USE OF GAS TURBINES FOR COMBINED ENERGY PRODUCTION
https://doi.org/10.21822/2073-6185-2020-47-1-8-18
Abstract
Abstract. Aim. Despite the obvious expediency of their widespread implementation, gas turbine (GT) and combined cycle gas turbine (CCGT) plants were only used in limited quantities in the former USSR and CIS countries. Due to the exhaustion of possibilities to increase the fuel use efficiency and return on investment (ROI) in steam-turbine combined heat and power (CHP) plants, the development of GT and CCGT plants becomes an urgent problem. In current global practice, the primary fuel for gas turbines and combined cycle gas turbines is natural gas. However, until recently, there has been a lack of experience in the design, construction and operation of GT and CCGT plants in the CIS countries.
Method. Due to the ad hoc nature of research in this area, it was necessary to systematise the results of existing studies and assess the state of research at the world level taking regional characteristics into account.
Results. The article presents the main considerations and potential effectiveness of the use of gas turbines. Basic gas turbine construction schemes are investigated along with their techno-economic characteristics and an assessment of their comparative utility.
Conclusion. Considering the widespread availability of natural gas, it is recommended that gas turbine and combined-cycle plants be installed as part of the process of technical re-equipment in the fuel and energy complex, industry, agriculture and municipal energy sectors as part of the design and construction of new energy sources in the light of positive world experience and the current level of development of gas turbine technologies. Ubiquitous implementation of gas turbine units in the centres supplying heat and electric loads will reduce the regional economy’s need for energy fuel and ensure an increase in energy capacity without the need to construct new complex and uneconomic steam turbine power plants.
About the Author
V. A. BulaninRussian Federation
Cand. Sci. (Technical), General Director
56 Michurina St., Belgorod 308007
References
1. Order of the Ministry of Energy of Russia dated 13.08.2012 No. 387. URL: http://lawru.info/dok/2012/08/13/n20065.htm.(In Russ.)]
2. Kozhukhovskiy I.S. Perspektivy razvitiya teplovoy energetiki Rossii / AGBE. VII yezhegodnaya konfe-rentsiya gazety VEDOMOSTI. ROSSIYSKAYA ENERGETIKA. Moskva, 2013. [Kozhukhovsky I.S. Prospects for the development of thermal energy in Russia / AGBE. VII annual conference of the newspaper Vedomosti. RUSSIAN ENERGY. Moscow 2013. (In Russ.)]
3. Skiba M.V. Tendentsii razvitiya rynka gazoturbinnykh ustanovok // Vestnik Samarskogo gosudar-stvennogo universiteta. Seriya «Ekonomika i upravleniye». 2015. № 9/2 (131). s. 156–164. [Skiba M.V. Gas Turbine Plant Market Development Trends // Bulletin of Samara State University. Series "Economics and Management". 2015. No. 9/2 (131). рр. 156–164 (In Russ.)]
4. Bulanin V.A., Zakhidov R.A. Puti sovershenstvovaniya teploenergetiki Uzbekistana// Uzbekskiy zhur-nal "Problemy informatiki i energetiki", № 2, 1992. s. 23-28. [Bulanin V.A., Zakhidov R.A. Ways to improve the heat power industry of Uzbekistan // Uzbek Journal "Problems of Informatics and Energy", No. 2, 1992. pр. 23-28. (In Russ.)]
5. Barinberg G.D., Benenson Ye.I. Vliyaniye parametrov svezhego para, promezhutochnogo peregreva i yedinichnoy moshchnosti na ekonomichnost' teplofikatsionnykh turbin. - V sb.: Opyt sozdaniya turbin i dizeley. Sverdlovsk, Sr.-Ural'sk. kn. izd-vo, 1969. s. 97-102. [Barinberg G. D., Benenson E. I. Influence of parameters of fresh steam, intermediate overheating and unit power on the efficiency of cogeneration turbines. - In: The experience of creating turbines and diesel engines. Sverdlovsk, Sr.-Uralsk. Prince Publishing House, 1969. pр. 97-102. (In Russ.)]
6. Pravila predostavleniya iz federal'nogo byudzheta subsidiy rossiyskim organizatsiyam na finanso-voye obespecheniye chasti zatrat na provedeniye nauchno-issledovatel'skikh, opytno-konstruktorskikh i tekhnologicheskikh rabot v ramkakh sozdaniya proizvodstva gazovykh turbin bol'shoy moshchnosti. [Postanovleniye Pravitel'stva Rossii ot 21.03.2019 № 301]. URL: http://government.ru/news/36182. [Rules for the provision of subsidies from the federal budget to Russian organizations for the financial provision of a part of the costs of research, development and technological work as part of the creation of the production of high-power gas turbines. [Decree of the Government of Russia dated March 21, 2019 No. 301]. URL: http://government.ru/news/36182. (In Russ.)]
