№08|2023

WATER SUPPLY AND WASTEWATER DISPOSAL SCHEMES

UDC 628(14+21):66.011
DOI 10.35776/VST.2023.08.04

Gromov Grigorii, Novikov Kirill

On possible combining the concepts of BIM and GIS while developing schematics of external water supply and sewer networks

Summary

At the moment, the concepts of «scheme of water supply and wastewater disposal of a settlement» and «project documentation» are fixed in the Russian legislation. Based on the activities provided in the scheme, project documentation for each of them is further developed. At the same time, the development of an electronic model of the water supply and wastewater disposal scheme, in accordance with Decree of the Government of the Russian Federation of September 5, 2013 No. 782, is carried out using software based on a geographic information system (GIS); whereas the design documentation for a capital construction object should be developed on the basis of an information model in accordance with Decree of the Government of the Russian Federation No. 331 dated March 5, 2021. The information model is developed with the help of the software using BIM modeling. The analysis shows that for the moment the software that would fully combine these two concepts – GIS and BIM is not available. Interim results of the implementation of the software package in «Mosvodokanal» JSC are presented with the analysis of possible combining the concepts of BIM and GIS to obtain more accurate and complete information about the facility being implemented.

Key words

, , , , ,

For citation: Gromov G. N., Novikov K. A. On possible combining the concepts of BIM and GIS while developing schematics for external water supply and sewer networks. Vodosnabzhenie i Sanitarnaia Tekhnika, 2023, no. 8, pp. 31–37. DOI: 10.35776/VST.2023.08.04. (In Russian).

The further text is accessible on a paid subscription.
For authorisation enter the login/password.
Or subscribe

REFERENCES

  1. Gromov G. N., Khudiakova D. D., P’iankov K. G. [Approaches to the implementation of hydraulic electronic models of public water supply systems]. Vestnik MGSU, 2021, pp. 623–634. (In Russian).
  2. Primin O. G., Gromov G. N., Stepanov D. L., Kozlova O. V. [Calibration of an electronic moel of a water supply system (through the example of the water distribution networks of Salavat city)]. Vodosnabzhenie i Sanitarnaia Tekhnika, 2018, no. 9, pp. 4–12. (In Russian).
  3. Nekrasov A. V. Komp’iuternoe modelirovanie gidrodinamicheskikh protsessov system vodosnabzheniia: Uchebnoe posobie [Computer modeling of hydrodynamic processes in water supply systems: Textbook. Ekaterinburg, Ural State University Publ., 2014, 313 p.].
  4. Egorova Iu. A., Konevskii E. V., Vas’kovskii A. V., Zaiko V. A. [The experience of using geographical information technologies and program-calculation complexes in searching unaccounted-for-water in the Samara water supply system]. Vodosnabzhenie i Sanitarnaia Tekhnika, 2016, no. 8, pp. 45–50. (In Russian).
  5. Primin O. G., Gromov G. N. [Designing an electronic model of water supply and wastewater disposal systems and model implementation by the example of a Russian city]. Vodosnabzhenie i Sanitarnaia Tekhnika, 2016, no. 4, pp. 44–51. (In Russian).
  6. Gromov G. N. Sovershenstvovanie gidravlicheskikh i tekhniko-ekonomicheskikh raschetov system podachi i raspredeliniia vody s ispol’zovaniem elektronnykh modelei [Improvement of hydraulic and technical and economic calculations of water supply and distribution systems using electronic models. Synopsis of a thesis for Ph. D. degree in Engineering. Moscow, 2021, 143 p.].
  7. Sychev S. [Russian bim-technologies: designing external general utilities in Model Studio CS]. SAPR i Grafika, 2021, no. 7, pp. 50–53. (In Russian).
  8. Dodge Data & Analytics. The Business Value of BIM for Water Projects. 2018, рр. 1–48.
  9. Boikov V. N., Kuzovlev E. G., Barannik S. V. [Road GIS in the context of information modeling (BIM) paradigm]. Dorozhniki, 2017, no. 3, pp. 66–69. (In Russian).
  10. Malinovskii A. M., Ershov A. V., Alenin I. E. [Problems and prospects of using BIM technologies to design virtual models of cities in 3D GIS format]. Interekspo Geo-Sibir’, 2021, v. 7, no. 1, pp. 223–231. (In Russian).
  11. Alenin I. E., Ershov A. V., Chernov A. V. [Analysis of the possibility of integrating BIM and GIS for the purposes of urban planning and planning of populated areas]. Interekspo Geo-Sibir’, 2022, v. 7, no. 1, pp. 3–6. (In Russian).
  12. Arsen’ev A. N., Maiorov A. N. [Experience in designing an ISIS Mosvodokanal JSC]. Nailuchshie Dostupnye Tekhnologii Vodosnabzheniia i Vodootvedeniia, 2018, no. 5, pp. 20–33. (In Russian).

Banner Oct 2024

myproject msk ru

Баннер конференции г. Пятигорск

souz ingenerov 02

Aquatherm 200x200 gif ru foreign