ИНТЕГРАЦИЯ ЭНЕРГОТЕХНОЛОГИЧЕСКИХ СИСТЕМ В СОСТАВЕ ГАЗОТУРБИННЫХ КОМПРЕССОРНЫХ АГРЕГАТОВ ГАЗОВОЙ И НЕФТЯНОЙ ПРОМЫШЛЕННОСТИ

Автор(и)

  • Andriy Smirnov Public Joint Stock Company “Sumy Machine-Building Science-and-Production Association”, Ukraine
  • Volodymyr Paparfiynyk Public Joint Stock Company “Sumy Machine-Building Science-and-Production Association”, Ukraine https://orcid.org/0000-0001-7061-6992
  • Oleg Mykolayovych Shcherbakov PJSC Sumy NPO, Ukraine https://orcid.org/0000-0002-8431-6314
  • Sergiy Epifanov Department of aircraft engines design, National Aerospace University “Kharkiv Aviation Institute”, Ukraine
  • Volodymyr Kostiuk Department of aircraft engines design, National Aerospace University “Kharkiv Aviation Institute”, Ukraine https://orcid.org/0000-0003-0142-8060
  • Volodymyr Chobenko GT RPC “Zorya”-“Mashproekt”, Ukraine
  • Volodymyr Shevchuk Zaporizhia Machine-Building Design Bureau "Progress" State Enterprise named after Academician O.H. Ivchenko, Ukraine

DOI:

https://doi.org/10.20998/2078-774X.2016.09.02

Анотація

В работе рассмотрены основные задачи, решаемые в процессе интеграции энерготехнологических систем в составе газотурбинных компрессорных агрегатов газовой и нефтяной промышленности, а также представлены результаты решения некоторых из них. Изложены результаты обобщенного анализа состояния развития конвертированных газотурбинных двигателей для привода турбокомпрессорных агрегатов и рассмотрены основные направления их дальнейшего совершенствования с учетом опыта создания промышленного газотурбинного привода.

Біографії авторів

Andriy Smirnov, Public Joint Stock Company “Sumy Machine-Building Science-and-Production Association”

Volodymyr Paparfiynyk, Public Joint Stock Company “Sumy Machine-Building Science-and-Production Association”

Oleg Mykolayovych Shcherbakov, PJSC Sumy NPO

Sergiy Epifanov, Department of aircraft engines design, National Aerospace University “Kharkiv Aviation Institute”

Volodymyr Kostiuk, Department of aircraft engines design, National Aerospace University “Kharkiv Aviation Institute”

Volodymyr Chobenko, GT RPC “Zorya”-“Mashproekt”

Volodymyr Shevchuk, Zaporizhia Machine-Building Design Bureau "Progress" State Enterprise named after Academician O.H. Ivchenko

Посилання

Tereshchenko, Yu. M., Kulik, M. S., Panin, V. V. et al. (2009), Іntegracіja avіacіjnih silovih ustanovok і lіtal'nih aparatіv[Integration of aircraft power plants and flight vehicles], Air University ²NAU² Press, Kiev, ISBN 978-966-598-525-9. Ukraine.

Anipko, O. B., Bashinskiy, V. G., Loginov, V. V. and Semenov, V. B. (2013), Integracija silovoj ustanovki iplaneratransportnogo samoleta [Integration of power plant and airframe of heavy aircraft], ²Motor Sich² Press,Zaporozhye,ISBN 978-966-2906-35-6. Ukraine.

Nurusbayev, A. A. (1976), Vvedenie v teoriju obosnovanija proektnyh reshenij [Introduction to theory of grounds fordesignsolutions], Shipbuilding, Leningrad, SSSR.

Matsevityi, Yu. M., Bratuta, E. G., Kharlampidi, D. Kh. and Tarasova, V. A. (2014), Sistemno-strukturnyjanalizparokompressornyh transformatorov [System structured analysis of steam and compressortransformers],InstituteforProblemsinMachine-Building Press of NAS of Ukraine, Kharkov, ISBN 978-966-02-7218-7.Ukraine.

Yepifanov, S. V., Zhemanyuk, P. D., Parafejnik,

V. P. and Petukhov, I. I. (2007), ²Razvitie principov konvertirovanija aviacionnyh GTD scel'jusozdanijanaihosnovepromyshlennogo gazoturbinnogo privoda [Development of principles for aircraft GTEconvertingtodesignindustrialGasTurbines]², Bulletin of Engine Building, vol. 3, pp. 70–76, ISSN 1727-0219.

Khristich, V. A. and Varlamov, G. B. (2006), Gazoturbinnye ustanovki: istorija i perspektivy [Gas turbine units: historyandpotentials], NTUU ²KPI², Kyiv, ISBN 978-966-622-237-7. Ukraine.

