Scientific journal
Bulletin of Higher Educational Institutions
North Caucasus region

TECHNICAL SCIENCES


UNIV. NEWS. NORTH-CAUCAS. REG. TECHNICAL SCIENCES SERIES. 2016; 4: 61-66

 

http://dx.doi.org/10.17213/0321-2653-2016-4-61-66

 

THE RELIABILITY IMPROVEMENT AND REDUCING HEAT LOSSES BY FORMING THE GROUNDWATER DRAINAGE SYSTEM OF OMSK HEAT TRANSMISSION MAINS

S.V. Chicherin

Chicherin Stanislav Viktorovich – post-graduate student, department «Thermal Engineering», Omsk State Transport University, Omsk, Russia.
E-mail: man_csv@hotmail.com

 

Abstract

The problem of ingress and manifestation of water with possible consequent damage to insulation and external corrosion to piping was analyzed. While piping location is lower than the water table level groundwater drainage along the piping network is an important factor in insuring system reliability. An analysis of existing soils conditions including elevation of each boring, water table level, description of soil strata and penetration data was determined. Construction of a gravity drainage to a storm drain as an investment project towards 2020 is proposed. Overall project period is 30 years whereas a period of project implementation is 7 months.

 

Keywords: district heating; waterproofing; groundwater; drain, drainage; concrete culvert; first costs; payback period.

 

Full text: [in elibrary.ru]

 

References

1. Chicherin S.V. [Piping placed in channels as a factor in insuring system reliability]. Materialy dokladov X shkoly-seminara molodykh uchenykh i spetsialistov akademika RAN V.E. Alemasova [Materialy dokladov X shkoly-seminara molodyh uchenyh i specialistov akademika RAN V.E. Alemasova]. Kazan, KazNTs RAN, 2016, 393 р.

2. Avdolimov E.M., Shal'nov A.P. Vodyanye teplovye seti [Hot-water distribution systems]. Moscow, Stroiizdat, 1984.

3. Tereshchenko T., Nord N. Importance of Increased Knowledge on Reliability of District Heating Pipes // Procedia Engineering. 2016. Vol. 146. Pp. 415 – 423.

4. Kozin V.E., Levina T.A. i dr. Teplosnabzhenie [District heating]. Moscow, "Vysshaya shkola", 1980. 408 р.

5. MacKenzie-Kennedy C. District Heating, Thermal Generation and Distribution: A Practical guide to centralised generation and distribution of heat services. Oxford, Pergamon Press Ltd., 1979. 198 p.

6. Wiltshire R. (ed.). Advanced District Heating and Cooling (DHC) Systems. Woodhead Publishing, 2015.

7. Titov G.I., Novopashina N.A. Issledovanie nadezhnosti teplovykh setei [Hot-water pipes reliability research]. Regional'naya arkhitektura i stroitel'stvo, 2011, no. 2, pp. 30 – 33. [In Russ.]

8. Phetteplace G. et al. District Heating Guide. Atlanta, ASHRAE, 2013. 374 p.

9. SO 153-34.20.523-2003 Metodicheskie ukazaniya po sostavleniyu energeticheskoi kharakteristiki dlya sistem transporta teplovoi energii po pokazatelyu "teplovye poteri". Chast' 3 [153-34.20.523-2003 SO Part III: Procedural Guidelines for Compiling Energy Characteristics of Piped Hot Water Heat Supply Networks According to the "Thermal Losses" Indicator].

10. Prikaz Minenergo Rossii ot 30.12.2008. № 325 "Ob organizatsii v Ministerstve energetiki Rossiiskoi Federatsii raboty po utverzhdeniyu normativov tekhnologicheskikh poter' pri peredache teplovoi energii" [Ministry of Energy of Russian Federation Order of 30 December 2008. Ob organizacii v Ministerstve jenergetiki Rossijskoj Federacii raboty po utverzhdeniju normativov tehnologicheskih poter' pri peredache teplovoj jenergii].