POWER EFFICIENCY OF THE “WET” COMBUSTION AND POLLUTANTS FORMATION REDUCTION
Keywords:
air pollutions, combustion kinetic mechanism, efficiency of fuel use, heat recovery, nitrogen oxides, thermodynamic analysis, wet combustion
Abstract
Grounded upon CFD-modeling and the thermodynamic analysis, the ways of enhancement the efficiency of using the natural gas and of nitrogen oxides effluents reduction are considered for the conditions of humidified combustion air.
References
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6. Soroka B.S., Korniyenko A.V., Kudryavtsev V.S., Karabchiyevskaya R.S. [Reduction of Nitrogen Oxides Effluents within an Open Flame by Input the Water Vapour into Combustion Air Flow], Enerhotekhnolohii ta enerhozberezhennia [Energy technologies and resource saving]. 2018, №2. P. 57–70 (in Rus.)
2. Soroka B.S. [Wet burning – the modern trend in environmental benign fuel combustion and in solution to the problem of sustainable development of the power generation] // Mezhdunarodnyiy nauchnyiy zhurnal “Alternativnaya energetika i ekologiya” [International Scientific Journal for “Alternative Energy and Ecology”]. 2018 – № 25 – 30 (273 – 278) С.96–117. (in Rus.)
3. Guillet, R. The Humid Combustion to Protect Environment and to Save the Fuel: the Water Vapor Pump and Maisotsenko Cycles Examples/ R. Guillet // International Journal of Energy for a Clean Environment. – 2011. – Vol. 12, #(2 – 4). – P. 259–271.
4. Wet Combustion – GREENEST. New Technique of Combustion of Cases.[Электронный ресурс]. http://fd.tu-berlin.de/en/research/projects/accomplished-dormant/greenest-wet-combustion.
5. Gillann L., Maisotsenko cycle for cooling processes // Intern. Journal of Energy for a Clean Environment. Vol. 9, Nu.1–3, pp 47–64, 2008. Printed August 5, 2010. Copyright 2010.
6. Soroka B.S., Korniyenko A.V., Kudryavtsev V.S., Karabchiyevskaya R.S. [Reduction of Nitrogen Oxides Effluents within an Open Flame by Input the Water Vapour into Combustion Air Flow], Enerhotekhnolohii ta enerhozberezhennia [Energy technologies and resource saving]. 2018, №2. P. 57–70 (in Rus.)
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Published
2019-04-10
How to Cite
Soroka, B., & Zgurskyi, V. (2019). POWER EFFICIENCY OF THE “WET” COMBUSTION AND POLLUTANTS FORMATION REDUCTION. Thermophysics and Thermal Power Engineering, 41(3), 55-62. https://doi.org/https://doi.org/10.31472/ttpe.3.2019.8
Section
Fuel Utilization and Burning, Heat Power Units, Ecology
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