Preview

Power engineering: research, equipment, technology

Advanced search

USE OF THE ABSORPTION LITHIUM BROMIDE REFRIGERATING MACHINE FOR INCREASE IN OVERALL PERFORMANCE OF COMPRESSED-AIR POWER STATION

https://doi.org/10.30724/1998-9903-2017-19-11-12-62-72

Abstract

The scheme of compressed-air power plant with use, during recession of electric loading, the absorption lithium bromide refrigerating machinefor additional cooling of compressed air in an aftercooler in front of the air accumulator is offered. The technical and economic analysis of possible variants of change in structure and duration of operation of the compressor and turbine equipment of compressed-air power plant in connection with additional decrease in temperature of compressed air when using absorption lithium bromide refrigerating machineby 10 – 20 ºС is carried out. The variant of introduction of absorption lithium bromide refrigerating machine in the scheme of compressed-air power plant at which profiles of the compressor and gas turbine don't change and changes the duration of their work, it appears more effective. 

 

About the Authors

R. Z. Aminov
Saratov Scientific Center of the Russian Academy of Sciences; Yuri Gagarin State Technical University of Saratov
Russian Federation
Prof. head of Department of power problems of the Saratov Scientific center of the Russian Academy of Sciences


S. V. Novichkov
Yuri Gagarin State Technical University of Saratov
Russian Federation
Cand. Sci. (Tech.), senior lecturer. A.I. Andryushchenko Chair «Thermal and Nuclear Power Plant» 


References

1. Ol'khovskii G.G. Vozdushno-akkumuliruyushchie gazoturbinnye elektrostantsii (VAGTE) / G.G. Ol'khovskii, V.A. Kazaryan, A.Ya. Stolyarevskii M.: RGU nefti i gaza imeni I.M. Gubkina, 2011. 358 p.

2. Absorbtsionnye preobrazovateli teploty: monografiya / A.V. Baranenko, L.S. Timofeevskii, A.G. Dolotov, A.V. Popov. Spb.: SPbGUNiPT, 2005. 338 p.

3. Patent № 2529615 RF MPK F 01K 25/06. Sposob akkumulirovaniya energii / A.Ya. Stolyarevskii – № 2013128027/06; zayavl. 20.06.2013; opubl. 27.09.2014 Byul. No. 27.

4. Patent № 2574105 RF MPK F01K 3/00. Sposob i sistema dlya ulavlivaniya teplovoi energii v sisteme proizvodstva elektroenergii (varianty) / Anikhindi Sandzhai, Kosamana Bkhaskara. № 2011143463/06; zayavl. 28.10.2011; opubl. 10.09.2016 Byul. No. 25.

5. Absorbtsionnye teplovye nasosy v teplovoi skheme TETs dlya povysheniya ee energeticheskoi effektivnosti / Romanyuk V.N. [i dr.] // Energiya i menedzhment. 2013. No. 1. P. 15-20.

6. Analiz COP termodinamicheskogo tsikla ABKhM s dvukhstupenchatoi absorbtsiei pri poluchenii otritsatel'nykh temperatur okhlazhdeniya / Stepanov K.I. [i dr.] // Vestnik MAKh. 2016. No. 1. P. 86-92.

7. Comparison of compressed air energy storage process in aquifers and caverns based on the Huntorf CAES plant / Ch. Guo, L. Pan, K. Zhang, C.M. Oldenburg, C. Li, Y. Li // Applied Energy. 2016. 181(1). P. 342–356; doi.org /10.1016/ j.apenergy. 2016.08.105

8. Exergy and Exergoeconomic Model of a Ground-Based CAES Plant for Peak-Load Energy Production / F. Buffa, S. Kemble, G. Manfrida, A. Milazzo // Energies. 2013. No. 6 (2). P. 1050-1067; doi: 10.3390/en6021050.

9. Modelling and analysis of a novel compressed air energy storage system for trigeneration based on electrical energy peak load shifting / S. Lv, W. He, A. Zhang, G. Li, B. Luo, X. Liu // Energy Conversion and Management. 2017. 135 (1). P. 394-401; doi.org/10.1016/j.enconman. 2016.12.089.

10. Y. Mazloum. Dynamic modeling and simulation of an Isobaric Adiabatic Compressed Air Energy Storage (IA-CAES) system / Y. Mazloum, H. Sayah, M. Nemer // Journal of Energy Storage. 2017. 11. P. 178-190; doi.org / 10.1016 / j.est.2017.03.006.

11. Analysis and optimization of a compressed air energy storage – combined cycle system / W. Liu, L. Liu, L. Zhou, J. Huang, Y. Zhang, G. Xu, Y. Yang // Entropy. 2014. 16 (6). P. 3103-3120; doi: 10.3390/e16063103.

12. Energetic and Exergetic Analysis of some Models of Vapor Absorption Chillers Using Lithium Bromide and Water / Mohd Mairaj, Suhail. A. Siddiqui, Adnan Hafiz // Journal of Basic and Applied Engineering Research. 2015. 2 (4). P. 326-329.

13. Energetic analysis of single stage lithium bromide water absorption refrigeration system / Haresh A.Patel, L.N.Patel, Darshan Jani, Amit Christian // Procedia Technology. 2016. 23. P. 488–495; doi.org /10.1016/ j.protcy.2016.03.054. Authors of the publication


Review

For citations:


Aminov R.Z., Novichkov S.V. USE OF THE ABSORPTION LITHIUM BROMIDE REFRIGERATING MACHINE FOR INCREASE IN OVERALL PERFORMANCE OF COMPRESSED-AIR POWER STATION. Power engineering: research, equipment, technology. 2017;19(11-12):62-72. (In Russ.) https://doi.org/10.30724/1998-9903-2017-19-11-12-62-72

Views: 441


Creative Commons License
This work is licensed under a Creative Commons Attribution 4.0 License.


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