Protective coatings of reinforced cooling towers

Автор: Shvets G.S., Korsun V.I.

Журнал: Строительство уникальных зданий и сооружений @unistroy

Статья в выпуске: 3 (66), 2018 года.

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The technologies of anticorrosive protection used in modern construction of reinforced concrete cooling towers are considered. The analysis of technical and technological characteristics of protective systems of companies Sika, MC-Bauchemie, BASF and Hempel is performed. The calculation of the consumption of materials based on consumption rates from manufacturers and from the method of VGB-R 612 Ue (Germany) was carried out for the constructions of reinforced concrete cooling towers H = 150 m. The choice of recommended options for protective coatings of reinforced concrete cooling towers is made on the basis of an analysis of their technical characteristics, total consumption of materials and cost indicators of the anticorrosion system.

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Reinforced concrete cooling tower, anticorrosion coating, calculation of materials consumption, economic calculation, comparison of options

Короткий адрес: https://sciup.org/143163594

IDR: 143163594   |   DOI: 10.18720/CUBS.66.3

Список литературы Protective coatings of reinforced cooling towers

  • Korsun V.I., Mashenko A.N., Kalmykov U.U. Issledovanie napriazhenno-deformirovannogo sostaianya gelezobetonnyh obolochek gradiren . Messenger of DonDABA. 2001. No. 5. Pp. 201-205. (rus)
  • Lohaus L., Kopp S. Monitoring of deteriorational effects on high performance concrete in cooling tower shells. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 217-227.
  • Kopper H.-D., Blomeke P., Meyer J., Busch D. Design and realisation of cooling tower monitoring. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 207-217.
  • Asadzadeh E., Alam M. A Survey on Hyperbolic Cooling Towers. International Journal of Civil, Environmental, Structural, Construction and Architectural Engineering. 2014. No. 10 (8). Pp. 1079-1091.
  • Busch D., Harte R., Kratzig W.B., Montag U. New natural draft cooling tower of 200 m of height. Engineering Structures. 2002. No. 24. Pp. 1509-1521.
  • Korsun V.I., Korsun A.V., Kalmykov U.U., Dmitrienko E.A. Opyt tehnicheskoy diagnostiky i remonta gelezobetonnyh vytiazhnih bushennih gradiren visotoy H=150 m . Defekty zdaniy i sooruzheniy. Usilenie stroitelnih konstrukciy: sbornik nauchnih statey XXI nauchno-metodicheskoy konferencii VITU . Saint-Petersburg. Publishing house of the Polytechnic University, 2017. Pp. 205-209. (rus)
  • Sinkevich A.N., Muchinskaya A.V. Problemy ekspluatacii bashennih gradiren iz monolitnogo zhelezobetona . Fundamental and applied research: problems and results. 2013. No. 9. Pp. 172-176. (rus)
  • Sageau J.-E. Cooling towers since 20 years -results on degradations. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 267-269.
  • Doyle P.F., Maddison G. F., Hurst J. Condition monitoring of 40 year old cooling towers. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 269-279.
  • SP 43.13330.2012. Sooruzheniya promyshlennih predpriyatiy . URL: http://docs.cntd.ru/document/1200092709 (date of the application: 18.10.2017). (rus)
  • Belova E.M. Issledovanie voprosov zashity konstrukciy gradirni ot korrozii . New materials and technologies in mechanical engineering. 2009. No. 10. Pp. 158-159. (rus)
  • Zaicev A.A., Maksimovskih A.V., Kaloshina S.V. Vtorichnaya zashita betona ot korrozii . Modern technologies in construction. Theory and practice. 2016. No. 1. Pp. 266-272. (rus)
  • Levchenko V.N., Levchenko D.V., Kirichenko V.F., Zaichenko V.V. Analiz metodicheskikh osobennostey opredeleniya ekonomicheskoy effektivnosti povysheniya korrozionnoy stoykosti materialov i dolgovechnosti stroitel'nykh konstruktsiy . Modern industrial and civil engineering. 2007. No. 4 (3). Pp. 173-179. (rus)