Giampaolo, T. (2002), The gas turbine handbook: principles and practices, The Fairmount Press, Inc., Lilburn, ISBN 0-88173-515-9.

Hunt, R. (2011), The History of the Industrial Gas Turbine (Part 1 The First Fifty Years 1940–1990), IDGTE, Bedford.

(2014), Katalog jenergeticheskogo oborudovanija [Catalog of power generating equipment], ²Gas turbinetechnologies²publishing house, Rybinsk.

Spitsyn, V. E., Botsula, A. L., Chobenko, V. N. and Solomonyuk, D. N. (2008), ²Vysokojeffektivnaja gazoturbinnajaustanovkadlja GPA [Highly efficient gas turbine for gas compressor package]², Bulletin of NTU "KhPI", vol. 35,pp.8–11,ISSN2076-004х.

Lyutikov, A. L., Parafejnik, V. P. and Chobenko, V. N. (2010), ²Analiz vozmozhnosti soglasovanija harakteristikprivodnogoGTD i CK [Analysis of possibility to match characteristics of gas turbine and centrifugalcompressor]²,AerospaceTechnicandTechnology,vol. 7(74), pp. 30–40, ISSN 1727-7337.

Parafejnik, V. P., Yevdokimov, V. E., Tertyshnyi, I. N. and Nefedov, A. N. (2012), ²K voprosu optimizacii geometriiprotochnojchasti centrobezhnyh kompressorov prirodnogo gaza [Revisiting the optimization ofnaturalgascentrifugalcompressorsrotorbundle]², Compressor equipment and pneumatics, vol. 2, pp. 10–17, ISSN 0865-5865.

Tertyshnyi, I. N., Parafejnik, V. P., Nefedov, A. N., Rogalskyi, S. A., Kotenko, N. A., Timoshadchenko, D. N., Mikhailenko,S.A. (2014), Termodinamicheskij analiz jeffektivnosti centrobezhnogo kompressorakakslozhnojjenergotehnologicheskojsistemyvsostave agregata tipa GPA-C-32P [Thermodynamic analysis oftheefficiency ofacentrifugal compressor as acomplexenergy system composed of units GPA-C-32P]², Proceedings ofXVIInternationalScienceand Technical ConferenceonCompressor Engineering, September 23–25, vol. 1, pp. 328–339, REP-HoldingPress, St. Petersburg. Russian.

Santon, R. C., Kidger, J. W. and Lea, C. J. (2002), ²Safety Developments in Gas Turbine Power Applications², ProceedingsofASME Turbo-Expo 2002, Amsterdam, The Netherlands, June 3–6, 2002, ASME Paper GT-2002-30469, pp. 959–966, ISBN 0-7918-3606-1, doi: 10.1115/GT2002-30469.

Ponnuraj, B., Sultanian, B., Novori, A. and Pecchi, P. (2003), ²3D CFD Analysis of an Industrial Gas TurbineCompartmentVentilation System², Proceedings of ASME International Mechanical Engineering Congress(IMECE’03),Washington,D.C.,USA,November 15–21, 2003, pp. 67–76, ISBN 0-7918-3718-1, doi: 10.1115/imece2003-41672.

Klochkov, A. V., Kornilova, E. S. and Snitko, A. A. (2005), ²Obespechenie vzryvozashhity gazoturbinnogo oborudovanija[Providing explosion protection of gas turbine equipment]², Gazotrubinnye tehnologii [Gas turbotechnologyMagazine],vol.8,pp.20–22, ISSN 2311-2646.

D’Ercole, M., Biffaroni, G., Grifoni, F., Zanobini, F. and Pecchi, P. (2005), ²Results and Experience from GE Energy’sMS5002EGas Turbine Testing and Evaluation², Proceedings of ASME TurboExpo 2005, Reno, Nevada, USA. June 6-9,2005, pp. 275–283,ISBN 0-7918-4727-6, doi: 10.1115/GT2005-68053.

Graf, E., Luce, T. and Willet, F. ²Design Improvements Suggested by Computational Flow and Thermal Analyses fortheCooling of Marine Gas Turbine Enclosures², Proceedings of ASME TurboExpo 2005. Reno, Nevada, USA. June 6–9,2005,pp.587–593,ISBN 0-7918-4728-4, doi: 10.1115/GT2005-68574.

Vahidi, D., Bagheri, H. and Glezer, B. (2006), ²Numerical and Experimental Study of Ventilation for TurbinePackageEnclosure², Proceedings of ASME TurboExpo 2006. Barcelona, Spain. May 8–11, 2006, pp. 607–616, ISBN: 0-7918-4240-1,doi:10.1115/GT2006-90960.