7. Vol'fberg D.B. KHIV kongress mirovoy energeticheskoy konferentsii. - Energokhozyaystvo za rubezhom, 1990, № 1. s. 1-5. [Wolfberg D.B/ XIV Congress of the World Energy Conference. - Energy Economy Abroad, 1990, No. 1. pp. 1-5. (In Russ.)]
8. Bulanin V.A., Bulanin A.V., Lapin Ye.A. Gazoturbinnyye tekhnologii – v energetiku Belgorodskoy ob-lasti // Zhurnal "Gazoturbinnyye tekhnologii", 2001, № 1 (10), str. 14-16. [Bulanin V.A., Bulanin A.V., Lapin E.A. Gas-turbine technologies - into the energy sector of the Belgorod region // Journal "Gas-turbine technologies", 2001, No. 1 (10), pp. 1416. (In Russ.)]
9. Maslennikov V.M., Vyskubenko YU.A., Shterenberg V.YA. (SSSR), Smitson G.R., Robson F.L., Lemon A.V., Lokhon V.T. (SSHA). Parogazovyye ustanovki s vnutritsiklovoy gazifikatsiyey topliva i ekologicheskiye problemy energetiki. M.: Nauka, 1983. 264 s. Maslennikov V.M., Vyskubenko Yu.A., Shterenberg V.Ya. (USSR), Smithson G.R., Robson F.L., Lemon A.V., Lohon V.T. (USA). Combined cycle gas turbine gasification plants and environmental problems of energy. M .: Nauka, 1983. 264 p.
10. R. Kadi, A. Bouam, S. Aissani. Analyze of gas turbine performances with the presence of the steam water in the combustion chamber, Revue des Energies Renouvelables ICRESD-07 Tlemcen (2007), pр. 327 – 335. (In Russ.)]
11. H. Haselbacher, "Performance of Water/Steam Injected Gas Turbine Power Plants Consisting of Standard Gas Turbines and Turbo Expanders", Int. J. Energy Technology and Policy, Vol. 3, No1/2, 2005.
12. K. Mathioudakis, "Evaluation of Steam and Water Injection Effects on Gas Turbine Operation using Explicit Analytical Relations", Instn. Mech. Engrs., Vol. 216, Part A: J Power and Energy 2002.
13. D.Y. Cheng & A.L.C. Nelson, "The Chronological Development of the Change Cycle Steam Injected Gas Turbine During the Past 25 Years", Proceedings of ASME Turbo Expo 2002, Amsterdam, the Netherlands, June 3-6, 2002.
14. D. Zhao, Y. Ohno, T.Furuhata, H. Yamashita, N. Arai and Y. Hisazumi, "Combustion Technology in a Novel Gas Turbine System with Steam Injection and Two-Stage Combustion", Journal of Chemical Engineering of Japan, Vol. 34, No9, pp. 1159 - 1164, 2001.
15. Y. Ohno, D. Zhao, T. Furuhata, H. Yamashita, N. Arai and Y. Hisazumi, "Combustion Characteristics and NOx Formation of a Gas Turbine System with Steam Injection and Two-Stage Combustion", Journal of Chemical Engineering of Japan, 2001.
16. Ol'khovskiy G.G., Goncharov V.V. Konstruktsii nekotorykh sovremennykh GTU i PGU i prognoz mirovogo vypuska gazoturbinnogo oborudovaniya v 2012–2021 gg. (obzor). Moskva, 2014 / Assotsiatsiya gazoturbinnykh tekhnologiy dlya energetiki i promyshlennosti. Moskva, 2014. [Olkhovsky G.G., Goncharov V.V. The design of some modern gas turbines and gas turbines and the forecast for the global production of gas turbine equipment in 2012–2021. (overview). Moscow, 2014 / Association of gas turbine technologies for energy and industry. Moscow, 2014. (In Russ.)]
Review
For citations:
Bulanin V.A. USE OF GAS TURBINES FOR COMBINED ENERGY PRODUCTION. Herald of Dagestan State Technical University. Technical Sciences. 2020;47(1):8-18. (In Russ.) https://doi.org/10.21822/2073-6185-2020-47-1-8-18