The Cogeneration Turbine Т-295/335-23,5 Designed for the Reconstruction of Power-Generating Units Equipped with T-250/300-240 Turbines

Автор(и)

  • Alexandr Valamin CJSC “The Ural Turbine Works”, Russian Federation
  • Aleksey Kultyshev CJSC “The Ural Turbine Works”, Russian Federation
  • Taras Shibaev CJSC “The Ural Turbine Works”, Russian Federation
  • Alexandr Goldberg CJSC “The Ural Turbine Works”, Russian Federation
  • Yurii Sakhnin CJSC “The Ural Turbine Works”, Russian Federation
  • Mikhail Stepanov CJSC “The Ural Turbine Works”, Russian Federation
  • Mikhail Shekhter CJSC “The Ural Turbine Works”, Russian Federation
  • Vitaly Bilan CJSC “The Ural Turbine Works”, Russian Federation

DOI:

https://doi.org/10.20998/2078-774X.2016.08.05

Анотація

A description of the cogeneration turbine Т-295/335-23,5 developed to replace Т-250/300-240 turbines with exhausted stock life has been given. The turbines Т-250 are installed in such big cities as Moscow, St. Petersburg, Kiev, Kharkov, and Minsk to meet the needs for centralized heat and electric power production. The prerequisites and options that are examined during the reconstruction of power units equipped with Т-250 turbines have been given. The structure of new Т-295 turbine has been described, some circuitry and layout solutions have been defined and the main obtained techno economic characteristics are shown taking into account the simultaneous reconstruction of boiler equipment to increase the steam output and live steam temperature and the reheat. Taking into account the need for the life maintenance of the units of turbine proper operating at a temperature higher than 450 °С for about 250000 hours the materials selected to meet the above requirement were designated.

Посилання

Barinberg, G. D., Kortenko, V. V. and Chubarov A. A. (2001), ²Obosnovnyhnapravlenijahrazvitijateplofikaciiiteplofikacionnogo turbostroenija v Rossii [Some topic about district heating and districtheatingequipmentdevelopmentin Russia]²,Teplojenergetika,vol. 11. pp. 7–12.

Simou, L. L., Gutorov, V. F., Lagun, V. P. and Barinberg, G. D. (2005) ²Povyshenie jeffektivnosti raboty turboustanovki T-250/300-240 putem modernizacii CND [Turbine T-250/300-240 impruving efficiencyviaLPCmodernization]²,Teplojenergetika,vol.11. pp. 68–74.

Kostuk, A. G., Trukhniy, A. D. and Lomakin, B. V. (2004) ²Ob uslovijah perevoda parovoj turbiny T-250/300-23,5 TMZvrezhim raboty bez rabochih lopatok poslednej stupeni [About changing mode conditions to the mode without laststagebucketforT-250/300-240 TMZ]², Teplojenergetika, vol. 5, pp. 23–30.

Slabchenko, O. N., Zaycev, M. V., Kozlokov, A. U. and Zolotuhin, A. D. (2009) ²Ocenka jeffektivnosti raboty CND turbiny T-250/300-23,5 Har'kovskoj TJeC-5 [Estimation Of LPC Efficiency Of The T-250/300-23.5 Turbine Of The Kharkov HPP-5]²,BulletinofNTU "KhPI". Series: Power and heat engineering processes and equipment, vol. 3, pp. 41–48, ISSN 2078-774X.

Barinberg, G. D., Brodov, Y. M., Goldberg, A. A., Yoffe, L. S., Kortenko, V. V., Novoselov, V. B. and Sakhnin, Y. A.(2010)Parovye turbiny i turboustanovki Ural'skogo turbinnogo zavoda [Ural Turbine Works steam turbines andturbineunits],inBrodov,Y.M. and Kortenko, V.V. (ed.), Aprio, Yekaterinburg, Russian.

Simou, L. L., Gutorov, V. F., Efros, E. I., Barinberg, G. D., Kortenko, V. V., Gaev, V. D., Nezentcev, Y. N. and Plakhty, V. N.(2000) ²Povyshenie jekonomichnosti teplofikacionnyh turbin s dvuhpotochnym CND [Impruvingefficiencyfordistrictheatingturbineswith dual LPC]², Teplojenergetika, vol. 11, pp. 14–17.

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Опубліковано

2016-06-27

Як цитувати

Valamin, A., Kultyshev, A., Shibaev, T., Goldberg, A., Sakhnin, Y., Stepanov, M., Shekhter, M., & Bilan, V. (2016). The Cogeneration Turbine Т-295/335-23,5 Designed for the Reconstruction of Power-Generating Units Equipped with T-250/300-240 Turbines. Вісник Національного технічного університету «ХПІ». Серія: Енергетичнi та теплотехнiчнi процеси й устаткування, (8), 37–46. https://doi.org/10.20998/2078-774X.2016.08.05

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Розділ

Енергетичні та теплотехнічні процеси й устаткування