METHODOLOGY FOR CALCULATING PARAMETERS AND ENERGY CHARACTERISTICS OF ELECTRIC MACHINES WITH A CLOSED LOOP
Abstract and keywords
Abstract (English):
The article is devoted to the consideration of issues related to the design of electric motors and the use of submersible electric machines in the marine environment on drilling rigs and platforms. The article describes the calculation of parameters and energy characteristics of asynchronous electric motors of submersible electric machines. The mathematical apparatus for calculating the active resistance of the stator phase, the winding of a short-circuited rotor in asynchronous electric motors is given. Some characteristic features of the calculation of asynchronous electric machines of open design are also considered when calculating the active resistance of the rotor winding and the stator phase, taking into account the voltage and current transformation coefficient at rated load.

Keywords:
active resistance of the stator phase, submersible electric machines, number of rotor slots, energy characteristics, active resistance of the closed ring, rod cross section, resistivity of copper, rod length
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References

1. Reva Yu.V. Tekhnologiya izgotovleniya i sposob sborki elektricheskih mashin otkrytogo ispolneniya na sredstvah vodnogo transporta // Problemy upravleniya riskami v tekhnosfere. 2020. № 2. S. 36–40.

2. Reva Yu.V. Primenenie oporno-upornyh podshipnikov skol'zheniya elektricheskih mashin otkrytogo ispolneniya v morskoj vode Arkticheskoj zony // Problemy upravleniya riskami v tekhnosfere. 2020. № 1. S. 27–30.

3. Veshnyakov A.S. Opyt OAO «Udmurtneft'» po vnedreniyu shtangovyh nasosov dvojnogo dejstviya // Neftegazovaya vertikal' – tekhnologii (special'noe prilozhenie). 2014. № 3. S. 72–74.

4. Francev A.V., Yushkin A.Yu., Yakimov S.B. Oborudovanie i tekhnologii dlya neftegazovogo kompleksa // Nauchno-tekhnicheskij vestnik OAO «NK «ROSNEFT'». 2013. № 6. S. 62–66.

5. Reva Yu.V. Tekhnicheskie sredstva dobychi mineral'nyh resursov i poleznyh iskopaemyh iz glubin Mirovogo okeana // Nauch.-analit. zhurn. «Vestnik S.-Peterb. un-ta GPS MCHS Rossii». 2020. № 1. S. 16–19.

6. Pogruzhnye elektrodvigateli s povyshennym napryazheniem – dvojnoj effekt bez investicij / S.B. Yakimov [i dr.] // Nauchno-tekhnicheskij vestnik OAO «NK «ROSNEFT'». 2014. № 3. S. 31–38.

7. Shafikov I.N. Puti povysheniya energoeffektivnosti elektroprivodov skvazhinnyh centrobezhnyh nasosnyh ustanovok // Elektroprivod, elektrotekhnologii i elektrooborudovanie predpriyatij: sb. nauch. trudov III Mezhdunar. (VI Vseros.) nauch.-tekhn. konf. Ufa: Izd-vo UGNTU, 2017. S. 156–160.

8. Shafikov I.N. Reguliruemyj privod skvazhinnogo elektrocentrobezhnogo nasosa na osnove vysokovol'tnogo mnogourovnevogo preobrazovatelya chastoty // Elektrotekhnicheskie i informacionnye kompleksy i sistemy. 2019. T. 15. № 3. S. 53–60.

9. Problemy preduprezhdeniya i likvidacii chrezvychajnyh situacij i sozdanie kompleksnyh avarijno-spasatel'nyh centrov v Arktike: Mezhdunar. nauch.-prakt. konf. M.: FGBU VNII GOCHS (FC), 2012.

10. Marek E. Obmotki elektricheskih mashin postoyannogo i peremennogo toka. M., 1929.

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