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@article{VSGTU_2004_27_a16, author = {V. N. Mitroshin}, title = {{\CYRM}{\cyra}{\cyrt}{\cyre}{\cyrm}{\cyra}{\cyrt}{\cyri}{\cyrch}{\cyre}{\cyrs}{\cyrk}{\cyra}{\cyrya} {\cyrm}{\cyro}{\cyrd}{\cyre}{\cyrl}{\cyrsftsn} {\cyrd}{\cyrl}{\cyrya} {\cyrr}{\cyra}{\cyrs}{\cyrch}{\cyre}{\cyrt}{\cyra} {\cyrt}{\cyre}{\cyrm}{\cyrp}{\cyre}{\cyrr}{\cyra}{\cyrt}{\cyru}{\cyrr}{\cyrn}{\cyrery}{\cyrh} {\cyrp}{\cyro}{\cyrl}{\cyre}{\cyrishrt} {\cyrerev}{\cyrk}{\cyrs}{\cyrt}{\cyrr}{\cyru}{\cyrd}{\cyri}{\cyrr}{\cyro}{\cyrv}{\cyra}{\cyrn}{\cyrn}{\cyrery}{\cyrh} {\cyri}{\cyrz}{\cyro}{\cyrl}{\cyrya}{\cyrc}{\cyri}{\cyro}{\cyrn}{\cyrn}{\cyrery}{\cyrh} {\cyrp}{\cyro}{\cyrk}{\cyrr}{\cyrery}{\cyrt}{\cyri}{\cyrishrt} {\cyrk}{\cyra}{\cyrb}{\cyre}{\cyrl}{\cyrsftsn}{\cyrn}{\cyrery}{\cyrh} {\cyrzh}{\cyri}{\cyrl}}, journal = {Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences}, pages = {88--90}, publisher = {mathdoc}, number = {27}, year = {2004}, language = {ru}, url = {http://geodesic.mathdoc.fr/item/VSGTU_2004_27_a16/} }
TY - JOUR AU - V. N. Mitroshin TI - Математическая модель для расчета температурных полей экструдированных изоляционных покрытий кабельных жил JO - Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences PY - 2004 SP - 88 EP - 90 IS - 27 PB - mathdoc UR - http://geodesic.mathdoc.fr/item/VSGTU_2004_27_a16/ LA - ru ID - VSGTU_2004_27_a16 ER -
%0 Journal Article %A V. N. Mitroshin %T Математическая модель для расчета температурных полей экструдированных изоляционных покрытий кабельных жил %J Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences %D 2004 %P 88-90 %N 27 %I mathdoc %U http://geodesic.mathdoc.fr/item/VSGTU_2004_27_a16/ %G ru %F VSGTU_2004_27_a16
V. N. Mitroshin. Математическая модель для расчета температурных полей экструдированных изоляционных покрытий кабельных жил. Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, Journal of Samara State Technical University, Ser. Physical and Mathematical Sciences, no. 27 (2004), pp. 88-90. http://geodesic.mathdoc.fr/item/VSGTU_2004_27_a16/
[1] Lein P., Muller K., Schulmeister B., “Berechnung von Temperaturfeldern in extrudierten Aderisolierungen”, Elektrokabel, 1986, no. 1, 45–48
[2] Al-Karawi J., Schmidt J., Strumke M., “Kopplung von numerischer Berechnung und Experiment zur Bestimmung des Warmeubergangskoeffizienten bei der Herstellung von Kabeln”, Wiss. Z. Techn. Hochsch. O. Guericke Magdeburg, 28:4 (1984), 117–119
[3] Karyakin N.G., Fursov P.V., “Raschet vozmozhnosti obrazovanii vozdushnykh vklyuchenii v plastmassovoi izolyatsii kabelya pri okhlazhdenii”, Elektrotekhnicheskaya promyshlennost. Seriya: Kabelnaya tekhnika, 1977, no. 5, 8–11
[4] Kartashov E.M., Analiticheskie metody v teorii teploprovodnosti tverdykh tel, Vyssh. shk., M., 2001, 550 pp.
[5] Oganesyan K.G., “Raschet vremeni vulkanizatsii pri izolirovanii zhil kabelei vulkaniziruyuschimsya polietilenom”, Elektrotekhnicheskaya promyshlennost. Seriya: Kabelnaya tekhnika, 1975, no. 12, 7–10
[6] Kholodnyi S.D., Sokolov I.T., Mesenzhnik Ya.Z., “Raschet tekhnologicheskikh rezhimov izgotovleniya kabelei s izolyatsiei iz vulkaniziruemogo polietilena”, Elektrotekhnicheskaya promyshlennost. Seriya: Kabelnaya tekhnika, 1979, no. 8, 7–9