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Creation and substantiation of the matrix for model series of tubular propeller turbines for small hydropower plants

НазваCreation and substantiation of the matrix for model series of tubular propeller turbines for small hydropower plants
Назва англійськоюCreation and substantiation of the matrix for model series of tubular propeller turbines for small hydropower plants
АвториMyroslav Zin; Vadym Koval; Mykola Tarasenko; Ivan Sysak
ПринадлежністьTernopil Ivan Puluj National Technical University, Ternopil, Ukraine
Бібліографічний описCreation and substantiation of the matrix for model series of tubular propeller turbines for small hydropower plants / Myroslav Zin; Vadym Koval; Mykola Tarasenko; Ivan Sysak // Scientific Journal of TNTU. — Tern.: TNTU, 2023. — Vol 109. — No 1. — P. 24–31.
Bibliographic description:Zin M., Koval V., Tarasenko M., Sysak I. (2023) Creation and substantiation of the matrix for model series of tubular propeller turbines for small hydropower plants. Scientific Journal of TNTU (Tern.), vol 109, no 1, pp. 24–31.
УДК

621.224-225.12; 621.311.2.21

Ключові слова

matrix, model series, tubular propeller hydroturbine, small hydropower plants, low pressure.

The paper is devoted to further development of small hydropower on the basis of reliable and cheap unregulated tubular propeller hydroturbines with rigidly fixed operating and guide blades. Such turbines are used mainly at low-pressure small hydroelectric power stations. Their main drawback is the impossibility of generated power regulation. However, solutions that minimize this shortcoming are proposed in this paper. Matrix of 4 model series of tubular propeller hydroturbines has been created. The nomenclature of turbines presented in this matrix is aimed at improving technical characteristics of small hydropower plants and reducing their negative impact on the environment. The rules for equipping machine platforms of low-pressure small hydroelectric power plants with capacity up to 200 kW with models of turbines from the created matrix are proposed, and their technical and environmental justification is performed. According to the recommendations given in the paper, at least two different adjacent turbines from the same model line should be installed at one HPP. The best option is three different adjacent turbines from the same model series, but technical and economic analysis should be performed for more detailed justification of the choice of the number of turbines. This is the subject of our further investigations. The application of scientific and practical results presented in the paper will improve technical characteristics of small hydropower plants with tubular propeller turbines and minimize their possible negative impact on the life of river flora and fauna in lower basin.

ISSN:2522-4433
Перелік літератури
  1. Denysiuk S. P., Strelkova H. H., Pfaifer K. F., Strelkov M. T., Ishchenko O. S. Yevropeiski tendentsii innovatsiinoho rozvytku v enerhetychnomu sektori ta sferakh kintsevoho enerhospozhyvannia. Enerhetyka: ekonomika, tekhnolohii, ekolohiia. 2018. No. 2 (52). P. 7–19. [In Ukrainian].
  2. Tarasenko M. H., Zin M. M., Pidhainyi Y. B. Perevahy i problemy kilkisnoho rozvytku maloi hidroenerhetyky ta shliakhy yikh rozviazannia. Visnyk Kremenchutskoho natsionalnoho universytetu  imeni Mykhaila Ostrohradskoho, Kremenchuk. 2014. Iss. 2 (85). P. 31–40. [In Ukrainian].
  3. Tarasenko M. H., Zin M. M., Pidhainyi Y. B. Shliakhy pryskorennia tempiv rozvytku maloi hidroenerhetyky v Ukraini. Visnyk Kremenchutskoho natsionalnoho universytetu imeni Mykhaila Ostrohradskoho. 2014. Iss. 4 (87). P. 56–61. [In Ukrainian].
  4. Dehtiarenko O. H., Shashkov S. V. Dotsilnist ta perspektyvy rozvytku maloi hidroenerhetyky v Ukraini, Visnyk Sumskoho derzhavnoho universytetu. Seriia “Ekonomika”. 2010. No. 1. P. 89–96. [In Ukrainian].
  5. Bumarskov S. A. Pro dosvid proektuvannia hidroturbin dlia nyzkonapirnykh i vysokonapirnykh malykh HES. Visnyk Natsionalnoho universytetu vodnoho hospodarstva ta pryrodokorystuvannia. 2013. Iss. 2 (62). P. 309–313. [In Ukrainian].
  6. Bakken T. H., Sundt H., Ruud A., Harby A. Development of small versus large hydropower in Norway comparison of environmental impacts. Energy Procedia. 2012. No. 20. P. 185–199.
  7. UNITED NATIONS. SUSTAINABLE DEVELOPMENT. Transforming our world: the 2030 Agenda for Sustainable Development. URL: https://sustainabledevelopment.un.org/post2015/transformingourworld.

 

References:
  1. Denysiuk S. P., Strelkova H. H., Pfaifer K. F., Strelkov M. T., Ishchenko O. S. Yevropeiski tendentsii innovatsiinoho rozvytku v enerhetychnomu sektori ta sferakh kintsevoho enerhospozhyvannia. Enerhetyka: ekonomika, tekhnolohii, ekolohiia. 2018. No. 2 (52). P. 7–19. [In Ukrainian].
  2. Tarasenko M. H., Zin M. M., Pidhainyi Y. B. Perevahy i problemy kilkisnoho rozvytku maloi hidroenerhetyky ta shliakhy yikh rozviazannia. Visnyk Kremenchutskoho natsionalnoho universytetu  imeni Mykhaila Ostrohradskoho, Kremenchuk. 2014. Iss. 2 (85). P. 31–40. [In Ukrainian].
  3. Tarasenko M. H., Zin M. M., Pidhainyi Y. B. Shliakhy pryskorennia tempiv rozvytku maloi hidroenerhetyky v Ukraini. Visnyk Kremenchutskoho natsionalnoho universytetu imeni Mykhaila Ostrohradskoho. 2014. Iss. 4 (87). P. 56–61. [In Ukrainian].
  4. Dehtiarenko O. H., Shashkov S. V. Dotsilnist ta perspektyvy rozvytku maloi hidroenerhetyky v Ukraini, Visnyk Sumskoho derzhavnoho universytetu. Seriia “Ekonomika”. 2010. No. 1. P. 89–96. [In Ukrainian].
  5. Bumarskov S. A. Pro dosvid proektuvannia hidroturbin dlia nyzkonapirnykh i vysokonapirnykh malykh HES. Visnyk Natsionalnoho universytetu vodnoho hospodarstva ta pryrodokorystuvannia. 2013. Iss. 2 (62). P. 309–313. [In Ukrainian].
  6. Bakken T. H., Sundt H., Ruud A., Harby A. Development of small versus large hydropower in Norway comparison of environmental impacts. Energy Procedia. 2012. No. 20. P. 185–199.
  7. UNITED NATIONS. SUSTAINABLE DEVELOPMENT. Transforming our world: the 2030 Agenda for Sustainable Development. URL: https://sustainabledevelopment.un.org/post2015/transformingourworld.
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