И. А. Знаменская, Е. Ю. Коротеева, Е. А. Карнозова, Т. А. Кули-Заде, “Динамика тепловых потоков нагретой импульсным сильноточным разрядом области канала”, ТВТ, 61:1 (2023), 18–23; I. A. Znamenskaya, E. Yu. Koroteeva, E. A. Karnozova, T. A. Kuli-zade, “Dynamics of heat fluxes in a channel area heated by a pulsed high-current discharge”, High Temperature, 61:1 (2023), 14–18
А. С. Савельев, “Двумерное моделирование воздействия импульсного локального нагрева на отрывное сверхзвуковое течение, вызванное его поворотом”, Компьютерные исследования и моделирование, 15:5 (2023), 1283–1300
V. S. Kurbanismailov, P. Kh. Omarova, G. B. Ragimkhanov, D. V. Tereshonok, Z. R. Khalikova, “Synthesis of Nitrogen Oxydes in the Pulse-Periodic Diffuse Discharge in Air”, Plasma Phys. Rep., 49:4 (2023), 541
Victor V. Kuzenov, Sergei V. Ryzhkov, Aleksey Yu. Varaksin, “Computational and Experimental Modeling in Magnetoplasma Aerodynamics and High-Speed Gas and Plasma Flows (A Review)”, Aerospace, 10:8 (2023), 662
А. Я. Котвицкий, И. А. Моралев, М. В. Устинов, А. А. Абдуллаев, “Возбуждение стационарных мод неустойчивости поперечного течения с помощью плазменного актуатора на основе диэлектрического барьерного разряда”, ТВТ, 61:6 (2023), 830–835; A. Ya. Kotvitskii, I. A. Moralev, M. V. Ustinov, A. A. Abdullaev, “Excitation of stationary cross-flow instability modes using a plasma actuator based on dielectric barrier discharge”, High Temperature, 61:6 (2023), 764–769
D. V. Tereshonok, M. A. Sargsyan, M. Kh. Gadzhiev, Z. G. Karchugaeva, “Analysis of processes leading to explosive phenomena on the surface of a liquid cathode at the time of the dc electric arc ignition”, EPL, 140:3 (2022), 34001
Dmitry V. Tereshonok, Natalia Yu. Babaeva, Georgy V. Naidis, Artem G. Abramov, Aleksandr V. Ugryumov, “Modeling of Ionization Waves in Atmospheric-Pressure Argon in a Long Gap”, IEEE Trans. Plasma Sci., 50:3 (2022), 580
Almazova I K., Belonogov A.N., Borovkov V.V., Khalikova Z.R., Ragimkhanov G.B., Tereshonok V D., Trenkin A.A., “Investigation of Plasma Properties in the Phase of the Radial Expansion of a Spark Channel in the ‘Pin-to-Plate’ Geometry”, Plasma Sources Sci. Technol., 30:9 (2021), 095020
Almazova K.I., Belonogov A.N., Borovkov V.V., Kurbanismailov V.S., Omarova P.Kh., Ragimkhanov G.B., Tereshonok D.V., Trenkin A.A., Khalikova Z.R., “Investigation of the Dynamics of a Microstructured Spark Channel in Air in the “Tip (Anode)-Plane” Geometry At the Stage of Radial Expansion”, Plasma Phys. Rep., 47:1 (2021), 73–79
Kurbanismailov V.S., Ragimkhanov G.B., Tereshonok D.V., Khalikova Z.R., “Formation of a Nanosecond Discharge in Argon At Atmospheric Pressure Under Gas Pre-Ionization Conditions”, Plasma Phys. Rep., 47:1 (2021), 80–85
A S Saveliev, “Influence of the position and energy of local rapid heating of the supersonic gas flow on the position of the separation point on the surface of airfoil”, J. Phys.: Conf. Ser., 2100:1 (2021), 012004
S Elliott, A A Firsov, S B Leonov, “Oblique shock wave reflection at plasma array presence”, J. Phys.: Conf. Ser., 2100:1 (2021), 012008
Almazova I K., Belonogov A.N., Borovkov V.V., Kurbanismailov V.S., Khalikova Z.R., Omarova P.Kh., Ragimkhanov G.B., Tereshonok V D., Trenkin A.A., “Investigation of the Microchannel Structure in the Initial Phase of the Discharge in Air At Atmospheric Pressure in the “Pin (Anode)-Plane” Gap”, Phys. Plasmas, 27:12 (2020), 123507
