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Information modelling of engineering networks for sustainable water consumption

https://doi.org/10.31660/2782-232X-2021-3-22-29

Abstract

The article based on information modelling considers one of the tasks of developing an automated solution for constructing computational schemes and specification materials for them for water supply and disposal – formation and programming of the calculation module of sustainable water consumption (construction of the computational scheme as a table).

About the Authors

M. N. Perevalova
University of Tyumen
Russian Federation

Maria N. Perevalova, Senior lecturer at the Department of Algebra and Mathematical Logic

Tyumen



E. R. Trefilina
University of Tyumen
Russian Federation

Elena R. Trefilina, Candidate of Physical and Mathematical Sciences, Associate Professor at the Department of Software and System Engineering

Tyumen



References

1. Mikayelyan, Z., & Sirunyan, D. (2020). Interaction of Autodesk Revit and IES VE Software Suites in Building Information Modeling. BIM in Construction & Architecture, April 15-17. Saint Petersburg, Saint Petersburg State University of Architecture and Civil Engineering Publ., pp. 28-33. (In English). DOI: 10.23968/BIMAC.2020.003

2. Ngoc, N. M., & Phong, B. H. (2020). Using Pipe Flow Expert Software in Combination with BIM / Revit to Design Water Supply Systems for Buildings. BIM in Construction & Architecture, April 15-17. Saint Petersburg, Saint Petersburg State University of Architecture and Civil Engineering Publ., pp. 33-50. (In English). DOI: 10.23968/BIMAC.2020.004

3. Shakshak, O. M., & Evsikov, I. A. (2019). Multifunctional VR application based on digital building model. Architecton: Proceedings of Higher Education, 4(68), P. 18. (In Russian).

4. Guryeva, Yu. A. (2020). BIM technologies in the construction industry: foreign and domestic experience. BIM in Construction & Architecture, April 15-17. Saint Petersburg, Saint Petersburg State University of Architecture and Civil Engineering Publ., pp. 60-68. (In Russian). DOI: 10.23968/BIMAC.2020.006

5. Semenov, A. A. (2020). Training BIM at the university: necessary technologies. BIM in Construction & Architecture, April 15-17. Saint Petersburg, Saint Petersburg State University of Architecture and Civil Engineering Publ., pp. 223-227. (In Russian). DOI: 10.23968/BIMAC.2019.041

6. Gabidulin, V. M. (2013). Adaptatsiya AutoCAD pod standarty predpriyatiya. Moscow, DMK Press Publ., 208 p. (In Russian).

7. Poleshchuk, N. N. (2015). Programmirovanie dlya AutoCAD 2013-2015. Moscow, DMK Press Publ., 462 p. (In Russian).

8. Shevelev, F. A. (1973). Tablitsy dlya gidravlicheskogo rascheta ctal'nykh, chugunnykh, asbestotsementnykh, plastmassovykh i steklyannykh vodoprovodnykh trub. 5th edition, revised. Moscow, Stroyizdat Publ., 113 p. (In Russian).

9. Uroki AutoCAD. Programmirovanie v AutoCAD. AutoLISP. AutoCAD. (In Russian). Available at: https://acad-prog.ru/ (date of the application: 20.08.2021).


Review

For citations:


Perevalova M.N., Trefilina E.R. Information modelling of engineering networks for sustainable water consumption. Architecture, Construction, Transport. 2021;(3):22-29. (In Russ.) https://doi.org/10.31660/2782-232X-2021-3-22-29

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ISSN 2782-232X (Print)
ISSN 2713-0770 (Online)