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Tytuł artykułu

Experimental research of electromechanical and biological systems compatibility

Wybrane pełne teksty z tego czasopisma
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Warianty tytułu
PL
Badania eksperymentalne kompatybilności systemów elektromechanicznych i biologicznych
Języki publikacji
EN
Abstrakty
EN
Commercial frequency alternating current electromechanical energy transducers magnetic field influence on a biological system (model organism) is researched. Negative influence on the test-object (Drosophila melanogaster) of magnetic field of an induction motor with acquired parametric asymmetry and physical wear is analyzed. Phenotypic changes of a teratogenic character are revealed in the drosophila organism. The results are presented in comparison with the influence on the experimental insects of the magnetic field of healthy symmetric induction motors.
PL
W artykule przebadano wpływ pola magnetycznego wytwarzanego przez elektromechaniczne przetworniki energii na system biologiczny. Przeanalizowano negatywny wpływ pola magnetycznego generowanego przez silnik indukcyjny z założoną asymetrią na obiekt testowy (muszka owocowa - Drosophila melanogaster). Odkryto zmiany fenotypu o charakterze teratogenicznym w organizmie badanej muszki owocowej. Przeprowadzono analizę porównawczą wyników uzyskanych dla eksperymentalnych owadów w polu magnetycznym wytwarzanym przez symetryczne silniki indukcyjne.
Rocznik
Strony
128--131
Opis fizyczny
Bibliogr. 19 poz., rys., tab., wykr.
Twórcy
autor
  • Kremenchuk Mykhailo Ostrohradskyi National University, Head of the Department of Electric Machines and Apparatuses, Professor, vul. Pershotravneva, 20, 39600, Ukraine
autor
  • Institute of Electromechanics, Energy Saving and Automatic Control Systems of Kremenchuk Mykhailo Ostrohradskyi National University, Professor, vul. Pershotravneva, 20, 39600, Ukraine
autor
  • Kremenchuk Mykhailo Ostrohradskyi National University, Head of the Department of Biotechnology and Human Health, Professor, vul. Pershotravneva, 20, 39600, Ukraine
autor
  • Department of Biotechnology and Human Health of Kremenchuk Mykhailo Ostrohradskyi National University, vul. Pershotravneva, 20, 39600
autor
  • Department of Systems of Automatic Control and Electric Drive of Kremenchuk Mykhailo Ostrohradskyi National University, vul. Pershotravneva, 20, 39600
Bibliografia
  • [1] Semenov A. V. Justification of the maximum allowable induction of the magnetic fields with industrial frequency for human / A. V. Semenov // Bulletin of the Tomsk Polytechnic University. – 2012. – Vol. 321. – No.1. – pp.197-200 (in Russian).
  • [2] Electromagnetic radiation. Scale. Measurement. Distribution. Types and effectiveness of the protection [Electronic resource]. – Available at : http://www.fostac.ch/de/docs/fostac_studie_elektrosmog_igor_orzelsky_russisch.pdf (in Russian).
  • [3] Sulaberidze V.Sh. About the «personal» sources of electromagnetic radiation [Electronic resource]. – Available at : http://n2.insu.ru/-articles/arts/article_5.pdf (in Russian).
  • [4] Electromagnetic safety ensuring. The National Academy of Sciences of Ukraine. Institute of Engineering Thermophysics of NAS of Ukraine. Scientific and industrial enterprise «ELETER» [Electronic resource]. – Available at : http://www.wirt.by/templates/wirt/images/reestr/electrobezop.pdf (in Russian).
  • [5] Vanderstraeten J. Health effects of extremely low-frequency magnetic fields: reconsidering the melatonin hypothesis in the light of current data on magnetoreception / J. Vanderstraeten, L. Verschaeve, H. Burda, C. Bouland, C. Brouwe // Journal of Applied Toxicology. – 2012. – Vol. 32. – No. 12. – P. 952–958.
  • [6] Severini M. Metamorphosis delay in Xenopus laevis (Daudin) tadpoles exposed to a 50 Hz weak magnetic field / M. Severini, L. Bosco, R. et al. Alilla // International Journal of Radiation Biology. – 2010. – Vol. 86. – No. 1. – P. 37–46.
  • [7] Nykyforov V. Changes in the activity of the test object to a short simultaneous actions noise and magnetic field of symmetric and asymmetric induction motors / V. Nykyforov, O. Chornyi, O. Sakun // Engineering and Educational Technologies [Online journal], 2015. – No. 1 (9). – P. 46–54 – Available at: http://eetecs.kdu.edu.ua (in Ukrainian).
  • [8] Electromagnetic impact on living organisms [Electronic resource]. – Available at : http://study.sfukras.ru/mod/resource/view.php?id=1695 (in Russian).
  • [9] Magnetic field and biological organism [Electronic resource]. – Available at : http://metamir.wpdom.com/emf.php?mmm=emf (in Russian).
  • [10] GN 2.1.8/2.2.4.2262-07. The hygienic standard. Maximum allowable levels of magnetic fields with a frequency of 50 Hz for residential and public premises and habitable territories (in Russian).
  • [11] DSN No. 239–96. State sanitary standards and electromagnetic radiation regulations for social protection. – Кyiv, 1996. – 28 p. (in Ukrainian).
  • [12] ENV 50166-1, 1995, CENELEC. Human exposure to electromagnetic fields, low frequency (0 Hz to 10 kHz).
  • [13] Sanitary and epidemiological regulations and standards. Standards on health and disease control for residual premises and facilities. San-PiN 2.1.2.1002–00. – Мoscow : Ministry of Health of the Russian Federation, 2001 (in Russian).
  • [14] Sanitary and epidemiological regulations and standards. Electromagnetic fields under production conditions. San-PiN 2.2.4.1191–03. – Мoscow : Ministry of Health of the Russian Federation, 2003 (in Russian).
  • [15] Dovbysh V. N. Electromagnetic protection of power systems’ elements : monograph / V. N. Dovbysh, М. Yu. Maslov, Yu. М. Spodobaev – Samara : ООО IPK «Sodruzhestvo», 2009. – 198 p. (in Russian).
  • [16] Evolution of the theory of external magnetic field of induction motors and methods for its reduction and measurement [Electronic resource]. – Available at : http://www.dissercat.com/content/razvitie-teorii-vneshnegomagnitnogo-polya-asinkhronnykh-dvigatelei-sposobov-egosnizheniya- (in Russian).
  • [17] Stepanov А. N. Simulation of an external magnetic field of a three-phase electrical machine [Electronic resource]. – Available at : http://www.uzknastu.ru/files/pdf/2011-7-1/13-20.pdf (in Russian).
  • [18] Zagirnyak M., Romashihina Zh., Kalinov A. Diagnostic of broken rotor bars in induction motor on the basis of its magnetic field analysis // Acta Technica Jaurinensis. – 2013. – Vol. 6, no. 1. – Pp. 115–125.
  • [19] Meeker D. Finite element method magnetics, version 4.0 – User’s manual [Electronic resource]. – 2009. – Available at :http://www.femm.info/Archives/doc/manual.pdf.
Uwagi
Opracowanie ze środków MNiSW w ramach umowy 812/P-DUN/2016 na działalność upowszechniającą naukę.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-1f9e5ca0-1379-4832-abe1-a3d8842ac65e
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