zastosowanie BIM w projektach wykonawczych fit-out – wyzwania i możliwości”, Materiały Budowlane, vol. 5, no. 573, (2020), pp. 59–60.
Google Scholar
“What is Dynamo? | The Dynamo Primer”, Available: https://primer.dynamobim.org/01_Introduction/1-2_what_is_dynamo.html [Accessed: 06 February 2022]
Google Scholar
Turrin M. et al., “Project Discover: An Application of Generative Design for Architectural Space Planning”, SIMAUD ’17: Proceedings of the Symposium on Simulation for Architecture and Urban Design, (2017).
Google Scholar
Utwór dostępny jest na licencji Creative Commons Uznanie autorstwa – Na tych samych warunkach 4.0 Miedzynarodowe.
Publikowanie artykułów jest możliwe po podpisaniu zgody na przeniesienie licencji na czasopismo.