Кафедра "Електричний транспорт та тепловозобудування"

Постійне посилання колекціїhttps://repository.kpi.kharkov.ua/handle/KhPI-Press/5269

Офіційний сайт кафедри http://web.kpi.kharkov.ua/ett

Від 2000 року кафедра має назву "Електричний транспорт та тепловозобудування", попередня назва – кафедра "Локомотивобудування" (від 1956), первісна назва – кафедра "Паровозобудування".

Кафедра "Паровозобудування" була заснована у 1893 році. Засновником напрямку навчання інженерів-паровозобудівників є професор Петро Матвійович Мухачов.

Кафедра входить до складу Навчально-наукового інституту енергетики, електроніки та електромеханіки. Кафедрою здійснено понад 100 випусків спеціалістів – локомотивобудівників.

У складі науково-педагогічного колективу кафедри працюють: 3 доктора технічних наук, 5 кандидатів технічних наук; 3 співробітника мають звання професора, 3 – доцента, 1 – старшого наукового співробітника.

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  • Ескіз
    Документ
    Mathematical model of mechanical subsystem of traction electric drive of an electric locomotive
    (Volodymyr Dahl East Ukrainian National University, 2021) Goolak, S.; Sapronova, S.; Tkachenko, V.; Riabov, Ie.; Overianova, L.; Yeritsyan, B.
    The mathematical model of the mechanical subsystem of the traction electric drive of the four-axle section of the locomotive is developed in the article. The peculiarity of the model is taking into account the interconnected vertical oscillations of the locomotive and torsional oscillations in traction transmission and the influence of the anti-discharge device on the processes in the traction electric drive. This allows taking into account the relationship of oscillations of the crew of the locomotive, which have a significant impact on the processes in the electrical part of the traction drive. The model describes the oscillations of the locomotive body, two carts, four wheel pairs, traction motors and gearboxes. When developing the model, the assumption of linear dependence of stiffness and damping coefficients on displacements and velocities is accepted. Coupling of a wheel with a rail is described by means of the approximated dependence. The oscillations of the rails and the bases of the rail track are introduced into the model. As perturbation for vertical oscillations the roughness of a rail track is accepted. The model takes into account the influence of traction force and vertical oscillations of the crew on the unloading of the axles of the locomotive. This will allow us to study the processes of realization of the locomotive's maximum traction forces in the traction mode and in the mode of electrodynamics braking. The use of the developed mathematical model of the mechanical subsystem will allow taking more fully into account the mutual influence of electrical processes and mechanical oscillations on each other, which will increase the accuracy of modeling. The model can be used for research of freight electric locomotives such as VL10, VL11, VL82, VL80, 2EL4, 2EL5 in order to further improve their traction electric drives, in particular, to determine the rational modes of application of the anti-unloading device in traction and braking modes. Further application of the mathematical model is possible to assess the performance of the traction drive and the locomotive in general in the study of modern traction drives, in particular, asynchronous, the use of which is possible on the above locomotives.
  • Ескіз
    Документ
    Mathematical Model of the Electric Traction System of Quarry Railway Transport
    (Kaunas University of Technology, 2022) Riabov, Ie.; Liubarskyi, B.; Overianova, L.; Goolak, S.; Kondratieva, L.
    The AC electric traction system of the quarry railway transport has been considered. Ways to improve the system of the electric traction by using electric rolling stock with asynchronous electric drive have been proposed. The necessity of complex research of the electric traction system by mathematical modeling has been shown. A mathematical model has been developed, which includes the model of train dynamics, the model of power flows in electric rolling stock, and the model for calculation and determination of losses in traction power supply systems. Using the developed model will allow research of energy processes and optimize the operation of the electric traction system.