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Research-to-practice conference RIVS-2016
Energy-saving technology
Название Increasing the effectiveness of electro-technical transformation complexes for supplying of aluminium electrolysers
DOI 10.17580/tsm.2016.10.07
Автор Abramovich B. N., Veprikov A. A., Sychev Yu. A., Khomyakov K. A.
Информация об авторе

Saint Petersburg Mining University, Saint Petersburg, Russia:

B. N. Abramovich, Professor of a Chair of Electroenergetics and Electromechanics, e-mail: babramov2bn@mail.ru
A. A. Veprikov, Post-Graduate Student of a Chair of Electroenergetics and Electromechanics
Yu. A. Sychev, Asistant Professor of a Chair of Electroenergetics and Electromechanics

 

Joint Enterprise of Scientific and Production Association “RIVS”, Saint Petersburg, Russia:
K. A. Khomyakov, Detailer of the Department of Design of Power Supply and Electrical Equipment of Enterprises, e-mail: kostyhom@gmail.com

Реферат

The article conveys about the characteristics of electrolyser-based power supply at non-ferrous metallurgy enterprises, thoroughly assesses the shortcomings of the existing electro-technical transformation complexes. Diode and thyristor rectifiers, widely used in this sector, greatly impact the form of current-voltage curves of supply networks and decrease the power factor, which leads to faster aging of the equipment and additional losses of electrical power. In light of the above mentioned, the article proves the inevitability of increasing the effectiveness of rectification complexes for supplying of electrolysers, presents the main ways of enhancing the structures and operational modes of transformation facilities. To ensure the required level of electromagnetic compatibility of electrical equipment with the network and a higher quality of electrical power, it is recommended to jointly use the equipment for regulation of voltage under the load of power transformers and rectification facilities based on IGBT transistors, functioning as active rectifiers. The essential requirements of technological progress of electrolysis are performed through optimization of operational modes of transformation facilities, by minimizing current overloads as well as the number of power semiconductor elements. The article presents calculations of an aluminium electrolysis series, supplied through parallel active rectifiers on IGBT-transistor modules which regulate high currents, and evaluates general effectiveness of the proposed electro-technical complex. Moreover, the proposed method of electrolysis-based power supply can also be effectively used for production of other non-ferrous metals.

Ключевые слова Power supply, electrolyser, quality of electrical power, electro-technical complex, transformation facilities, diode rectifiers, thyristor rectifiers
Библиографический список

1. Shcherban G. I., Chervonyy I. F. Anodnyy effekt i MGD-nestabilnost v alyuminievom elektrolizere. Kontrol parametrov dlya ikh prognoza (Anode effect and magnetohydrodynamics instability in aluminium electrolyser. Control of parameters for their forecast). Vostochno-Evropeyskiy zhurnal peredovykh tekhnologiy = Eastern-European Journal of Enterprise Technologies. 2014. No. 70. pp. 46–49.
2. Si S. Povyshenie proizvoditelnosti elektrolizerov i razrabotka energosberegayushchikh tekhnologiy v Kitae (Increasing of productivity of electrolysers and development of energy-supply technologies in China). Sbornik dokladov chetvertogo mezhdunarodnogo kongressa v sostave XVIII Mezhdunarodnoy konferentsii “Alyuminiy Sibiri” VI konferentsii “Metallurgiya tsvetnykh i redkikh metallov” VIII sim poziuma “Zoloto Sibiri” (Collection of reports of the forth international congress in XVIII International Conference “Aluminium of Siberia”; VI Conference “Metallurgy of non-ferrous and rare metals”; VIII Symposium “Gold of Siberia”). Krasnoyarsk, 2012. pp. 420–431.
3. Bazhin V. Yu. Obosnovanie resursosberezheniya v tekhnologii proizvodstva alyuminiya v vysokoampernykh elektrolizerakh s obozhzhennymi anodami : avtoreferat dissertatsii ... doktora tekhnicheskikh nauk (Substantiation of resource-saving in aluminium production technology in high-amperous electrolyzers with baked annodes : thesis of inauguration of Dissertation … of Doctor of Engineering Sciences). Saint Petersburg, 2012. p. 42.
4. Vaystner M., Khabibulin M. Obespechenie kachestva elektroenergii pri proizvodstve alyuminiya (Provision of electric energy quality during the production of aluminium). Mir metalla = The world of metal. 2014. No. 10. pp. 10–14.
5. Pollock P., Duffey C. Power quality and corrective action in an aluminum smelter. EEE Industry Applications Society Petroleum and Chemical Industry Conference. 1998. pp. 181–189.
6. Garnov V. K., Vishnevetskiy L. M., Pak I. S. Moshchnye poluprovodnikovye agregaty v tsvetnoy metallurgii (Powerful semiconductor aggregates in non-ferrous metallurgy). Moscow : Metallurgiya, 1970. 223 p.
7. Agalgaonkar A. P., Muttaqi K., Perera S. Open loop response characterisation of an aluminium smelting plant for short time interval feeding. IEEE Power and Energy Society General Meeting. 2009. pp. 1–7.
8. Khokhlov Yu. I., Rozkin V. O. Kvaziustanovivshiesya elektromagnitnye protsessy i kharakteristiki dvadtsatichetyrekhfaznogo kompensirovannogo preobrazovatelya (Quasi-established electromagnetic processes and characteristics of twenty-four-phase compensated transformator). Elektrichestvo = Electrical Technology Russia. 1990. No. 10. pp. 48–54.
9. Zhuravin Yu. D., Muss K. B., Shuletskaya S. P. O kriteriyakh elektromagnitnoy sovmestimosti sistemy elektrosnabzheniya i elektroliznykh seriy alyuminievykh zavodov (About the criteria of electromagnetic compatibility of the system of power supply and electrolysis series of aluminium plants). Tsvetnye Metally = Non-ferrous metals. 1987. No. 4. pp. 51–55.
10. Salnikov V. G., Shevchenko V. V. Effektivnye sistemy elektrosnabzheniya predpriyatiy tsvetnoy metallurgii (Efficient systems of power supply of non-ferrous metallurgy enterprises). Moscow : Metallurgiya, 1986. 34 p.
11. Spravochnik metallurga po tsvetnym metallam. Proizvodstvo alyuminiya (Non-ferrous metals reference book of metallurgist. Aluminium production). Kostyukov A. A., Kil I. G., Nikiforov V. P., Volfson G. E., Rapoport M. B., Tsyplakov A. M., Gupalo I. P., Shtern V. I. Moscow : Metallurgiya, 1971. 560 p.
12. Pereira V. G., Oliveira R. C. L., Soares F. M. Fuzzy Control Applied to Aluminum Smelting. Fuzzy Logic — Controls, Concepts, Theories and Applications. 2012. Ch. 13. pp. 314–335.
13. Heping Xu, Qipin Xu, Yuan Gao, Haoming Liu. Coordinate Control Strategy for Current Stabilization in an Aluminum Smelter Including on Load Tap Changer. Energy and Power Engineering. 2013. Vol. 5. pp. 1410–1414.
14. Wintrich A., Nicolai U., Tursky W., Reimann T. Translated by A. Kolpakov and E. Kartashov. Problemy parallelnogo i posledovatelnogo soedineniya IGBT. Chast 1. Parallelnaya rabota IGBT (Problems of parallel and series connection IGBT. Part 1. Parallel work IGBT). Silovaya Elektronika = Power electronics. 2013. No. 4. pp. 67–74.

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