Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
Internal Impedance of Twisted Steel-Aluminum Wires at an Industrial Frequency. / Merkushev, A.G.; Elagin, I.A.
в: Technical Physics, Том 60, № 6, 2015, стр. 815-819.Результаты исследований: Научные публикации в периодических изданиях › статья › Рецензирование
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TY - JOUR
T1 - Internal Impedance of Twisted Steel-Aluminum Wires at an Industrial Frequency
AU - Merkushev, A.G.
AU - Elagin, I.A.
PY - 2015
Y1 - 2015
N2 - A simplified mathematical model is suggested that describes the harmonic electromagnetic field distribution in high-voltage steel-core twisted cables with a single-layer winding at an industrial frequency. As a physical idealization, the twisted strands are represented in the form of an anisotropically conducting layer. When twisting is taken into consideration, an axial magnetic field arises, which substantially influences losses in the cables. Using the model, the dependences of the internal impedance on the core’s magnetic permeability are derived for AS-70 cable at three winding angles of the external strands. These dependences are compared with results obtained in terms of a hollow cylinder model and with calculation data carried out in the complete statement of the problem with the finite element method.
AB - A simplified mathematical model is suggested that describes the harmonic electromagnetic field distribution in high-voltage steel-core twisted cables with a single-layer winding at an industrial frequency. As a physical idealization, the twisted strands are represented in the form of an anisotropically conducting layer. When twisting is taken into consideration, an axial magnetic field arises, which substantially influences losses in the cables. Using the model, the dependences of the internal impedance on the core’s magnetic permeability are derived for AS-70 cable at three winding angles of the external strands. These dependences are compared with results obtained in terms of a hollow cylinder model and with calculation data carried out in the complete statement of the problem with the finite element method.
U2 - 10.1134/S1063784215060171
DO - 10.1134/S1063784215060171
M3 - Article
VL - 60
SP - 815
EP - 819
JO - Technical Physics
JF - Technical Physics
SN - 1063-7842
IS - 6
ER -
ID: 5773641