PROSPECTS OF REDUCING EMISSIONS OF HEAT BEHIND GAS TURBINE DRIVES OF UKRAINIAN GAS TRANSPORTATION SYSTEM
Keywords:
gas turbine drive, exhaust gases, heat recovery, waste heat recovery, heat-transfer agent
Abstract
The results are given analyzing possibilities of waste gas heat utilization after gas turbines of the Ukrainian gas pipeline network.
References
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Kuznitsova S.A., Izbash V.I., Kucherenko O.S. Turbo technology for energy saving at gas compressor stations of gas turbine stations of Ukraine // Vostochno-evropeisky zhurnal peredovyh tehnology. - 2010. №3/3(45). P 37 40.
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Power engineering: history, present and future. V. 3. Development of thermal and nuclear powet. Edited by Plachkov I.V. K.:2008. 528 p.
Procedure of determining production and technological costs of natural gas for its production transportation and operation of underground storage. - К.: 2008. mpe.kmu.goy.ua/fuel/doccatalog/docu ment?id=134907s.
Cogeneration gas-stream-turbine plant “Vodolei -16”. Ukrainemade.com/ru/tehnologies/261.
Netschaev Ju.N., Fedorov R.M. Theory of aviation engines. P.2. M.:”Mashinostroenie”, 1978. 513 p.
Kurzon A.G., Maslov L.A. Power turbine installations. L.: “Sudostroenie”, 1991. 152 p.
Kostiuk A.G., Sherstiuk A.M. Gas turbine installations: Study guide for institutions of higher leatning. M.:”Vysshaja shkola:, 1979, 254 p.
Low Cost “Air Bottoming Cycle ” for Gas Turbines. Gas Turbine World, V,21, № 3, 1991. 61 p.
Piatnichko V.A., Krushnevich T.K., Piatnichko A.I. Utilization of low-grade heat to produce electric power using pentane as working body //Ekologija I resursosbtrtzhenie. 2003. №4. P. 3 6.
Diky N.A., Piatnichko A.I., Karp I.N. Electric power production at gas-steam cycle on combined coal and gas fuel // Ekologija i resursozhberizhenie. - 2006. №2. P. 3 -7.
Bileka B.D. Combined power cooling plants for increasing to efficiency of operation of gas transport systems // Promyshlennaja teplotehnika. 2006.V.28, №2. P. 132 138.
Liubchik G.M., Regragi a., Litvinova Ju. R., Rep’jah Ju. R. Prospects of production of electric and thermal energy production on base of gas turbine and combined plants // Energetica: economika, tehnologii, ekologija. 2008. №8. P. 44 48.
Movchan S.N., Bochkarev Ju.V., Solomoniuk D. N. Stages of development of stationary and ship plants with waste heat recovery // Gasoturbinnyie tehnologii. 2008. №8. P. 8 10.
Kuznitsova S.A., Izbash V.I., Kucherenko O.S. Turbo technology for energy saving at gas compressor stations of gas turbine stations of Ukraine // Vostochno-evropeisky zhurnal peredovyh tehnology. - 2010. №3/3(45). P 37 40.
V.V. Romanov., V.N. Chobenko, V.V. Kuznetsov, S.N.Movchan, O.S. Kucherenko, A.P Shevtsov. Performances and Application Perspectives of Air heat Recovery Turbine Units // Proceedings of ASME Turbo Expo 2010: Power for Land, Sea and Air, GT 2010, June 14 18, 2010, Glasgow,UK.
Power engineering: history, present and future. V. 3. Development of thermal and nuclear powet. Edited by Plachkov I.V. K.:2008. 528 p.
Procedure of determining production and technological costs of natural gas for its production transportation and operation of underground storage. - К.: 2008. mpe.kmu.goy.ua/fuel/doccatalog/docu ment?id=134907s.
Cogeneration gas-stream-turbine plant “Vodolei -16”. Ukrainemade.com/ru/tehnologies/261.
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Published
2014-12-30
How to Cite
Khalatov, A., & Kovalenko, A. (2014). PROSPECTS OF REDUCING EMISSIONS OF HEAT BEHIND GAS TURBINE DRIVES OF UKRAINIAN GAS TRANSPORTATION SYSTEM. Thermophysics and Thermal Power Engineering, 37(2), 48-58. https://doi.org/https://doi.org/10.31472/ihe.2.2015.06
Section
Heat Power Units
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