On Possibility of the Development of Instability of the Surface of the Dome of a Rising Bubble

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Resumo

The results of experiments on the study of stability of the dome of a water bubble rising through a salt solution are presented. The experimental results are obtained using the PLIF method by recording the flow in the plane that coincides with the axis of symmetry of the bubble, The experiments demonstrate the possibility of the development of instability in the vicinity of the pole of the dome of such a bubble in accordance with the previously published results of computational simulation.

Sobre autores

E. Meshkov

Саровский физико-технический институт – филиал НИЯУ МИФИ

Email: irinamonachova@mail.ru
Sarov, Russia

R. Mokretsov

Sarov Physical and Technical Institute (Branch of National Research Nuclear University (MEPhI); Russian Federal Nuclear Center “All-Russian Research Institute of Experimental Physics (RFNC-VNIIEF)”

Email: irinamonachova@mail.ru
Sarov, Russia; Sarov, Russia

I. Novikova

Sarov Physical and Technical Institute (Branch of National Research Nuclear University (MEPhI); Russian Federal Nuclear Center “All-Russian Research Institute of Experimental Physics (RFNC-VNIIEF)”

Email: irinamonachova@mail.ru
Sarov, Russia; Sarov, Russia

S. Sedov

Sarov Physical and Technical Institute (Branch of National Research Nuclear University (MEPhI); Russian Federal Nuclear Center “All-Russian Research Institute of Experimental Physics (RFNC-VNIIEF)”

Email: irinamonachova@mail.ru
Sarov, Russia; Sarov, Russia

I, Smagin

Sarov Physical and Technical Institute (Branch of National Research Nuclear University (MEPhI); Russian Federal Nuclear Center “All-Russian Research Institute of Experimental Physics (RFNC-VNIIEF)”

Autor responsável pela correspondência
Email: irinamonachova@mail.ru
Sarov, Russia; Sarov, Russia

Bibliografia

  1. Batchelor G.K. The stability of a large gas bubble rising through liquid // J. Fluid Mech. 1987. P. 399–422.
  2. Meshkov E.E. Some peculiar features of hydrodynamic instability development // Phil. Trans. R. Soc. A. 2013. P. 371.
  3. Мешков Е.Е. К вопросу о структуре зоны перемешивания на неустойчивой контактной границе // ЖЭТФ. 2018. № 1. С. 150–156.
  4. Sreenivasan K.R., Abarzhi S.I. Acceleration and turbulence in Rayleigh–Taylor mixing // Phil. Trans. Roy. Soc. A. 2013. P. 371.
  5. Taylor G.I. The Criterion for Turbulence in Curved Pipes // Proc. Roy. Soc. A. 1929. P. 243–249.
  6. Narasimha R., Sreenivasan K.R. Relaminarization in highly accelerated turbulent boundary layers // J. Fluid Mechanics. 1973. № 3. P. 417–447.
  7. Kanygin R.I., Kashcheev A.D., Kudryavtsev A.Yu., Meshkov E.E., Novikova I.A. The stability of the dome of a liquid bubble rising in a dense liquid // Phys. Scr. 2018. № 2.
  8. Crimaldi J.P. Planar laser induced fluorescence in aqueous flows // Exp Fluids. 2008. P. 851–863.
  9. Bazarov Yu., Kuratov S.E., Meshkov D.E., Meshkov E.E., Ol’khov O.V., Sedov S.Yu., Sivolgin V.S. Analysis of hydrodynamic instability growth in a 2D flow // Phys. Scr. 2010. https://doi.org/10.1088/0031- 8949/2010/T142/014018
  10. Жидов И.Г., Мешков Е.Е., Попов В.В., Рогачев В.Г., Толшмяков А.И. Образование вихревого кольца при всплывании большого воздушного пузыря в воде // ЖПМТФ. 1977. № 3. С. 75–78.
  11. Седов С.Ю. // Вопросы атомной науки и техники. 2008. № 4. С. 46–53.

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Declaração de direitos autorais © Е.Е. Мешков, Р.В. Мокрецов, И.А. Новикова, С.Ю. Седов, И.Р. Смагин, 2023

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