Study of Heat Recovery Systems for Heating and Moisturing Combustion Air of Boiler Units

Author:

Fialko N.M.ORCID, ,Navrodska R.O.ORCID,Gnedash G.O.ORCID,Presich G.O.ORCID,Shevchuk S.I.ORCID, , , ,

Publisher

National Academy of Sciences of Ukraine (Co. LTD Ukrinformnauka)

Subject

Industrial and Manufacturing Engineering,Materials Science (miscellaneous),Business and International Management

Reference16 articles.

1. 1. Jaber, H., Khaled, M., Lemenand, T., & Ramadan, M. (2016, July). Short review on heat recovery from exhaust gas. In AIP Conference Proceedings (Vol. 1758, No. 1, p. 030045). Beirut, Lebanon, AIP Publishing. URL: https://doi.org/10.1063/1.4959441 (Last accessed: 24.07.2019).

2. 2. Efimov, A. V., Goncharenko, A. L., Goncharenko, L. V., & Esipenko, T. A. (2017). Modern technologies of deep cooling of fuel combustion products in boiler plants, their problems and solutions. Kharkov: NTU «KhPI». [in Russian]. URL: http://repository.kpi.kharkov.ua/handle/KhPI-Press/32826 (Last accessed: 24.07.2019).

3. 3. Dolinskiy, A. A., Fialko, N. M., Navrodskaya, R. A., & Gnedash, G. A. (2014). Basic principles of heat recovery technologies for boilers of the low thermal power. Industrial Heat Engineering, 36(4), 27-35 [in Russian].

4. 4. Edward Levy, Harun Bilirgen, Kwangkook Jeong, Michael Kessen, Christopher Samuelson, & Christopher Whitcombe. Recovery of Water from Boiler Flue Gas. URL: https://doi:10.2172/952467 (Last accessed: 24.07.2019)

5. 5. Fialko, N. M., Navrodskaya, R. A., Gnedash, G. A., Presich, G. A., & Stepanova, A. I. (2014). Increasing the efficiency of boiler plants of communal heat energy by combining the heat of the exhaust-gases. International Scientific Journal «Alternative Energy and Ecology», 15, 126-129 [in Russian].

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