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Improvement of the Operating Processes in Boiler Furnaces of TÉTs-21 with the Help of Numerical Simulation of Thermal Gas Dynamic Processes

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Abstract

The use of numerical simulation and advanced means of computational hydrodynamics (domestic FlowVision software) for simulating the processes of flow and combustion in the systems for air and gas feeding, mixers, burners, and boiler furnaces has made it possible to advance the recirculation system and burners of the TÉTs-21 cogeneration plant and considerably reduce the NOx emissions.

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REFERENCES

  1. V. E. Alemasov, A. F. Dregalin, A. P. Tishin, and V. A. Khudyakov, Thermodynamic and Thermophysical Properties of Combustion Products. A Handbook [in Russian], Izd. AN SSSR, Moscow (1971).

    Google Scholar 

  2. A. P. Tishin, V. A. Khudyakov, and A. K. Artamonov, A Study of the Possibilities of Decreasing the Concentration of Nitrogen Oxides in Fuel Firing at Power Units [in Russian], Izd. TsNIIMASh, Korolev, Moscow Region (1994).

    Google Scholar 

  3. A. P. Tishin, V. A. Khudyakov, and A. K. Artamonov, Dependence of the Emission of Nitrogen Oxides from Power Units on the Degree of Recirculation of Flue Gases, the Temperature and Moisture Content in the Draft Air [in Russian], Izd. TsNIIMASh, Korolev, Moscow Region (1996).

    Google Scholar 

  4. A. A. Aksenov and V. N. Kon'shin, “FlowVision: a new generation of CAE, ” SAPR Grafika, No. 11 (2002).

  5. I. E. Idelchik, A Handbook on Hydraulic Resistances [in Russian], Gosénegroizdat, Moscow (1960).

    Google Scholar 

  6. R. Stephan, Turns. An Introduction to Combustion, McGraw-ill International Editions (2000).

  7. RD 34.02.304–95. Methodological Instructions to Computing Emissions of Nitrogen Oxides with Flue Gases of Thermal Power Plant Boilers [in Russian], Izd. VTI-TsKTI, Moscow (1996).

  8. V. R. Kotler and Yu. P. Enyakin, “Realization and efficiency of process methods for suppressing nitrogen oxides at TPP, ” Teploénergetika, No. 6 (1994).

  9. Yu. P. Enyakin and A. M. Bykov, “Wide commissioning of process methods for suppressing nitrogen oxides on gas-and-oil boilers, ” in: Nature-Protective TPP Processes [in Russian], Izd. VTI, Moscow (1996).

    Google Scholar 

  10. D. V. Volkov, S. A. Zaitsev, A. P. Tishin, and V. A. Khudyakov, Dependence of the Concentration of Nitrogen Oxides Formed Near the Flame Front (“Fast”) during Methane Combustion on the Excess Air Factor, the Air Temperature, and the Degree of Recirculation of Flue Gases [in Russian], Izd. TsNIIMASh, Korolev, Moscow Region (1999).

    Google Scholar 

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Tishin, A.P., Goryunov, I.T., Gus'kov, Y.L. et al. Improvement of the Operating Processes in Boiler Furnaces of TÉTs-21 with the Help of Numerical Simulation of Thermal Gas Dynamic Processes. Power Technology and Engineering 37, 297–301 (2003). https://doi.org/10.1023/B:HYCO.0000009796.88481.69

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  • DOI: https://doi.org/10.1023/B:HYCO.0000009796.88481.69

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