Mesropyan, A. V. and Mukhamedzyanova I. I. (2010) ²Chislennoe modelirovanie gazodinamiki i teplomassoperenosa vsistemeohlazhdenija boksa GTD [Numerical simulation of gas dynamics and heat and mass transferingasturbineenclosurecoolingsystem]², Vestnik UGATU, vol. 14, no. 1, pp. 25–31, ISSN 2225-2789.

Trusov, P. V. and Charntsev, D. A. (2010), ²Chislennoe modelirovanie teplovogo sostojanija shumoteplozashhitnogokozhuhagazoturbinnoj ustanovki [Numerical simulation of thermal condition of gas turbine acousticandthermalenclosure]²,VestnikofSamara State University. Natural Science Series, no. 4(78), pp. 117–126, ISSN 2411-6025.

Charntsev, D. A. (2012), Matematicheskoe modelirovanie teplovogo sostojanija shumoteplozashhitnyhkozhuhovgazoturbinnyh ustanovo [Mathematic simulation of thermal condition of gas turbineacousticandthermalproofenclosures]:synopsis for PhD thesis in Engineering Science : 05.13.18, Perm StateUniversity,Perm.

Kostyuk, V. E., Kirilash, E. I. and Kravchuk, A. L. (2013), ²Obobshhjonnaja matematicheskaja model' teplovogosostojanijaukrytij gazoturbinnyh ustanovok [Generalized mathematical model of thermal conditionofgasturbineenclosures]².Integrirovannyetehnologii i jenergosberezhenie [Technologies and Energy Conservation],no.1, pp. 22–26,ISSN 2078-5364.

Smirnov, A. V., Kostyuk, V. E., Tkachenko, D. A., Kirilash, E. I. and Slabko, Yu. N. (2013), ²Obespechenie teplovogorezhimasilovogo bloka gazoperekachivajushhego agregata organizovannojpodachejvozduhapodshumoteploizolirujushhijkozhuhgazoturbinnogo dvigatelja [Providing thermal conditionofturbo-compressorpackagepower unitbyair ventilation of acoustic and thermal enclosure]², Vestnik dvigatelestroenija[Bulletin ofengine-building], no. 2, pp. 99–107, ISSN 1727-0219.

Shcherbakov, O. M., Tkachenko, D. O., Parafeynik, V. P., Gurinenko, V. M., Kostyuk, V. E., Skripka, O. I. and Kirilash, O. I.(2015), ²Eksperimental'ne doslіdzhennja teplovogo stanu kozhuha dlja shumoteploіzoljacіїgazoturbіnnogodvigunaDG90L2uskladіturbobloka agregatu tipu GPA-C-16S [Experimental research onthethermal state of a shell for noiseandheat insulationofthe gte90l2 gas turbine engine used for the mechanical drive ofthegcu-c-16s turbo-compressorpackage]². Eastern-European Journal of Enterprise Technologies, no. 6/7(78), pp. 35–42,ISSN1729-3774,doi:10.15587/1729-4061.2015.56244.

Smirnov, A. V., Shchedrenkov, A. N., Shcherbakov, O. N., Karutskiy, A. Yu. and Parafejnik, V. P. (2015),²Chislennoeissledovanie techenija gaza v vyhlopnyh traktah gazoperekachivajushhih agregatov sgazoturbinnymprivodomnabazedvigateljaDU80L1 [Numerical investigation of gas flow in exhaust ducts of turbo-compressorpackages withgasturbineenginebased on engine DU80L1]². Vestnik dvigatelestroenija [Bulletin of engine-building],no.2, pp. 199–206,ISSN1727-0219.

##submission.downloads##

Опубліковано

2016-06-29

Як цитувати

Smirnov, A., Paparfiynyk, V., Shcherbakov, O. M., Epifanov, S., Kostiuk, V., Chobenko, V., & Shevchuk, V. (2016). ИНТЕГРАЦИЯ ЭНЕРГОТЕХНОЛОГИЧЕСКИХ СИСТЕМ В СОСТАВЕ ГАЗОТУРБИННЫХ КОМПРЕССОРНЫХ АГРЕГАТОВ ГАЗОВОЙ И НЕФТЯНОЙ ПРОМЫШЛЕННОСТИ. Вісник Національного технічного університету «ХПІ». Серія: Енергетичнi та теплотехнiчнi процеси й устаткування, (9), 13–25. https://doi.org/10.20998/2078-774X.2016.09.02

Номер

Розділ

Енергетичні та теплотехнічні процеси й устаткування