  • Kochan A. Kakim obrazom mozhno putem primeneniya sistem pokrytiy snizhat' zatraty na tekhnicheskoye obsluzhivaniye dymovykh trub iz zhelezobetona . System requirements: Adobe Acrobat Reader. URL: http://www.mc-bauchemie.ru/promo-materials/remont-i-zaschita-poverhnostey-osnovnih-inzhenernih-sooruzheniy-elektrostanciy.11.pdf (date of the application 18.10.2017). (rus)
  • Kamalova Z.A., Smirnov D.S. Issledovaniya i razrabotki po vosstanovleniyu zhelezobetonnykh konstruktsiy gradirni . News of Kazan State University of Architecture and Civil Engineering. 2011. No. 4. Pp. 233-237. (rus)
  • Sinyakin A.G., Punchenko A.V. Opyt ispolzovaniya materialov i tehnologiy koncerna Sika dlya remonta ingenernih sooruzheniy . Bulletin of the Belgorod State Technological University. V.G. Shukhov. 2007. No 3. Pp. 121-124. (rus)
  • Kochan A. Remont i zashita povehnostei osnovnih ingenernih sooruzheniy elektrostanciy: kratkoe rukovodstvo . System requirements: Adobe Acrobat Reader. URL: http://www.mc-bauchemie.ru/promo-materials/remont-i-zaschita-poverhnostey-osnovnih-inzhenernih-sooruzheniy-elektrostanciy.11.pdf (date of the application 18.10.2017). (rus)
  • Master Builders solutions. BASF The Chemical Company. 2015. С. 12. (rus)
  • Katalog obyektov: energeticheskaya promishlennost . MC-Bauchemie Russia. P. 39. (rus)
  • Tipovaya specifikaciya dlya remonta i zashity gradiren . Sika Services AG. 2012. P. 48. (rus)
  • Obiekti atomnoy energetiky, na kotorih primenialas produkciya OOO "BASF Stroitelnye Sistemy" . BASF The Chemical Company. 2016. P. 4. (rus)
  • Chmielewski T. On the restoration of natural draft cooling towers of Opole power station. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 337-341.
  • Doyle P.F., Hurst J., Maddison G.F. Ring strengthening of West Burton cooling Tower C1. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 327-337.
  • Ladnushkin A.A. Tehnologia beskranovogo montazha pri kapitelnom remonte i modernizacii bashennih gradiren TEC . Izvestiya KGASU. 2016. No. 4 (38). Pp. 433-438. (rus)
  • VGB-R 612 Ue. Protection Measures on Reinforced Concrete Cooling Towers and Chimneys against Operational and Environmental Impacts: second edition. 2005. P. 34
  • Zaicev G.E., Udalcov M.I., Demchenko A.I., Stepanova V.F., Vladimirsiy V.N., Ivanov E.S., Agapov O.A., Arshinov A.A. Novie antikorrozionnie sostavy dlya zashity metallov i betonnih konstrukciy . Equipment and technologies for oil and gas complex. 2008. No. 2. Pp. 50-54. (rus)
  • Kochan A. Novie maaterialy i principy dlya dlitelnoy zashity poverhnosti gradiren s yestestvennoy tiagoyi otnosiashihsa k nim sooruzheniy . System requirements: Adobe Acrobat Reader. URL: http://www.mc-bauchemie.ru/promo-materials/remont-i-zaschita-poverhnostey-osnovnih-inzhenernih-sooruzheniy-elektrostanciy.11.pdf (date of the application 18.10.2017). (rus)
  • Engelfried R. Permissible diffusion resistance of polymer coatings against water vapour and its diffusion effective film thickness. Natural Draught Cooling Towers. Istanbul. CRC Press, 2004. Pp. 347-355.
  • Test report No. LO 1096/08/1. Building Research Institute: a group of testing laboratories accredited by the Polish accreditation center. Warsaw. 2008. P. 2. (rus)
  • Test report No. LO 1096/08/1a. Building Research Institute: a group of testing laboratories accredited by the Polish accreditation center. Warsaw. 2008. P. 1. (rus)
  • Test report No. LO 1096/08/2. Building Research Institute: a group of testing laboratories accredited by the Polish accreditation center. Warsaw. 2008. P. 6. (rus)
  • NO-1/855/P/2008. Otchet po issledovaniyu i razrabotke tekhnicheskikh kharakteristik, svoystv i dolgovechnosti sistem pokrytiy: Icosit 2406 Primer/Icosit 2406 Deck i Sikagard-700 S/Sikagard-680 S, primenyayemykh na gradirnyakh Turovskoy elektrostantsii, Bogatynya, Pol'sha . INSTYTUT TECHNIKI BUDOWLANEJ. Warsaw. 2008. P. 9. (rus)
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