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Heat network testing actualization

https://doi.org/10.31675/1607-1859-2021-23-1-116-125

Abstract

The paper analyzes the testing methods for the heat loss, hydraulic resistance and maximum temperature of the heat carriers. The tests are based on the availability of modern equipment and the requirements of regulatory and technical documentation. The relevance of this work is due to the imperfect requirements of the current regulatory and engineering legislation of the Russian Federation for testing heating networks of resource providers. Based on the data obtained, it is possible to assess the potential of the test methods and expenditures. Purpose: Consideration of existing methods and updating of heating network testing methods. Methodology: Theoretical heat and hydraulic loss analyses of the heating networks. The test results are taken into consideration. Research findings: The obtained data can be used to update the testing process and eliminate errors in the test methods. Practical implications: The obtained results will allow the resource providers to increase the test efficiency of heating networks. Value: The existing heat and hydraulic loss test methods of heating networks were developed and approved in 1998. This work is aimed at developing modern methods with the elimination of the shortcomings of the existing methods and implementation of the modern equipment.

About the Authors

N. I. Kurilenko
Tyumen Industrial University
Russian Federation

Nikolai I. Kurilenko, PhD, A/Professor

38, Volodarskii Str., 625000, Tyumen



K. E. Kuzmenko
Tyumen Industrial University
Russian Federation

Kirill E. Kuzmenko, Research Assistant

38, Volodarskii Str., 625000, Tyumen



References

1. Metodicheskie ukazaniya po ispytaniyu vodyanyh teplovyh setej na gidravlicheskie poteri [I nstructions for testing water heating networks for hydraulic losses]. Moscow, 1989. 14 p. (rus)

2. Metodicheskie ukazaniya po opredeleniyu teplovyh poter' v vodyanyh teplovyh setyah [Instructions for determining heat losses in water heating networks]. Moscow, 1989. 18 p. (rus)

3. Manyuk V.I., Kaplinskij Ya.I., Hin E.B. Naladka i ekspluatacii vodyanyh teplovyh setej: spravochnik [Adjustment and operation of water heating networks. Reference book]. Moscow: Stroyizdat, 1988. 241 p. (rus)

4. Agapkin V.M., Borisov S.N., Krivoshein B.L. Spravochnoe rukovodstvo po raschetam truboprovodov [Reference guide for pipeline]. Moscow: Nedra, 1987. 53 p. (rus)

5. Aksenov B.G., Karyakina S.V., Moiseev, B.V., Shapoval A.F., Stepanov O.A. Matematicheskaya model' vtorichnogo moroznogo pucheniya vblizi nizkotemperaturnogo podzemnogo truboprovoda [Mathematical model of secondary frost heaving near low-temperature underground pipeline]. Sovremennye problemy nauki i obrazovaniya. 2012. No. 3. 18 p. (rus)

6. Aksenov B.G., Karyakina S.V., Moiseev, B.V., Shapoval A.F., Stepanov O.A. Modelirovanie kolebanij granicy promerzaniyaottaivaniya v gruntah i naruzhnyh stroitel'nyh konstruk ciyah [Modeling of freezing-thawing boundary vibrations in soils and external building structures]. Sovremennye problemy nauki i obrazovaniya. 2012. No. 2. 21 p. (rus)

7. Bogomolov V.P., Moiseev B.V., Hapoval A.F.S. Optimizaciya raboty teplovyh setej v usloviyah Zapadnoj Sibiri [Optimization of heating networks in Western Siberia]. Izv. vuzov. Neft' i gaz. 1997. No. 4. 41 p. (rus)

8. Bogomolov V.P., Moiseev B.V., Hapoval A.F.S. Energosberegayushchie tekhnologii v sistemah teplosnabzheniya Zapadnoj Sibiri [Energy-saving technologies in heat supply systems of Western Siberia]. Izv. vuzov. Neft' i gaz. 1998. No. 4. 38 p. (rus)

9. Bogomolov V.P., Moiseev B.V., Chikishev V.M., Shapoval A.F. Povyshenie nadezhnosti i effektivnosti sistemy teplosnabzheniya v Zapadnoj Sibiri [Reliability and efficiency improvement of heat supply system in Western Siberia]. Moscow: Nedra, 1999. 51 p. (rus)

10. Tuomas E., Skrinska A. An exploration of heat consumption for production of domestic hot water in central heat substations. Statyba. 1998. V. 4. No. 3. Pp. 196–201.

11. Williams B. Point Arguello Project start-up blocked again. Oil and Gas Journal. 1990. V. 88. No. 47. Pp. 34–36.

12. Zemenkov Yu.D., Moiseev B.V., Toropov S.Y. Industrial power system. Tyumen: Oil and Gas University Publishing House, 2014. 236 р.

13. Krylov G.V., Moiseev B.V., Stepanov O.A. Fundamentals of heat power engineering in gas industry. Moscow: Nedra-Business Center, 1999. 239 p.


Review

For citations:


Kurilenko N.I., Kuzmenko K.E. Heat network testing actualization. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2021;23(1):116-125. (In Russ.) https://doi.org/10.31675/1607-1859-2021-23-1-116-125

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ISSN 1607-1859 (Print)
ISSN 2310-0044 (Online)