On the loss of stability of a rod in a cavitation bubble when entering into water through a barrier | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2012. № 4(20).

On the loss of stability of a rod in a cavitation bubble when entering into water through a barrier

A mathematical model and an example of a solution for the problem about the loss of stability of a rod moving in a liquid in the cavitation mode are presented. The problem was considered based on the approach proposed for the first time by Euler when considering the stability of a loaded rod.

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Keywords

кавитация, упругий стержень, устойчивость, Cavitation, elastic rod, stability

Authors

NameOrganizationE-mail
Ishchenko Alexander NikolaevichNational Research Tomsk State Universityichan@niipmm.tsu.ru
Burkin Victor VladimirovichNational Research Tomsk State Universityichan@niipmm.tsu.ru
Vasenin Igor' MihailovichNational Research Tomsk State Universityakrainov@ftf.tsu.ru
Shakhtin Andrey AnatolyevichNational Research Tomsk State Universityshahtin@sibmail.com
Всего: 4

References

Савченко Ю.Н. Моделирование суперкавитационных процессов. // Прикладна пдро-механжа. 2000. № 2(74). С. 75-86.
Ландау Л.Д., Лифшиц Е.М. Теория упругости. М.: Наука, 1987. 246 с.
Kirschner Ivan. Results of selected experiments involving supercavitating flows // High Speed Body Motion in Water. RTO EN, Belgium, 2001. P. 15-1 - 15-14.
Камке Э. Справочник по обыкновенным дифференциальным уравнениям. М.: Физмат-лит, 1961. 703 с.
 On the loss of stability of a rod in a cavitation bubble when entering into water through a barrier | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2012. № 4(20).

On the loss of stability of a rod in a cavitation bubble when entering into water through a barrier | Vestnik Tomskogo gosudarstvennogo universiteta. Matematika i mekhanika – Tomsk State University Journal of Mathematics and Mechanics. 2012. № 4(20).

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