Preview

Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture

Advanced search

Methods of parameter measurement in testing hydraulic resistance. Unification of measuring instruments

https://doi.org/10.31675/1607-1859-2023-25-2-173-182

Abstract

Purpose: The study of heating networks; methods and technical equipment are proposed for testing heating networks.
Methodology: The analysis of actual tests carried out on in the Tyumen region for heat networks with different diameter and heat supply sources, whether CHP or stand-alone boilers.
Research results: Existing methods of organising hydraulic loss tests are evaluated, and the results obtained in the course of this work are analyzed. The test organization procedure is proposed to improve the parameter accuracy of thermal network state. The selection of computing equipment and determination of the most suitable ones for each type of tests.
Value: The relevance of the topic under consideration is due to the imperfection of the requirements of the current regulatory and technical legislation of the Russian Federation for testing on heat networks of resource-supplying organizations. Existing test methods for thermal and hydraulic losses do not take into account the possibility of using modern instrumentation.

About the Authors

N. I. Kurylenko
Tyumen Industrial University
Russian Federation

 Nikolai I. Kurylenko, PhD, A/Professor

38, Volodarskii Str.,625000, Tyumen, Russia 



K. E. Kuzmenko
Tyumen Industrial University
Russian Federation

 Kirill E. Kuzmenko, Research Assistant 

38, Volodarskii Str.,625000, Tyumen, Russia 



L. Yu. Mikhailova
Tyumen Industrial University
Russian Federation

 Larisa L. Mikhailova, PhD, A/Professor 

38, Volodarskii Str.,625000, Tyumen, Russia 



K. N. Ilyukhin
Tyumen Industrial University
Russian Federation

 Konstantin N. Ilyukhin, PhD, A/Professor 

38, Volodarskii Str.,625000, Tyumen, Russia 



References

1. Kurilenko N.I., Kuzmenko K.E. Analysis of methods for determining corrosion wear of heat pipelines. In: Proc. 10th Int. Sci. Conf. ‘Energy Saving and Innovation Technologies in Fuel and Energy Sector’. 2020. Pp. 32–34. (In Russian)

2. Kurilenko N.I., Kuzmenko K.E. Methods for determining the circulation ring during tests for heat losses and hydraulic resistance. In: Proc. 8th All-Russ. Conf. ‘Theory of Heat and Gas Supply and Ventilation’. 2020. Pp. 139–141. (In Russian)

3. Kurilenko N.I., Kuz'menko K.E. Heat network testing actualization. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta – Journal of Construction and Architecture. 2021; 23 (1): 116–123. (In Russian)

4. Ivanov V.V. Modeling of thermal processes of underground channelless heating mains. In: Proc. 2nd Russ. National Conf. on Heat Transfer. 1998. Pp. 43–55. (In Russian)

5. Ivanov V.V. Distribution of temperatures and heat flows in underground heating mains. In: Proc. 2nd Russ. National Conf. on Heat Transfer. 1998. Pp. 117–138. (In Russian)

6. Nikolayev A.A. Design of thermal networks. Reference book. 1965. 273 p. (In Russian) 7. Manyuk V.I., Kaplinskiy Ya.I., Khin E.B. Adjustment and operation of water heating networks. Reference book, 1988. 174 p. (In Russian)

7. Williams B. Point Arguello project start-up blocked again. Oil and Gas Journal. 1990; 88 (47); 22–31.

8. Krylov G.V., Moiseev B.V., Stepanov O.A. Fundamentals of heat power engineering in gas industry. Moscow: Nedra Business Center, 1999. 140 p.

9. Zemenkov Yu.D., Moiseev B.V., Toropov S.Y. Industrial power system. Tyumen: Oil and Gas University Publishing House, 2014. 217 р.


Review

For citations:


Kurylenko N.I., Kuzmenko K.E., Mikhailova L.Yu., Ilyukhin K.N. Methods of parameter measurement in testing hydraulic resistance. Unification of measuring instruments. Vestnik Tomskogo gosudarstvennogo arkhitekturno-stroitel'nogo universiteta. JOURNAL of Construction and Architecture. 2023;25(2):173–182. (In Russ.) https://doi.org/10.31675/1607-1859-2023-25-2-173-182

Views: 175


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


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