Sargsyan M.A. Tereshonok D.V. Gadzhiev M.Kh. Tyuftyaev A.S., “Mechanism of Mass Expulsion From the Surface of a Pure Tungsten Cathode During Dc Arc Initiation”, EPL, 131:4 (2020), 45002
Almazova K.I., Belonogov A.N., Borovkov V.V., Kurbanismailov V.S., Khalikova Z.R., Ragimkhanov G.B., Tereshonok D.V., Trenkin A.A., “Features of the Cathode Plasma Formation At the Initial Stage of a Nanosecond Spark Discharge in Air”, EPL, 130:6 (2020), 65002
A.S. Saveliev, “2D simulation of interaction between separation region and gasdynamic perturbation caused by rapid heat release in supersonic airflow”, J. Phys.: Conf. Ser., 1698:1 (2020), 012007
K I Almazova, A N Belonogov, V V Borovkov, P H Omarova, G B Ragimkhanov, D V Tereshonok, A A Trenkin, Z R Khalikova, “A set of optical techniques for studying the dynamics of a discharge in millimeter-length intervals: the development of a spark discharge in air in the pin-to-plate geometry”, J. Phys.: Conf. Ser., 1692:1 (2020), 012007
Kuznetsov A.Yu., Mursenkova I.V., Ulanov P.Yu., “Dynamics of Radiation From Nanosecond Surface Sliding Discharge in Airflow With Shock Waves”, Tech. Phys. Lett., 45:12 (2019), 1266–1269
A S Saveliev, “Influence on separation point position by rapid local gas heating with spark discharge on the surface of airfoil streamlined by supersonic airflow”, J. Phys.: Conf. Ser., 1394:1 (2019), 012030
A S Saveliev, “Determination of the fraction of electrical energy released in the oncoming supersonic airflow using long spark discharge”, J. Phys.: Conf. Ser., 1394:1 (2019), 012011
A S Saveliev, “Visualization of interaction between gas-dynamic perturbation caused by spark discharge and detached supersonic airflow”, J. Phys.: Conf. Ser., 1112 (2018), 012014
М. В. Ильичев, В. Б. Мордынский, Д. В. Терешонок, А. С. Тюфтяев, С. Е. Чикунов, “Экспериментальное определение зависимости коэффициента теплопроводности стали от температуры”, ТВТ, 53:2 (2015), 198–203; M. V. Il'ichev, V. B. Mordynskii, D. V. Tereshonok, A. S. Tyuftyaev, S. E. Chikunov, “Experimental determination of the temperature dependence of steel thermal conductivity”, High Temperature, 53:2 (2015), 193–198
Д. В. Терешонок, “Численное моделирование поверхностного тлеющего разряда в молекулярном азоте”, ТВТ, 52:3 (2014), 352–356; D. V. Tereshonok, “Numerical Simulation of Surface Glow Discharge in Molecular Nitrogen”, High Temperature, 52:3 (2014), 344–347
В. А. Шахатов, Ю. А. Лебедев, “Метод эмиссионной спектроскопии в исследовании влияния состава смеси гелия с азотом на характеристики тлеющего разряда постоянного тока и СВЧ-разряда”, ТВТ, 50:5 (2012), 705–730; V. A. Shakhatov, Yu. A. Lebedev, “Radiation spectroscopy in the study of the influence of a helium-nitrogen mixture composition on parameters of DC glow discharge and microwave discharge”, High Temperature, 50:5 (2012), 658–681
Son E., Tereshonok D., “Separation Flow Control by Thermal Bump in a Supersonic Airflow”, EPL, 99:1 (2012), 15002
Victor Golub, Svetlana Agibalova, Ivan Moralev, Andrey Saveliev, 18th AIAA/3AF International Space Planes and Hypersonic Systems and Technologies Conference, 2012