THE ANALYSIS OF PROTECTION SYSTEMS EFFICIENCY OF GAS-EXHAUST DUCTS IN BOILER INSTALLATIONS BY USING HEAT RECOVERY TECHNOLOGIES
Keywords:
gas-consuming boiler installations, heat recovery technologies, prevention of condensation, thermal methods to protect tracts
Abstract
The analysis of the effectiveness of application of thermal methods for prevention of condensate formation in boiler exhaust gases ducts with different chimney types by using of a deepcooled of exhaust gases technology is performed.
References
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2. Fialko N.M., Navrodskaya R.A., Shevchuk S.I., Presich G.A., Gnedash G.А., Glushak O.U. Thermal methods of exhaust gas ducts protection of boiler plants with deep-cooled flue gases // Modern science: investigations, ideas, results, technologies; series "Engineering and natural science". – 2014. – № 2 (15). – С. 13–17. (Rus.)
3. Fialko N.M., Navrodska R.O., Presich G.O., Shevchuk S.I., Glushak O.U., Tsybulska O.V. An increase of operation resource of boilers gas-escape ducts by using modern deep recovery technologies of exhaust gases heat // Zbirnyk prats za programou "Problemy resursu i bezpeky ekspluatatsii konstruktsii, sporud ta mashin". – К.: 2006. – P. 261– 264. (Ukr.)
4. Putrik S.B., Baskakov А.P. The calculation of the temperature-humidity mode of gas-escape ducts including dust loss from heat recovery unit // Promyshlennaya energetika. – 2006. – № 9. – P. 36– 39. (Rus.)
5. Elshin А.М., Izhorin М.К., Zholudov V.S., Ovcharenko Е.G. The chimneys. М.: Stroyizdat, 2001. (Rus.)
6. Strikha I.I. The reliability of the chimneys. // Novosti teplosnabzheniya. – 2009. – №3 (103). (Rus.)
7. Recommendations for the use of materials of Emako series for repairing and reconstruction of exhaust and ventilation chimneys [Electronic resource] / germostroy@mail.ru.
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Published
2016-02-20
How to Cite
Fialko, N., Navrodska, R., Shevchuk, S., & Presich, G. (2016). THE ANALYSIS OF PROTECTION SYSTEMS EFFICIENCY OF GAS-EXHAUST DUCTS IN BOILER INSTALLATIONS BY USING HEAT RECOVERY TECHNOLOGIES. Thermophysics and Thermal Power Engineering, 38(1), 47-53. https://doi.org/https://doi.org/10.31472/ihe.1.2016.06
Section
District and Industrial Heat Power

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