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IMPROVING THE EFFICIENCY OF THE COMBINED CYCLE PLANT WITH HEATRECOVERY BOILER DUE TO THE INCLUSION IN THE SCHEME OF ABSORPTION

https://doi.org/10.30724/1998-9903-2017-19-11-12-101-111

Abstract

In this article the question of increase of efficiency of the combined cycle plant with single-loop heat-recovery boiler due to the inclusion in the scheme of absorption bromide lithium converter of heat.

About the Authors

R. N. Valiev
Kazan State Power Engineering University, Kazan
Russian Federation
Cand. Sci. (Techn.), Assoc. Cand. Sci. of department “Industrial Heat Power Engineering and system of heating supply” (IHPE) 


S. G. Ziganshin
Kazan State Power Engineering University, Kazan
Russian Federation
Cand. Sci. (Techn.), Assoc. Cand. Sci. of department “Industrial Heat Power Engineering and system of heating supply” (IHPE) 


U. V. Vankov
Kazan State Power Engineering University, Kazan
Russian Federation
Dr. Sci. (Techn.), Prof. of department “Industrial Heat Power Engineering and system of heating supply” (IHPE) 


R. R. Garipov
Kazan State Power Engineering University, Kazan
Russian Federation
Mag. Sci. (Techn.) of department “Industrial Heat Power Engineering and system of heating supply” (IHPE) 


References

1. Parogazovye ustanovki elektrostantsiy: uchebnoe posobie dlya vuzov po napravleniyu podgotovki "Energeticheskoe mashinostroenie" i "Teploenergetika i teplotekhnika" / A. D. Trukhniy. Moskva: Izdatelskiy dom MEI, 2013, 646 p.

2. Kompleksnyy analiz parogazovykh TETs [Tekst] / P. A. Shchinnikov [i dr.] // Izvestiya vysshikh uchebnykh zavedeniy. 2010. № 3-4. P. 15-20.

3. Heejin Cho, Amanda D. Smith, Pedro Mago, Combined cooling, heating and power: A review of performance improvement and optimization, Applied Energy, Volume 136, 2014, p. 168-185.

4. Dvukhtrubnaya sistema teplosnabzheniya s absorbtsionnym bromisto-litievym teplovym nasosom / G. V. Nozdrenko [i dr.]. // Izvestiya vysshikh uchebnykh zavedeniy. Problemy energetiki. 2000. № 5-6. P. 25-28.

5. Absorbtsionnye preobrazovateli teploty / Baranenko A. V., Timofeevskiy L. S., Dolotov A. G., Popov A. V.: monogr. SPb.: SPbGUNiPT, 2006, 338 p.

6. Teplovye i konstruktivnye raschety kholodilnykh mashin, teplovykh nasosov i termotransformatorov. Ch.1. Raschet tsiklov, termodinamicheskikh i teplofizicheskikh svoystv rabochikh veshchestv / Timofeevskiy L. S., Pekarev V. I., Bukharin N. N. i dr. SPb.: SPbGUNiPT, 2006, 260 p.

7. Effektivnost energosberegayushchikh sistem na baze absorbtsionnykh termotransformatorov / Galimova L.V.: avtoref. dis. d-ra tekhn. nauk. Astrakhan: Astrakhan. GTU, 2004, 32 p.

8. Christian Keil, Stefan Plura, Michael Radspieler, Christian Schweigler, Application of customized absorption heat pumps for utilization of low-grade heat sources, Applied Thermal Engineering, Volume 28, Issue 16, 2008, p. 2070-2076.

9. Absorbtsionnye teplovye nasosy na TETs Belorusskoy OES na primere Mozyrskoy TETs / V.N. Romanyuk, A.A. Bobich // Energiya i Menedzhment. 2015. No. 1. P. 13–20.

10. Obosnovanie parametrov ABTN dlya utilizatsii VER na TETs s pomoshchyu passivnogo eksperimenta i opredelenie sootvetstvuyushchikh izmeneniy razlichnykh otsenok raboty energosistemy / V.N. Romanyuk, A.A. Bobich // Energiya i Menedzhment. 2016. No. 1. P. 14–23.

11. Chislennoe issledovanie teplovykh skhem TETs s pomoshchyu ikh topologicheskikh modeley / V. N. Romanyuk, A. A. Bobich // Energetika. Izv. vyssh. ucheb. zavedeniy i energ. obedineniy SNG. 2016. Vol. 59, No. 4. P. 376–390.


Review

For citations:


Valiev R.N., Ziganshin S.G., Vankov U.V., Garipov R.R. IMPROVING THE EFFICIENCY OF THE COMBINED CYCLE PLANT WITH HEATRECOVERY BOILER DUE TO THE INCLUSION IN THE SCHEME OF ABSORPTION. Power engineering: research, equipment, technology. 2017;19(11-12):101-111. (In Russ.) https://doi.org/10.30724/1998-9903-2017-19-11-12-101-111

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ISSN 1998-9903 (Print)
ISSN 2658-5456 (Online)