Перегляд за автором "Maruschak, I.S."

Сортувати за: Порядок: Результатів:

  • Kravchenko, O.Yu.; Maruschak, I.S. (Вопросы атомной науки и техники, 2019)
    One of the most promising methods for creating nanostructured films is the use of plasma jets of low pressure with nanoparticles. In this case, it is important to control the size of the nanoparticles, their temperature ...
  • Kravchenko, O.Yu.; Maruschak, I.S. (Вопросы атомной науки и техники, 2017)
    In this paper carry out the computer simulation of the plasma jet with dust particles, which expands in rarefied neutral gas. The problem is considered in the framework of multi-fluid hydrodynamic model, which takes into ...
  • Kravchenko, O.Yu.; Levada, G.I.; Maruschak, I.S.; Lisitchenko, T.E. (Вопросы атомной науки и техники, 2011)
    It is carried the two-dimensional computer simulation of evolution of the magnetized sheath that arises between plasma and isolated wall under the influence of an explosive emission of electrons from the microspot of the ...
  • Kravchenko, O.Yu.; Maruschak, I.S. (Problems of Atomic Science and Technology, 2022)
    The heating of nanoparticles in a low-pressure plasma jet was studied with the help of computer simulation. Modeling of the expansion of a plasma jet with a dispersed phase, which was a mixture of nanoparticles of two ...
  • Kravchenko, O.Yu.; Maruschak, I.S.; Yushchyshena, Yu.V. (Вопросы атомной науки и техники, 2015)
    In this paper we report about results of computer simulation by PIC/MCC method of the discharging of dust particles in the plasma afterglow and time dependence of plasma parameters in discharge gap after switching off the ...
  • Kravchenko, O.Yu.; Maruschak, I.S. (Вопросы атомной науки и техники, 2021)
    In the framework of a multi-fluid axisymmetric hydrodynamic model, the interaction of a supersonic plasma jet containing nanoparticles with a flat substrate is investigated using computer simulation. In particular, the ...
  • Kravchenko, O.Yu.; Maruschak, I.S.; Levada, G.I. (2010)
    It is carried a computer simulation of the dynamics of dust clouds near a conducting wall at microgravity conditions and its effect on the sheath. We used two-dimensional axially symmetric hydrodynamic model, which takes ...